Airfoil shape for first stage compressor rotor blade

Information

  • Patent Grant
  • 10287886
  • Patent Number
    10,287,886
  • Date Filed
    Thursday, September 22, 2016
    7 years ago
  • Date Issued
    Tuesday, May 14, 2019
    5 years ago
Abstract
A system is provided, including an airfoil. The airfoil includes a first suction portion of a nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z of a suction side as set forth in TABLE I to a maximum of three decimal places, wherein the X and Y values of the suction side are coordinate values that couple together to define suction side sections of the first suction portion of the nominal airfoil profile at each Z coordinate value, the suction side sections of the first suction portion of the nominal airfoil profile are coupled together to define the first suction portion, the airfoil includes an airfoil length along a Z axis, the first suction portion comprises a first portion length along the Z axis, the first portion length is less than or equal to the airfoil length, and the Cartesian coordinate values of X, Y, and Z are non-dimensional values convertible to dimensional distances.
Description
BACKGROUND OF THE INVENTION

The subject matter disclosed herein relates to compressor rotor blades, and more specifically, to a first stage compressor rotor blade.


Compressors are used in a variety of industries and systems to compress a gas, such as air. For example, gas turbine engines typically include a compressor to provide compressed air for combustion and cooling. Compressors typically include a rotor assembly and a stator assembly. In multi-stage compressors, the rotor assembly may include multiple rows (e.g., rotor stages) each row having multiple rotor blades. Likewise, the stator assembly may include multiple rows (e.g., stator stages) each row having multiple stator vanes. The rotor assembly is designed to rotate with respect to the stator assembly, compressing an intake fluid as the fluid traverses the compressor.


BRIEF DESCRIPTION OF THE INVENTION

Certain embodiments commensurate in scope with the originally claimed subject matter are summarized below. These embodiments are not intended to limit the scope of the claimed invention, but rather these embodiments are intended only to provide a brief summary of possible forms of the subject matter. Indeed, the invention may encompass a variety of forms that may be similar to or different from the embodiments set forth below.


In a first embodiment, a system includes an airfoil. The airfoil includes a first suction portion of a nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z of a suction side as set forth in TABLE I to a maximum of three decimal places, wherein the X and Y values of the suction side are coordinate values that couple together to define suction side sections of the first suction portion of the nominal airfoil profile at each Z coordinate value, the suction side sections of the first suction portion of the nominal airfoil profile are coupled together to define the first suction portion, the airfoil includes an airfoil length along a Z axis, the first suction portion comprises a first portion length along the Z axis, the first portion length is less than or equal to the airfoil length, and the Cartesian coordinate values of X, Y, and Z are non-dimensional values convertible to dimensional distances.


In a second embodiment, a system includes an airfoil. The airfoil includes a suction side of a nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z of the suction side as set forth in TABLE I to a maximum of three decimal places, wherein the X and Y values of the suction side are coordinate values that couple together to define suction side sections of the suction side of the nominal airfoil profile at each Z coordinate value, the suction side sections of the suction side of the nominal airfoil profile are coupled together to define the suction side, and the Cartesian coordinate values of X, Y, and Z are non-dimensional values convertible to dimensional distances.


In a third embodiment, a system includes an airfoil. The airfoil includes a nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z as set forth in TABLE I to a maximum of three decimal places, wherein the X and Y values are coordinate values that couple together to define airfoil sections of the nominal airfoil profile at each Z coordinate value, the airfoil sections of the nominal airfoil profile are coupled together to define an entirety of the airfoil, and the Cartesian coordinate values of X, Y, and Z are non-dimensional values convertible to dimensional distances.





BRIEF DESCRIPTION OF THE DRAWINGS

These and other features, aspects, and advantages of the present subject matter will become better understood when the following detailed description is read with reference to the accompanying drawings in which like characters represent like parts throughout the drawings, wherein:



FIG. 1 is a block diagram of an embodiment of a gas turbine system having a multi-stage axial compressor;



FIG. 2 is a cross-sectional side view of an embodiment of the gas turbine engine of FIG. 1, illustrating stages of blades and vanes of the multi-stage axial compressor;



FIG. 3 is side view of an embodiment of an airfoil of a compressor rotor blade or a compressor stator vane;



FIG. 4 is side view of an embodiment of an airfoil of a compressor rotor blade or a compressor stator vane;



FIG. 5 is a side view of an embodiment of an airfoil of the compressor rotor blade or a compressor stator vane; and



FIG. 6 is an axial view of an embodiment of the airfoil of the compressor rotor blade or compressor stator vane of FIGS. 3-5.





DETAILED DESCRIPTION OF THE INVENTION

One or more specific embodiments of the present subject matter will be described below. In an effort to provide a concise description of these embodiments, all features of an actual implementation may not be described in the specification. It should be appreciated that in the development of any such actual implementation, as in any engineering or design project, numerous implementation-specific decisions must be made to achieve the developers' specific goals, such as compliance with system-related and business-related constraints, which may vary from one implementation to another. Moreover, it should be appreciated that such a development effort might be complex and time consuming, but would nevertheless be a routine undertaking of design, fabrication, and manufacture for those of ordinary skill having the benefit of this disclosure.


When introducing elements of various embodiments of the present subject matter, the articles “a,” “an,” “the,” and “said” are intended to mean that there are one or more of the elements. The terms “comprising,” “including,” and “having” are intended to be inclusive and mean that there may be additional elements other than the listed elements.


The disclosed embodiments include a multi-stage axial compressor, which may be a standalone unit or part of a multi-stage rotary machine such as a gas turbine system. In certain embodiments, the multi-stage axial compressor includes a plurality of rotor stages and corresponding stator stages, each rotor stage and stator stage including a plurality of airfoils (e.g., blades or vanes) with a specific airfoil profile. During operation, a compressible fluid (e.g., gas such as air, oxygen, oxygen enriched air, oxygen reduced air, exhaust gas, nitrogen, etc.) may enter the multi-stage axial compressor through an inlet system, and each stage of the multi-stage axial compressor will generally increase the pressure and temperature of the compressible fluid by a certain amount. In a gas turbine system, a compressed fluid may then be delivered, for example, via an outlet system, to a combustor for combustion with a fuel. The amount of pressure and temperature increase at each stage of the multi-stage axial compressor may depend on particular operating conditions, such as speed, inlet boundary conditions (e.g., flow, pressure, temperature, composition, and so forth), outlet boundary conditions (e.g., flow resistance, and so forth), and stage efficiency.


During compression, an energy level of the compressible fluid may increase as the compressible fluid flows through the multi-stage axial compressor due to the exertion of a torque on the fluid by the rotating rotor blades. The stator's stationary vanes slow the compressible fluid, converting a circumferential component of the flow into pressure. An airfoil profile or design of the airfoil (e.g., rotor blades and/or stator vanes) may directly affect compression of the compressible fluid. Airfoil profiles described herein may be more optimized and matched for specific velocities and turning speeds. Further, the airfoil profiles described herein may be more optimized for specific stages of the multi-stage axial compressor with a specific total number of stages. Additionally, the airfoil profiles described herein may be designed for compressor rotor blades, compressor stator vanes, or any combination thereof. In certain embodiments, the airfoil profiles described herein may be designed for compressor rotor blades and/or compressor stator vanes in any one or more stages of a multi-stage axial compressor with 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, or 20 stages. More specifically, in certain embodiments, the airfoil profiles described herein may be designed for compressor rotor blades and/or compressor stator vanes in stage 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, and/or 14 of a 14 stage axial compressor. For example, in certain embodiments, the airfoil profiles described herein may be more optimized for a first stage airfoil (e.g., a rotor blade or stator vane) of a 14 stage axial compressor. The airfoils (e.g., blades or vanes) described herein may be described in terms of X, Y, and Z values set forth in certain table(s) described herein that define airfoil sections of the airfoils. In certain embodiments the X, Y, and Z values may describe suction side airfoil surfaces, pressure side airfoil surfaces, or a combination thereof. The X, Y, and Z values may include coordinate values in a Cartesian coordinate system, including negative and positive values denoting sides that are opposite to each other from a certain axis (e.g., X, Y, Z axis).


Turning now to FIG. 1, the figure is a block diagram of an embodiment of a turbine system 10 that includes a gas turbine engine 12 and a controller 14 (e.g., electronic and/or processor-based controller). The controller 14 may be communicatively coupled to a variety of sensors 16 and actuators 18 disposed in various components of the gas turbine engine 12. Signals received via the sensors 16 may be used to derive control actions executable via the actuators 18. The illustrated gas turbine engine 12 includes a compressor 20 (e.g., a multi-stage axial compressor or compressor section), a turbine 22 (e.g., a multi-stage turbine or turbine section), and fuel nozzles 24 coupled to one or more combustors 26 (e.g., compressor section). The compressor 20 and turbine 22 each may have any number of rows stages of rotor blades and stator vanes (e.g., 1 to 20). As discussed in detail below, an embodiment of an airfoil profile is provided for use with airfoils (e.g., rotor blades or stator vanes) in one or more stages of the compressor 20. However, before presenting details of the airfoil profile, the following discussion provides a brief description of the gas turbine engine 12 and its operation.


In operation, the compressor 20 is configured to compress a compressible fluid (e.g., gas such as air, oxygen, and/or exhaust gas), and deliver the compressed fluid to the fuel nozzles 24 and/or combustors 26. Although the compressible fluid may include any suitable gas, the following discussion may generally refer to the compressible fluid as an oxidant (e.g., air) as one non-limiting example. The fuel nozzles 24 are configured to supply fuel (e.g., from one or more fuel supplies) into the one or more combustors 26 (e.g., in combustion chambers), which combust the fuel with the oxidant (e.g., air) to generate hot combustion gases to drive the turbine 22. The fuel nozzles 24 may be designed as pre-mix fuel nozzles 24 and/or diffusion fuel nozzles 24. Pre-mix fuel nozzles 24 mix the fuel with the oxidant (e.g., air) to create pre-mix type flames. Diffusion fuel nozzles 24 do not premix the fuel with the oxidant, and thus create diffusion type flames. Regardless of the type of flames, the hot combustion gas flows from the combustors 26 into the turbine 22, thereby driving rotation of one or more stages of turbine blades coupled to a turbine rotor and shaft 30 along an axis 32. Eventually, the hot combustion gas exits the turbine 22 through an exhaust outlet 28 (e.g., exhaust stack, exhaust end). In the illustrated embodiment, the shaft 30 is coupled to the compressor 20 and a load 36, such that rotation of the shaft 30 also drives rotation of the compressor 20 and the load 36. The compressor 20 may intake the oxidant (e.g., air) through an air intake 34, which may include filters, thermal control systems, or any other preconditioning systems. The load 36 may include an electrical generator, a rotary machine, a propulsion system of a vehicle, or any other suitable device.


The airfoil profile described in further detail below may be used in any stage of the compressor 20 (e.g., multi-stage axial compressor with any number of stages of rotor blades and stator vanes). The compressor 20 may include rotating blades and stationary vanes (e.g., airfoils) that may be disposed in rows or stages, described in more detail below. The oxidant (e.g., air) may be progressively compressed in stages or rows of rotating blades and corresponding stator vanes as the air moves downstream in the compressor 20. In the depicted embodiment, the compressor 20 is a multi-stage axial compressor 20 having at least two rows or stages of blades and vanes. For example, in certain embodiments, the multi-stage axial compressor 20 may have 14 rows or stages of compressor blades and vanes.


It may be beneficial to illustrate a more detailed view of certain components of the gas turbine engine 12. Accordingly, FIG. 2 is a cross-sectional side view of an embodiment of the compressor 20 of the gas turbine engine 12 of FIG. 1. Throughout the discussion of FIG. 2, a set of axes will be referenced. These axes are based on a cylindrical coordinate system and point in an axial direction 38 (e.g., downstream), a radial direction 40, and a circumferential direction 42. For example, the axial direction 38 extends downstream through the compressor 20 generally parallel to the axis 32, the radial direction 40 extends away from the axis 32, and the circumferential direction 42 extends around the axis 32.


In operation, air enters the compressor 20 in the axial direction 38 through the air intake 34 and may be pressurized in the multi-stage axial compressor 20. The compressed air may then be mixed with fuel for combustion within the combustor 26 to drive the turbine 22 to rotate the shaft 30 in the circumferential direction 42 and, thus, the multi-stage axial compressor 20 and the load 36. The rotation of the shaft 30 also causes one or more blades 44 (e.g., compressor rotor blades) within the multi-stage axial compressor 20 to draw in and pressurize the air received by the air intake 34.


The multi-stage axial compressor 20 may include a rotor assembly 46 having multiple rotor blades 44 surrounded by a static casing 48 having multiple stator vanes 50 (e.g., variable stator vanes and/or fixed stator vanes). In some embodiments, the static casing 48 of the compressor 20 or the air intake 34 may have one or more sets of inlet guide vanes 52 (IGVs) (e.g., variable IGV stator vanes) that may control flows into the compressor 20. Each variable stator vane 50 (including each variable IGV stator vane 52) may be configured to vary its vane angle relative to the gas flow (e.g. air flow) by rotating the vane 50, 52 about an axis of rotation (e.g., radially oriented vane shaft). However, each variable stator vane 50 may be otherwise stationary relative to the rotor blades 44. In certain embodiments, each variable stator vane 50 may be coupled to an actuator 18 (e.g., electric drive, pneumatic drive, or hydraulic drive), which is coupled to a controller 14 configured to vary the vane angle in response to feedback from sensors 16. Each fixed stator vane 50 may be configured to remain in a fixed angular position, such that the vane angle does not vary. The compressor 20 may include a plurality of rows or stages 54, such as between 2 to 30, 2 to 25, 2 to 20, 2 to 14, or 2 to 10 rows or stages, or any specific number or range therebetween. In each stage, the multi-stage axial compressor 20 may include 2 to 1000, 5 to 500, or 10 to 100 rotor blades 44, and 2 to 1000, 5 to 500, or 10 to 100 stator vanes 50. In particular, the illustrated embodiment of the multi-stage axial compressor 20 includes 14 stages. It may be appreciated that each stage 54 has a set of rotor blades 44 disposed at a first axial position and a set of stator vanes 50 disposed at a second axial position along the length of the compressor 20. In other words, each stage 54 has the rotor blades 44 and stator vanes 50 axially offset from one another, such that the compressor 20 has an alternating arrangement of rotor blades 44 and stator vanes 50 one set after another along the length of the compressor 20. Each set of rotor blades 44 extends (e.g., in a spaced arrangement) in the circumferential direction 42 about the shaft 30, and each set of stator vanes 50 extends (e.g., in a spaced arrangement) in the circumferential direction 42 within the static casing 48. While the compressor 20 may include greater or fewer stages 54 than 14, FIG. 2 illustrates an embodiment of the compressor 20 with 14 stages 54 identified as follows: first stage 54a, second stage 54b, third stage 54c, fourth stage 54d, fifth stage 54e, sixth stage 54f, seventh stage 54g, eighth stage 54h, ninth stage 54i, tenth stage 54j, eleventh stage 54k, twelfth stage 54l, thirteenth stage 54m, and fourteenth stage 54n. In certain embodiments, each stage 54 may include rotor blades 44 and stator vanes 50 (e.g., fixed stator vanes 50 and/or variable stator vanes 50). For example, in certain embodiments, earlier stages 54 (e.g., 54a, 54b, 54c, etc.) may include variable stator vanes 50, while later stages 54 may include fixed stator vanes 50.


The airfoil described in the TABLE I below may describe either a rotor blade 44 or a stator vane 50 of the compressor 20. For example, the airfoil described in the TABLE I below may be placed as a rotor blade 44 of the first stage 54a. In use, the rotor blades 44 may rotate circumferentially about the static casing 48 and the stator vanes 50. Rotation of the rotor blades 44 may result in air entering the air intake 34. The air is then subsequently compressed as it traverses the various stages 54 (e.g., first stage 54a to fourteenth stage 54n) of the compressor 20 and moves in the axial direction 38 downstream of the multi-stage axial compressor 20. The compressed air may then exit through an outlet 56 of the multi-stage axial compressor 20. The outlet 56 may have a set of exit guide vanes 58 (EGVs). The compressed air that exits the compressor 20 may be mixed with fuel, directed to the combustor 26, directed to the turbine 22, or elsewhere in the turbine system 10.


Certain designs of the rotor blades 44 and stator vanes 50 (e.g., airfoils) provide for a more efficient multi-stage axial compressor 20 system. For example, certain rotor blade and/or stator vane (e.g., airfoil) designs may improve compressor 20 efficiency and enable improved operations for the turbine system 10. Referring now to FIG. 3, the figure is a side view of an embodiment of an airfoil 82 that may be included in the multi-stage axial compressor 20 as a rotor blade 44 or stator vane 50. In the particular embodiment, the airfoil 82 may be included in the first stage 54a of the multi-stage axial compressor 20 as a rotor blade 44. In the depicted embodiment, the airfoil 82 is disposed on a base 60, which may, in certain embodiments, be removably coupled as a rotor blade 44 to the rotor assembly 46. That is, the base 60 having the airfoil 82 may be removed from the rotor assembly 46, for example, to inspect, repair, and/or replace the airfoil 82. Additionally, or in the alternative, the airfoil 82 may be removably coupled as a stator vane 50 to the static casing 48. That is, the base 60 having the airfoil 82 may be removed from the static casing 48, for example, to inspect, repair, and/or replace the airfoil 82. The base 60 may include a removable mount or coupling 59, such as a dovetail joint. For example, the coupling 59 may include a T-shaped structure, a hook, one or more lateral protrusions, one or more lateral slots, or any combination thereof. The coupling 59 (e.g., dovetail joint) may be configured to mount into the rotor assembly 46 or the static casing 48 in an axial direction 38, a radial direction 40, and/or a circumferential direction 42 (e.g., into an axial slot or opening, a radial slot or opening, and/or a circumferential slot or opening).


As further described herein, the airfoil 82 includes a suction side 62 and a pressure side 64 disposed opposite from one another on the airfoil 82 (i.e., opposite faces). The airfoil 82 also includes leading and trailing edges 61 and 63 disposed opposite from one another on the airfoil 82 (e.g., opposite upstream and downstream edges). The suction side 62, the pressure side 64, the leading edge 61, and the trailing edge 63 generally extend from the base 60 to a tip 68 of the airfoil 82. The leading and trailing edges, 61 and 63 respectively, may be described as the dividing or intersecting lines between the suction side 62 and the pressure side 64. In other words, the suction side 62 and the pressure sides 64 couple together with one another along the leading edge 61 and the trailing edge 63, thereby defining an airfoil shaped cross-section that gradually changes lengthwise along the airfoil 82. The airfoil profile described in further detail below may be utilized along any portion or the entirety of the airfoil 82 between the base 60 and the tip 68. For example, the portion having the disclosed airfoil profile may include all or part of the suction side 62, all or part of the pressure side 64, or a combination thereof.


In operation, the rotor blades 44 rotate about an axis 66 exerting a torque on a working fluid, such as air, thus increasing energy levels of the fluid as the working fluid traverses the various stages 54 of the multi-stage axial compressor 20 on its way to the combustor 26. The suction side 62 creates and/or increases a suction force on the working fluid, while the pressure side 64 creates and/or increases a pressure bias on the working fluid. The rotor blades 44 may be adjacent (e.g., upstream and/or downstream) to the one or more stationary stator vanes 50. The stator vanes 50 slow the working fluid during rotation of the rotor blades 44, converting a circumferential component of movement of the working fluid flow into pressure. Accordingly, continuous rotation of the rotor blade 44 creates a continuous flow of compressed working fluid, suitable for combustion via the combustor 26.


The airfoil 82 (e.g., rotor blade 44, stator vane 50) includes an airfoil length L measured from the tip 68 of the airfoil 82 to a bottom region 70 of the airfoil 82 adjacent the base 60 (e.g., at an intersection of the airfoil 82 with the base 60). An X axis 72 lies parallel to the base 60 and to the rotational axis 66. The rotational axis 66 may be parallel to the axis 32 or the shaft 30. The X axis 72 is orthogonal to a Z axis 74 which bisects the airfoil 82. A Y axis 76 (shown coming out of the plane of the drawing) is orthogonal to both the X axis 72 and the Z axis 74. The X axis 72 and the Y axis 76 may be used to define an airfoil profile, shape, or section, for example, taken through line 6-6 at a point along the Z axis 74. That is, the airfoil profile may include an outline of the surface (e.g., section) of the airfoil 82 (e.g., rotor blade 44, stator vane 50) at a point along the Z axis 74. The airfoil profile may include X, Y, and Z values for the suction side 62, and X, Y, and Z values for the pressure side 64. A Cartesian coordinate system point 78 (e.g., origin) may be used to define a zero point for the X axis 72, the Z axis 74, and the Y axis 76 of the respective airfoil 82. TABLE I below lists various non-dimensionalized airfoil shapes for the suction side 62 and the corresponding pressure side 64 disposed at locations along the Z axis 74 from the bottom region 70 to the tip 68 of the airfoil 82.


The airfoil 82 may be described in terms of certain airfoil sections containing various air foil shapes and corresponding rows of the TABLE I. For example, as illustrated in FIG. 4, the airfoil 82 may be described via airfoil shapes disposed on one or more portions 80. In certain embodiments, the portion 80 of the airfoil 82 may be described as an area of interest, an area of greater importance, or a sweet spot, wherein the particular airfoil profile may have a greater impact on the performance, efficiency, and other attributes of the airfoil 82 as compared with other areas of the airfoil 82. However, the portion 80 may include any area of the airfoil 82, regardless of importance. The one or more portions 80 may include a suction side portion of the suction side 62, a pressure side portion of the pressure side 64, or any combination thereof. For example, the one or more portions 80 may include suction side portions 62 and pressure side portions 64 that are offset from one another without any overlap along the Z axis 74, suction side portions 62 and pressure side portions 64 that partially overlap along the Z axis 74, or suction side portions 62 and pressure side portions 64 that completely overlap along the Z axis 74. Portion 80 is shown as a rectangle in dashed lines. More specifically, FIG. 4 is a side view of an embodiment of the airfoil 82 illustrating the portion 80. As described above, the airfoil 82 may be the rotor blade 44 or the stator vane 50, such as the rotor blade 44 of the first stage 54a. Because the figure depicts like elements to FIG. 3, the like elements are illustrated with like numbers. In the depicted embodiment, the airfoil 82 includes the length L (e.g., total length), as mentioned previously, measured along the Z axis 74 (e.g., in the radial direction 40) from the tip 68 of the airfoil 82 to the bottom region 70 of the airfoil 82.


The portion 80 may begin at a distance or position d and include a length l extending away from the base 60 in the Z direction along the Z axis 74. As appreciated, in embodiments having one or more suction side portions 80 on the suction side 62 and/or one or more pressure side portions 80 on the pressure side 64, each portion 80 may be defined by a length l and a position d. A zero value of the position d corresponds to the bottom region 70 of the airfoil 82 adjacent the base 60 (e.g., at an intersection of the airfoil 82 with the base 60), which also corresponds to the coordinate origin 78. When d is zero and l is equal to L, the portion 80 includes the entirety of the airfoil 82 from the bottom region 70 to the tip 68 of the airfoil 82. By varying values for d and l, portions 80 having varying lengths and start locations from the coordinate origin 78 may be provided for defining the area of interest (e.g., sweet spot) along the airfoil 82. Each portion 80 may include one or more adjacent airfoil shapes (e.g., airfoil sections or airfoil shapes 110) “stacked” on top of each other along the Z axis 74, described in more detail below with respect to FIG. 6 and TABLE I below. Each airfoil section or airfoil shape 110 corresponds to Cartesian coordinate values of X, Y, and Z for a common Cartesian coordinate value of Z in TABLE I. Furthermore, adjacent airfoil sections or airfoil shapes 110 correspond to the Cartesian coordinate values of X, Y, and Z for adjacent Cartesian coordinate values of Z in the TABLE I.


With reference to TABLE I, the position d may be used to define a start position (e.g., first Cartesian coordinate value of Z) of the portion 80 in the Z direction along the Z axis 74, while a sum of the position d and the length l may be used to define an end position (e.g., last Cartesian coordinate value of Z) of the portion 80 in the Z direction along the Z axis 74. In certain embodiments, the position d (e.g., start position) may be selected directly from one of the Cartesian coordinate values of Z in TABLE I, and the sum of the position d and the length l (e.g., end position) may be selected directly from one of the Cartesian coordinate values of Z in TABLE I. In other embodiments, the desired values of the position d and the length l may be initially selected without referencing TABLE I, and then TABLE I may be subsequently analyzed to select best fits of the Cartesian coordinate values of Z in TABLE I based on the desired values of d and l. For example, with reference to TABLE I, the start position of the portion 80 may correspond to the Cartesian coordinate value of Z equal to or nearest to the value of the position d (e.g., start Z value). If the position d is midway between adjacent Cartesian coordinate values of Z in TABLE I, then the lesser or greater Cartesian coordinate value of Z may be selected for the start position of the portion 80 (e.g., start Z value). Alternatively, in some embodiments, if a specific value of the position d is desired but does not match the specific Cartesian coordinate values of Z in TABLE I, then regression analysis and/or curve fitting may be used to analyze the data in TABLE I and interpolate new Cartesian coordinate values of X, Y, Z to enable use of the desired d value. Similarly, with reference to TABLE I, the end position (e.g., end Z value) may correspond to the Cartesian coordinate value of Z equal to or nearest to the sum of the position d and the length l. If the sum of the position d and the length l is midway between adjacent Cartesian coordinate values of Z in TABLE I, then the lesser or greater Cartesian coordinate value of Z may be selected for the end position (e.g., end Z value). Alternatively, in some embodiments, if a specific value of the length l is desired but the sum of the position d and the length l does not match the specific Cartesian coordinate values of Z in TABLE I, then regression analysis and/or curve fitting may be used to analyze the data in TABLE I and interpolate new Cartesian coordinate values of X, Y, Z to enable use of the desired l value.


In certain embodiments, the portion 80 may be defined by the Cartesian coordinate values of X, Y, and Z corresponding to the start Z value, the end Z value, and all intermediate Z values in TABLE I. However, in some embodiments, if the Z values do not match the desired start and end positions, then the portion 80 may be defined by the Cartesian coordinate values of X, Y, and Z in TABLE I in the Z direction between the start and end positions (e.g., based on the position d and length l). Furthermore, as discussed herein, the portion 80 may include the Cartesian coordinate values of X, Y, and Z for the suction side 62 (e.g., suction side profile 112—see FIG. 6), the pressure side 64 (e.g., pressure side profile—see FIG. 6), or a combination thereof.


In certain embodiments, the portion 80 may include the airfoil profile of TABLE I only for the suction side 62 according to the position d and length l, only for the pressure side 64 according to the position d and length l, or for both the suction and pressure sides 62 and 64 according to the position d and length l. The position d of the portion 80 may be greater than or equal to approximately 0, 5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, or 75 percent of the length L of the airfoil 82. Furthermore, the length l of the portion 80 may be greater than or equal to approximately 5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, or 100 percent of the length L of the airfoil 82. For example, the portion 80 selected from TABLE I may be the suction side 62 of the outer third of the airfoil 82. In another example, the portion 80 selected from TABLE I may be both the suction side 62 and the pressure side 64 of an interior portion 80 of the airfoil 82, where d is greater than 0 and l is less than L (e.g., l=0.3 L).


Additionally or alternatively, a portion of the airfoil 82, such as portion 80, may be described in terms of a start height (e.g., first position) and a stop height (e.g., second position) along the Z axis 74 (e.g., in the radial direction 40) as illustrated in FIG. 5. Collectively, the start and stop heights (e.g., first and second positions) define a range along the Z axis 74. Again, the portion (e.g., 80) of the airfoil 82 may be described as an area of interest, an area of greater importance, or a sweet spot, wherein the particular airfoil profile may have a greater impact on the performance, efficiency, and other attributes of the airfoil 82 as compared with other areas of the airfoil 82. However, the portion (e.g., 80) may include any area of the airfoil 82, regardless of importance. For example, as shown in FIG. 5, an embodiment of the airfoil 82 is illustrated with multiple defined heights 90, 92, 94, 96, 98, and 100 along the Z axis 74. The heights 90, 92, 94, 96, 98, and 100 may divide the airfoil 82 into a plurality of portions along the Z axis 74, wherein the plurality of portions may have equal lengths along the Z axis 74 (e.g., five portions each being 20 percent of the total length L of the airfoil 82). However, in some embodiments, the plurality of portions defined by the heights 90, 92, 94, 96, 98, and 100 may have different lengths along the Z axis 74. Although the illustrated embodiment includes 6 heights (e.g., 90, 92, 94, 96, 98, and 100) defining 5 portions, certain embodiments may include any number of heights (e.g., 2 to 100 or more) defining any number of portions (e.g., 2 to 100 or more) with equal or different lengths along the Z axis 74.


For example, certain embodiments may include 11 heights to define 10 portions with equal or different lengths along the Z axis 74 (e.g., 10 portions each being 10 percent of the total length L of the airfoil 82). By further example, certain embodiments may include 101 heights to define 100 portions with equal or different lengths along the Z axis 74 (e.g., 100 portions each being 1 percent of the total length L of the airfoil 82). In this manner, the heights may be used to define a specific portion (e.g., 80) of the airfoil 82, wherein the specific portion (e.g., area of interest) may track the airfoil profile described below in TABLE I. Again, similar to the discussion of FIG. 4, the specific portion (e.g., 80) defined by the heights in FIG. 5 may track the airfoil profile of TABLE I along only the suction side 62, only the pressure side 64, or both the suction and pressure sides 62 and 64. Because FIG. 5 depicts like elements to FIG. 4, the like elements are illustrated with like numbers.


In the illustrated embodiment, the portion (e.g., 80) may be defined by the start height and the stop height, wherein the start height is closer to the bottom region 70 than the stop height, and each of the start and stop heights may be selected from one of the heights 90, 92, 94, 96, 98, or 100. Multiple start and stop heights 90, 92, 94, 96, 98, 100 may be defined to divide the airfoil 82 and define the portion (e.g., 80). For example, a first start height 92 and a first stop height 90 may describe a first section or segment 102 (e.g., portion 80) of the airfoil 82, a second start height 96 and a second stop height 92 may describe a second section or segment 104 (e.g., portion 80) of the airfoil 82, and a third start height 96 and a third stop height 94 may describe a third section or segment 106 (e.g., portion 80) of the airfoil 82. As shown in FIG. 5, each height 90, 92, 94, 96, 98, 100 may define a start height for a segment, a stop height for the segment, or a start height for one segment and a stop height for another segment. Each of the heights 90, 92, 94, 96, 98, 100 may be selected to correspond to a different Cartesian coordinate value of Z in TABLE I. In certain embodiments, each of the heights 90, 92, 94, 96, 98, 100 may be selected directly from one of the Cartesian coordinate values of Z in TABLE I. In other embodiments, the desired values of the heights 90, 92, 94, 96, 98, 100 may be initially selected without referencing TABLE I, and then TABLE I may be subsequently analyzed to select best fits of the Cartesian coordinate values of Z in TABLE I based on the desired values of the heights 90, 92, 94, 96, 98, 100. For example, each of the heights 90, 92, 94, 96, 98, 100 may correspond to the Cartesian coordinate value of Z equal to or nearest to the value of the particular height 90, 92, 94, 96, 98, or 100. If the height 90, 92, 94, 96, 98, or 100 is midway between adjacent Cartesian coordinate values of Z in TABLE I, then the lesser or greater Cartesian coordinate value of Z may be selected for the particular height 90, 92, 94, 96, 98, or 100. Alternatively, in some embodiments, if specific heights are desired but do not match the specific Cartesian coordinate values of Z in TABLE I, then regression analysis and/or curve fitting may be used to analyze the data in TABLE I and interpolate new Cartesian coordinate values of X, Y, Z to enable use of the desired heights. In some embodiments, if the Z values do not match the desired heights, then the portion 80 may be defined by the Cartesian coordinate values of X, Y, and Z in TABLE I in the Z direction between the start and stop heights. Furthermore, with reference to TABLE I, the overall height dimension of each segment (e.g., 102, 104, 106) may be equal to an absolute value of the difference between the start and stop heights (e.g., Cartesian coordinate values of Z) for the particular segment. In certain embodiments, an offset or correction value may be used to account for negative values in TABLE I. For example, certain components of the airfoil 82, such as the bottom region 70, may be disposed below the origin point 78 by a distance 108, and thus certain Z values may be negative denoting sections of airfoil 82 below the origin point 78. Accordingly, the offset may be equal to an absolute value of the smallest negative value given in TABLE I.


As mentioned earlier with respect to the portion 80 of FIG. 4, the sections 102, 104, and 106 (e.g., portion 80) of FIG. 5 may include one or more airfoil shapes, profiles, or sections, such as an airfoil shape shown in FIG. 6. More specifically, FIG. 6 is a cross-sectional top view depicting an embodiment of an airfoil shape 110 taken through line 6-6 of FIGS. 3, 4, and 5, wherein the airfoil shape 110 may be included, for example, in the portion 80 of the airfoil 82 (e.g., rotor blade 44, stator vane 50). As mentioned earlier, the airfoil 82 may be described in terms of one or more airfoil shapes (e.g., sections) “stacked” on top of each other along the Z axis 74, such as the depicted airfoil shape 110. To define the airfoil shape 110, a unique set or loci of points in space are provided in TABLE I.


A Cartesian coordinate system of X, Y, and Z values given in TABLE I below defines a suction side profile 112 and a pressure side profile 114 of the airfoil shape 110 at various locations along the airfoil 82. For example, point 116 defines a first pair of suction side X and Y values at the Z value of line 6-6 of FIGS. 3-5, while point 118 defines a second pair of pressure side X and Y values at the same Z value of FIGS. 3-5. The X, Y, and Z values of TABLE I are set forth in non-dimensionalized units, and thus a variety of units of dimensions may be used when the values are appropriately scaled by a scale factor F. The scale factor F may be substantially equal to 1, greater than 1, or less than 1. For example, the Cartesian coordinate values of X, Y, and Z may be convertible to dimensional distances by multiplying the X, Y, and Z values by a constant number (e.g., 100). The number, used to convert the non-dimensional values to dimensional distances, may be a fraction (e.g., ½, ¼, etc.), decimal fraction (e.g., 0.5, 1.5, 10.25, etc.), integer (e.g., 1, 2, 10, 100, etc.) or a mixed number (e.g., 1½, 10¼, etc.). The dimensional distances may be any suitable format (e.g., inches, feet, millimeters, centimeters, etc.) These values exclude a coated region or coatings 120 of the airfoil 82. In other words, these values correspond to the bare surface of the airfoil 82. The coated region 120 may include one or more coating layers, surface treatments, or a combination thereof, over the bare surface of the airfoil 82. The Cartesian coordinate system of FIG. 6 utilizes the same orthogonally-related X axis 72, Y axis 76, and Z 74 as the Cartesian coordinate system of FIGS. 3-5 to define locations on the airfoil shape 110 for both the suction side profile 112 and the pressure side profile 114 along the length L of the airfoil 82.


The X axis 72 and the Y axis 76 lie parallel to the base 60, as illustrated in the previous figures. In some embodiments, a positive X coordinate value is axial in the downstream axial direction 38 toward the aft, for example the exhaust outlet 28 of the multi-stage axial compressor 20. In some embodiments, a positive Y coordinate value is directed normal to the X axis 72. A positive Z coordinate value is directed radially from the X axis 72 and the Y axis 76 outward toward tip 68 of the airfoil 82, which is towards the static casing 48 of the multi-stage axial compressor 20 for rotor blades 44, and directed radially inward towards the shaft 30 of the multi-stage axial compressor 20 for stator vanes 50.


By defining X and Y coordinate values at selected locations in a Z direction normal to the X-Y plane, the airfoil shape 110, with its suction side profile 112 and pressure side profile 114, may be defined, for example, by connecting each X and Y coordinate value to adjacent X and Y coordinate values with smooth continuing arcs. The suction side profile 112 is joined to the pressure side profile 114, as shown in FIG. 6, to define the airfoil shape 110. The airfoil shapes 110 (e.g., sections) of the airfoil 82 at various surface locations (e.g., heights) between the Z coordinate values may be determined by smoothly connecting the adjacent (e.g., “stacked”) airfoil shapes 110 to one another, thus forming the airfoil 82. It may be appreciated that the airfoil shape 110 of the airfoil 82 may change from the base 60 to the tip 68. For example, adjacent airfoil shapes 110 may taper or expand in one or more directions (e.g., X axis 72, Y axis 76), adjacent airfoil shapes 110 may rotate about an axis (e.g., Z axis 74) in a clockwise direction or a counter-clockwise direction, or any combination thereof. It is also to be noted that TABLE I values represent the Cartesian coordinate values for the airfoil 82 at ambient, non-operating or non-hot conditions. Additionally, TABLE I values represent the Cartesian coordinate values for an uncoated airfoil (i.e., without coatings 120). For a coated airfoil, a thickness t of the coating 120 may be added to each of the X, Y values of TABLE I below.


The X, Y, and Z coordinate values of TABLE I below are non-dimensional values convertible to dimensional distances with the scale factor F. That is, the X, Y, and Z values of TABLE I may be scaled as a function of the same scale factor F (e.g., constant or number) to provide a scaled-up or a scaled-down airfoil. Thus, TABLE I defines the relationships between the X, Y, and Z coordinate values without specifying the units of measure (e.g., dimensional units) for an embodiment of the airfoil 82. Accordingly, while different scale factors F may be applied to the X, Y, and Z coordinate values of TABLE I to define different embodiments of the airfoil 82, each embodiment of the airfoil 82 regardless of the particular scale factor F is considered to be defined by the X, Y, and Z coordinate values of TABLE I. For example, the X, Y, and Z coordinate values of TABLE I define a first embodiment of the airfoil 82 formed with a 1:1 inch scale factor F, a second embodiment of the airfoil 82 formed with a 1:2 inch scale factor F, and a third embodiment of the airfoil 82 formed with a 1:1 cm scale factor F. It may be appreciated that any scale factor F may be used with the X, Y, and Z coordinate values of TABLE I, according to the design considerations of a particular embodiment.


The TABLE I values below are computer-generated and shown to five decimal places. However, certain values in TABLE I may be shown to less than five decimal places (e.g., 0, 1, 2, 3, or 4 decimal places), because the values are rounded to significant figures, the additional decimal places would merely show trailing zeroes, or a combination thereof. Accordingly, in certain embodiments, any values having less than five decimal places may be shown with trailing zeroes out to 1, 2, 3, 4, or 5 decimal places. Furthermore, in some embodiments and in view of manufacturing constraints, actual values useful for forming the airfoil 82 are may be considered valid to fewer (e.g., one, two, three, or four) decimal places for determining the airfoil shape 110 of the airfoil 82. Further, there are typical manufacturing tolerances which may be accounted for in the airfoil shape 110. Accordingly, the X, Y, and Z values given in TABLE I are for the airfoil shape 110 of a nominal airfoil. It will therefore be appreciated that plus or minus typical manufacturing tolerances are applicable to these X, Y, and Z values and that an airfoil 82 having a profile substantially in accordance with those values includes such tolerances. For example, in certain embodiments, a manufacturing tolerance of about ±between 0.001 to 0.20 inches (e.g., between 0.025 to 5 mm) is within design limits for the airfoil 82, and a manufacturing tolerance of about ±0.0008 to 0.1 inches (e.g., 0.02 to 2.5 mm) may be maintained during manufacturing. Accordingly, the values of X and Y carried to three decimal places and having a manufacturing tolerance about ±0.010 inches (0.25 mm) and preferably about ±0.008 inches (0.20 mm) is acceptable to define the airfoil shape 110 of the airfoil 82 at each radial position (e.g., Z coordinate, height) throughout its entire length. As used herein, any reference to Cartesian coordinate values of X, Y, and Z as set forth in TABLE I to a maximum of N decimal places is intended to include: (1) values to N decimal places if shown in TABLE I with N or greater decimal places, and (2) values to less than N decimal places if shown in TABLE 1 with less than N decimal places, wherein N may be 0, 1, 2, 3, 4, or 5. For example, any reference to Cartesian coordinate values of X, Y, and Z as set forth in TABLE I to a maximum of three (3) decimal places is intended to include: (1) values to three (3) decimal places if shown in TABLE I with three (3) or greater decimal places, and (2) values to less than three (3) decimal places if shown in TABLE 1 with less than three (3) decimal places (e.g., 0, 1, or 2 decimal places). Furthermore, any reference to Cartesian coordinate values of X, Y, and Z as set forth in TABLE I all carried to N decimal places is intended to include: (1) values to N decimal places if shown in TABLE I with N or greater decimal places, and (2) values with trailing zeros to N decimal places if shown in TABLE 1 with less than N decimal places, wherein N may be 0, 1, 2, 3, 4, or 5.


As noted previously, the airfoil 82 may also be coated for protection against corrosion, erosion, wear, and oxidation after the airfoil 82 is manufactured, according to the values of TABLE I and within the tolerances explained above. For example, the coating region 120 may include one or more corrosion resistant layers, erosion resistant layers, wear resistant layers, oxidation resistant or anti-oxidation layers, or any combination thereof. An anti-corrosion coating may be provided with an average thickness t of 0.008 inches (0.20 mm), between 0.001 and 0.1 inches (between 0.25 and 2.5 mm), between, 0.0001 and 1 inches or more (between 0.0025 and 2.5 mm or more). For example, in certain embodiments, the coating 120 may increase X and Y values of a suction side in TABLE I by no greater than approximately 3.5 mm along a first suction portion, a first pressure portion, or both. It is to be noted that additional anti-oxidation coatings 120 may be provided, such as overcoats.










TABLE I







Pressure Side or Surface
Suction Side or Surface












X
Y
Z
X
Y
Z















−6.87750
4.17933
−1.94901
6.81587
−1.14147
−1.94901


−6.87499
4.18118
−1.94901
6.81513
−1.16597
−1.94901


−6.86980
4.18425
−1.94901
6.80854
−1.19799
−1.94901


−6.85810
4.18777
−1.94901
6.79128
−1.23484
−1.94901


−6.83388
4.18731
−1.94901
6.75870
−1.27122
−1.94901


−6.79740
4.17710
−1.94901
6.70023
−1.29888
−1.94901


−6.73634
4.14786
−1.94901
6.61735
−1.31902
−1.94901


−6.65949
4.10035
−1.94901
6.51378
−1.34389
−1.94901


−6.56139
4.03083
−1.94901
6.38765
−1.37359
−1.94901


−6.44203
3.93932
−1.94901
6.23757
−1.40848
−1.94901


−6.28908
3.81755
−1.94901
6.06189
−1.44895
−1.94901


−6.11256
3.67704
−1.94901
5.85408
−1.49656
−1.94901


−5.92313
3.52864
−1.94901
5.61426
−1.55058
−1.94901


−5.70874
3.36334
−1.94901
5.34205
−1.60951
−1.94901


−5.46920
3.18153
−1.94901
5.03717
−1.67030
−1.94901


−5.20395
2.98375
−1.94901
4.69925
−1.72989
−1.94901


−4.92533
2.77901
−1.94901
4.32792
−1.78631
−1.94901


−4.63289
2.56805
−1.94901
3.93923
−1.83615
−1.94901


−4.32606
2.35171
−1.94901
3.53309
−1.87866
−1.94901


−4.00419
2.13092
−1.94901
3.10914
−1.91040
−1.94901


−3.66572
1.90836
−1.94901
2.66671
−1.92739
−1.94901


−3.30933
1.68571
−1.94901
2.20804
−1.92683
−1.94901


−2.93456
1.46398
−1.94901
1.73573
−1.90595
−1.94901


−2.54030
1.24467
−1.94901
1.25034
−1.86168
−1.94901


−2.13918
1.03622
−1.94901
0.76828
−1.79300
−1.94901


−1.73183
0.83956
−1.94901
0.28975
−1.69861
−1.94901


−1.31883
0.65496
−1.94901
−0.18506
−1.57731
−1.94901


−0.90119
0.48363
−1.94901
−0.65552
−1.43011
−1.94901


−0.47918
0.32688
−1.94901
−1.11585
−1.26027
−1.94901


−0.05272
0.18516
−1.94901
−1.56552
−1.06908
−1.94901


0.37755
0.05615
−1.94901
−2.00432
−0.85673
−1.94901


0.81060
−0.06302
−1.94901
−2.43246
−0.62322
−1.94901


1.24625
−0.17393
−1.94901
−2.85010
−0.36892
−1.94901


1.68450
−0.27565
−1.94901
−3.25745
−0.09439
−1.94901


2.12535
−0.36892
−1.94901
−3.65328
0.19852
−1.94901


2.55339
−0.45189
−1.94901
−4.02192
0.49561
−1.94901


2.96769
−0.52595
−1.94901
−4.36569
0.79427
−1.94901


3.36789
−0.59259
−1.94901
−4.68635
1.09302
−1.94901


3.75398
−0.65218
−1.94901
−4.98566
1.38992
−1.94901


4.12605
−0.70471
−1.94901
−5.26502
1.68367
−1.94901


4.48384
−0.75158
−1.94901
−5.52377
1.97490
−1.94901


4.82686
−0.79510
−1.94901
−5.76239
2.26317
−1.94901


5.14000
−0.83492
−1.94901
−5.98457
2.54476
−1.94901


5.42335
−0.87121
−1.94901
−6.17957
2.80769
−1.94901


5.67700
−0.90276
−1.94901
−6.35015
3.04918
−1.94901


5.90105
−0.92866
−1.94901
−6.49716
3.26719
−1.94901


6.09539
−0.94917
−1.94901
−6.62895
3.47555
−1.94901


6.25994
−0.96532
−1.94901
−6.73559
3.66080
−1.94901


6.40064
−0.97840
−1.94901
−6.80993
3.80744
−1.94901


6.51897
−0.98898
−1.94901
−6.86135
3.92855
−1.94901


6.61633
−0.99724
−1.94901
−6.89096
4.02266
−1.94901


6.69429
−1.00365
−1.94901
−6.90265
4.09552
−1.94901


6.75119
−1.02388
−1.94901
−6.90033
4.13654
−1.94901


6.78497
−1.05534
−1.94901
−6.89188
4.16132
−1.94901


6.80418
−1.08875
−1.94901
−6.88455
4.17237
−1.94901


6.81300
−1.11827
−1.94901
−6.88001
4.17719
−1.94901


−6.82283
4.20197
−1.29934
6.84093
−1.23809
−1.29934


−6.82033
4.20374
−1.29934
6.83982
−1.26249
−1.29934


−6.81504
4.20671
−1.29934
6.83258
−1.29414
−1.29934


−6.80325
4.20986
−1.29934
6.81467
−1.33043
−1.29934


−6.77903
4.20875
−1.29934
6.78135
−1.36588
−1.29934


−6.74283
4.19780
−1.29934
6.72251
−1.39196
−1.29934


−6.68223
4.16782
−1.29934
6.63953
−1.41006
−1.29934


−6.60584
4.11965
−1.29934
6.53577
−1.43243
−1.29934


−6.50830
4.04939
−1.29934
6.40955
−1.45916
−1.29934


−6.38950
3.95742
−1.29934
6.25929
−1.49062
−1.29934


−6.23692
3.83528
−1.29934
6.08342
−1.52710
−1.29934


−6.06059
3.69458
−1.29934
5.87552
−1.57007
−1.29934


−5.87135
3.54627
−1.29934
5.63552
−1.61898
−1.29934


−5.65686
3.38135
−1.29934
5.36330
−1.67234
−1.29934


−5.41695
3.20009
−1.29934
5.05852
−1.72719
−1.29934


−5.15123
3.00333
−1.29934
4.72069
−1.78037
−1.29934


−4.87197
2.79980
−1.29934
4.34963
−1.83012
−1.29934


−4.57869
2.59033
−1.29934
3.96150
−1.87318
−1.29934


−4.27112
2.37538
−1.29934
3.55611
−1.90892
−1.29934


−3.94851
2.15598
−1.29934
3.13299
−1.93388
−1.29934


−3.60938
1.93472
−1.29934
2.69186
−1.94409
−1.29934


−3.25253
1.71327
−1.29934
2.23542
−1.93667
−1.29934


−2.87748
1.49229
−1.29934
1.76552
−1.90910
−1.29934


−2.48350
1.27326
−1.29934
1.28236
−1.85833
−1.29934


−2.08293
1.06444
−1.29934
0.80253
−1.78372
−1.29934


−1.67652
0.86666
−1.29934
0.32613
−1.68376
−1.29934


−1.26481
0.68030
−1.29934
−0.14655
−1.55735
−1.29934


−0.84838
0.50656
−1.29934
−0.61347
−1.40626
−1.29934


−0.42776
0.34674
−1.29934
−1.06982
−1.23372
−1.29934


−0.00269
0.20130
−1.29934
−1.51614
−1.04068
−1.29934


0.42618
0.06794
−1.29934
−1.95226
−0.82731
−1.29934


0.85775
−0.05624
−1.29934
−2.37826
−0.59343
−1.29934


1.29173
−0.17263
−1.29934
−2.79423
−0.33931
−1.29934


1.72849
−0.28010
−1.29934
−3.20037
−0.06552
−1.29934


2.16767
−0.37950
−1.29934
−3.59472
0.22581
−1.29934


2.59413
−0.46878
−1.29934
−3.96280
0.52131
−1.29934


3.00695
−0.54934
−1.29934
−4.30666
0.81877
−1.29934


3.40585
−0.62257
−1.29934
−4.62788
1.11660
−1.29934


3.79064
−0.68884
−1.29934
−4.92803
1.41313
−1.29934


4.16151
−0.74796
−1.29934
−5.20831
1.70696
−1.29934


4.51808
−0.80132
−1.29934
−5.46818
1.99876
−1.29934


4.86000
−0.85125
−1.29934
−5.70772
2.28842
−1.29934


5.17221
−0.89710
−1.29934
−5.93065
2.57158
−1.29934


5.45463
−0.93914
−1.29934
−6.12537
2.83488
−1.29934


5.70735
−0.97590
−1.29934
−6.29493
3.07609
−1.29934


5.93065
−1.00652
−1.29934
−6.44111
3.29355
−1.29934


6.12435
−1.03130
−1.29934
−6.57225
3.50135
−1.29934


6.28843
−1.05098
−1.29934
−6.67861
3.68586
−1.29934


6.42876
−1.06704
−1.29934
−6.75304
3.83185
−1.29934


6.54682
−1.08012
−1.29934
−6.80464
3.95231
−1.29934


6.64390
−1.09042
−1.29934
−6.83481
4.04587
−1.29934


6.72158
−1.09859
−1.29934
−6.84724
4.11844
−1.29934


6.77810
−1.11975
−1.29934
−6.84539
4.15928
−1.29934


6.81142
−1.15159
−1.29934
−6.83722
4.18415
−1.29934


6.83017
−1.18528
−1.29934
−6.82998
4.19510
−1.29934


6.83852
−1.21488
−1.29934
−6.82534
4.19984
−1.29934


−6.76817
4.22397
−0.64967
6.86599
−1.33470
−0.64967


−6.76566
4.22573
−0.64967
6.86441
−1.35902
−0.64967


−6.76037
4.22861
−0.64967
6.85652
−1.39039
−0.64967


−6.74859
4.23167
−0.64967
6.83787
−1.42612
−0.64967


−6.72436
4.23037
−0.64967
6.80390
−1.46055
−0.64967


−6.68826
4.21905
−0.64967
6.74460
−1.48505
−0.64967


−6.62793
4.18870
−0.64967
6.66144
−1.50111
−0.64967


−6.55174
4.14007
−0.64967
6.55740
−1.52106
−0.64967


−6.45447
4.06953
−0.64967
6.43090
−1.54482
−0.64967


−6.33595
3.97709
−0.64967
6.28036
−1.57276
−0.64967


−6.18374
3.85458
−0.64967
6.10411
−1.60533
−0.64967


−6.00778
3.71361
−0.64967
5.89585
−1.64367
−0.64967


−5.81872
3.56492
−0.64967
5.65547
−1.68756
−0.64967


−5.60442
3.39972
−0.64967
5.38279
−1.73545
−0.64967


−5.36470
3.21837
−0.64967
5.07764
−1.78437
−0.64967


−5.09898
3.02162
−0.64967
4.73962
−1.83114
−0.64967


−4.81944
2.81836
−0.64967
4.36847
−1.87421
−0.64967


−4.52551
2.60945
−0.64967
3.98034
−1.91049
−0.64967


−4.21664
2.39543
−0.64967
3.57504
−1.93936
−0.64967


−3.89254
2.17732
−0.64967
3.15229
−1.95755
−0.64967


−3.55221
1.95746
−0.64967
2.71209
−1.96080
−0.64967


−3.19480
1.73731
−0.64967
2.25732
−1.94632
−0.64967


−2.81975
1.51763
−0.64967
1.78891
−1.91179
−0.64967


−2.42633
1.29980
−0.64967
1.30751
−1.85416
−0.64967


−2.02725
1.09182
−0.64967
0.82926
−1.77295
−0.64967


−1.62232
0.89385
−0.64967
0.35453
−1.66687
−0.64967


−1.21191
0.70638
−0.64967
−0.11666
−1.53489
−0.64967


−0.79659
0.53022
−0.64967
−0.57969
−1.37953
−0.64967


−0.37653
0.36706
−0.64967
−1.03279
−1.20347
−0.64967


0.04770
0.21764
−0.64967
−1.47624
−1.00792
−0.64967


0.47556
0.07972
−0.64967
−1.91022
−0.79260
−0.64967


0.90610
−0.04956
−0.64967
−2.33454
−0.55770
−0.64967


1.33888
−0.17133
−0.64967
−2.74940
−0.30330
−0.64967


1.77443
−0.28474
−0.64967
−3.15480
−0.02979
−0.64967


2.21222
−0.39036
−0.64967
−3.54785
0.26033
−0.64967


2.63701
−0.48595
−0.64967
−3.91473
0.55454
−0.64967


3.04816
−0.57292
−0.64967
−4.25757
0.85079
−0.64967


3.44548
−0.65264
−0.64967
−4.57757
1.14769
−0.64967


3.82888
−0.72550
−0.64967
−4.87633
1.44357
−0.64967


4.19845
−0.79111
−0.64967
−5.15522
1.73694
−0.64967


4.55382
−0.85097
−0.64967
−5.41389
2.02827
−0.64967


4.89452
−0.90740
−0.64967
−5.65269
2.31709
−0.64967


5.20562
−0.95928
−0.64967
−5.87487
2.59942
−0.64967


5.48693
−1.00699
−0.64967
−6.06912
2.86198
−0.64967


5.73872
−1.04903
−0.64967
−6.23850
3.10236
−0.64967


5.96109
−1.08439
−0.64967
−6.38449
3.31898
−0.64967


6.15423
−1.11335
−0.64967
−6.51563
3.52594
−0.64967


6.31776
−1.13655
−0.64967
−6.62209
3.70971
−0.64967


6.45763
−1.15567
−0.64967
−6.69671
3.85514
−0.64967


6.57522
−1.17126
−0.64967
−6.74859
3.97505
−0.64967


6.67202
−1.18379
−0.64967
−6.77912
4.06823
−0.64967


6.74942
−1.19363
−0.64967
−6.79193
4.14044
−0.64967


6.80539
−1.21572
−0.64967
−6.79044
4.18128
−0.64967


6.83806
−1.24811
−0.64967
−6.78246
4.20606
−0.64967


6.85615
−1.28198
−0.64967
−6.77532
4.21701
−0.64967


6.86404
−1.31159
−0.64967
−6.77077
4.22183
−0.64967


−6.71360
4.24791
0.00000
6.89114
−1.43141
0.00000


−6.71109
4.24968
0.00000
6.88901
−1.45554
0.00000


−6.70571
4.25265
0.00000
6.88056
−1.48663
0.00000


−6.69392
4.25562
0.00000
6.86116
−1.52181
0.00000


−6.66970
4.25395
0.00000
6.82636
−1.55522
0.00000


−6.63378
4.24244
0.00000
6.76659
−1.57805
0.00000


−6.57355
4.21162
0.00000
6.68325
−1.59216
0.00000


−6.49763
4.16262
0.00000
6.57902
−1.60960
0.00000


−6.40073
4.09162
0.00000
6.45224
−1.63039
0.00000


−6.28259
3.99872
0.00000
6.30143
−1.65490
0.00000


−6.13075
3.87575
0.00000
6.12490
−1.68348
0.00000


−5.95506
3.73440
0.00000
5.91617
−1.71726
0.00000


−5.76638
3.58534
0.00000
5.67542
−1.75615
0.00000


−5.55236
3.41977
0.00000
5.40247
−1.79847
0.00000


−5.31291
3.23814
0.00000
5.09694
−1.84144
0.00000


−5.04738
3.04120
0.00000
4.75855
−1.88191
0.00000


−4.76784
2.83804
0.00000
4.38731
−1.91820
0.00000


−4.47353
2.62949
0.00000
3.99918
−1.94771
0.00000


−4.16411
2.41640
0.00000
3.59407
−1.96980
0.00000


−3.83927
2.19969
0.00000
3.17169
−1.98103
0.00000


−3.49819
1.98112
0.00000
2.73242
−1.97722
0.00000


−3.14023
1.76200
0.00000
2.27904
−1.95579
0.00000


−2.76472
1.54315
0.00000
1.81221
−1.91430
0.00000


−2.37111
1.32588
0.00000
1.33229
−1.84980
0.00000


−1.97184
1.11817
0.00000
0.85562
−1.76191
0.00000


−1.56710
0.92012
0.00000
0.38238
−1.64942
0.00000


−1.15743
0.73171
0.00000
−0.08650
−1.51178
0.00000


−0.74369
0.55417
0.00000
−0.54609
−1.35224
0.00000


−0.32567
0.38841
0.00000
−0.99604
−1.17284
0.00000


0.09680
0.23518
0.00000
−1.43698
−0.97451
0.00000


0.52308
0.09281
0.00000
−1.86891
−0.75742
0.00000


0.95242
−0.04149
0.00000
−2.29176
−0.52159
0.00000


1.38408
−0.16891
0.00000
−2.70569
−0.26692
0.00000


1.81852
−0.28845
0.00000
−3.11034
0.00622
0.00000


2.25482
−0.40038
0.00000
−3.50200
0.29523
0.00000


2.67794
−0.50229
0.00000
−3.86767
0.58842
0.00000


3.08770
−0.59575
0.00000
−4.20930
0.88383
0.00000


3.48362
−0.68206
0.00000
−4.52792
1.17999
0.00000


3.86581
−0.76160
0.00000
−4.82501
1.47568
0.00000


4.23418
−0.83390
0.00000
−5.10232
1.76887
0.00000


4.58843
−0.90026
0.00000
−5.35978
2.05973
0.00000


4.92812
−0.96309
0.00000
−5.59765
2.34781
0.00000


5.23820
−1.02110
0.00000
−5.81919
2.62940
0.00000


5.51848
−1.07455
0.00000
−6.01316
2.89103
0.00000


5.76935
−1.12179
0.00000
−6.18217
3.13048
0.00000


5.99107
−1.16198
0.00000
−6.32806
3.34645
0.00000


6.18347
−1.19511
0.00000
−6.45911
3.55258
0.00000


6.34653
−1.22194
0.00000
−6.56566
3.73560
0.00000


6.48593
−1.24412
0.00000
−6.64046
3.88039
0.00000


6.60315
−1.26240
0.00000
−6.69253
3.99983
0.00000


6.69968
−1.27697
0.00000
−6.72334
4.09255
0.00000


6.77689
−1.28857
0.00000
−6.73652
4.16457
0.00000


6.83258
−1.31168
0.00000
−6.73541
4.20522
0.00000


6.86460
−1.34445
0.00000
−6.72761
4.23009
0.00000


6.88214
−1.37851
0.00000
−6.72056
4.24105
0.00000


6.88956
−1.40830
0.00000
−6.71610
4.24578
0.00000


−6.64705
4.28383
0.78991
6.92158
−1.54891
0.78991


−6.64455
4.28569
0.78991
6.91889
−1.57285
0.78991


−6.63916
4.28856
0.78991
6.90961
−1.60366
0.78991


−6.62738
4.29135
0.78991
6.88929
−1.63810
0.78991


−6.60315
4.28949
0.78991
6.85365
−1.67030
0.78991


−6.56733
4.27752
0.78991
6.79332
−1.69100
0.78991


−6.50737
4.24624
0.78991
6.70979
−1.70269
0.78991


−6.43183
4.19668
0.78991
6.60529
−1.71717
0.78991


−6.33530
4.12513
0.78991
6.47823
−1.73443
0.78991


−6.21762
4.03157
0.78991
6.32695
−1.75476
0.78991


−6.06625
3.90786
0.78991
6.15005
−1.77852
0.78991


−5.89111
3.76577
0.78991
5.94095
−1.80692
0.78991


−5.70290
3.61597
0.78991
5.69965
−1.83959
0.78991


−5.48943
3.44975
0.78991
5.42614
−1.87523
0.78991


−5.25026
3.26747
0.78991
5.12014
−1.91087
0.78991


−4.98510
3.06997
0.78991
4.78148
−1.94353
0.78991


−4.70565
2.86644
0.78991
4.40996
−1.97166
0.78991


−4.41126
2.65799
0.78991
4.02174
−1.99291
0.78991


−4.10127
2.44554
0.78991
3.61671
−2.00646
0.78991


−3.77579
2.22995
0.78991
3.19461
−2.00897
0.78991


−3.43406
2.01240
0.78991
2.75674
−1.99644
0.78991


−3.07554
1.79402
0.78991
2.30568
−1.96655
0.78991


−2.69966
1.57564
0.78991
1.84191
−1.91690
0.78991


−2.30568
1.35855
0.78991
1.36588
−1.84451
0.78991


−1.90632
1.15075
0.78991
0.89404
−1.74938
0.78991


−1.50167
0.95195
0.78991
0.42655
−1.63049
0.78991


−1.09247
0.76234
0.78991
−0.03666
−1.48765
0.78991


−0.67955
0.58266
0.78991
−0.49551
−1.32226
0.78991


−0.26265
0.41375
0.78991
−0.94536
−1.13729
0.78991


0.15843
0.25597
0.78991
−1.38537
−0.93450
0.78991


0.58322
0.10840
0.78991
−1.81573
−0.71436
0.78991


1.01098
−0.03128
0.78991
−2.23663
−0.47704
0.78991


1.44106
−0.16464
0.78991
−2.64787
−0.22256
0.78991


1.87356
−0.29142
0.78991
−3.04955
0.04947
0.78991


2.30781
−0.41152
0.78991
−3.44139
0.33903
0.78991


2.72908
−0.52159
0.78991
−3.80855
0.63380
0.78991


3.13707
−0.62322
0.78991
−4.15046
0.93023
0.78991


3.53133
−0.71761
0.78991
−4.46843
1.22713
0.78991


3.91185
−0.80522
0.78991
−4.76403
1.52310
0.78991


4.27863
−0.88559
0.78991
−5.03930
1.81611
0.78991


4.63140
−0.96003
0.78991
−5.29453
2.10586
0.78991


4.96960
−1.03075
0.78991
−5.53036
2.39181
0.78991


5.27829
−1.09609
0.78991
−5.75004
2.67089
0.78991


5.55728
−1.15641
0.78991
−5.94309
2.93094
0.78991


5.80694
−1.21006
0.78991
−6.11200
3.16946
0.78991


6.02755
−1.25600
0.78991
−6.25809
3.38487
0.78991


6.21911
−1.29433
0.78991
−6.38941
3.59035
0.78991


6.38134
−1.32551
0.78991
−6.49642
3.77282
0.78991


6.52018
−1.35159
0.78991
−6.57160
3.91714
0.78991


6.63684
−1.37294
0.78991
−6.62422
4.03621
0.78991


6.73299
−1.39029
0.78991
−6.65550
4.12865
0.78991


6.80993
−1.40394
0.78991
−6.66914
4.20039
0.78991


6.86516
−1.42807
0.78991
−6.66840
4.24114
0.78991


6.89671
−1.46139
0.78991
−6.66097
4.26592
0.78991


6.91370
−1.49582
0.78991
−6.65401
4.27696
0.78991


6.92047
−1.52570
0.78991
−6.64956
4.28170
0.78991


−6.58079
4.32875
1.55559
6.95100
−1.66278
1.55559


−6.57828
4.33051
1.55559
6.94776
−1.68673
1.55559


−6.57290
4.33339
1.55559
6.93764
−1.71726
1.55559


−6.56102
4.33608
1.55559
6.91620
−1.75114
1.55559


−6.53679
4.33386
1.55559
6.87926
−1.78195
1.55559


−6.50106
4.32151
1.55559
6.81810
−1.80024
1.55559


−6.44129
4.28959
1.55559
6.73439
−1.80970
1.55559


−6.36612
4.23947
1.55559
6.62979
−1.82140
1.55559


−6.26997
4.16717
1.55559
6.50264
−1.83541
1.55559


−6.15284
4.07287
1.55559
6.35136
−1.85202
1.55559


−6.00202
3.94814
1.55559
6.17428
−1.87151
1.55559


−5.82754
3.80512
1.55559
5.96508
−1.89481
1.55559


−5.63988
3.65421
1.55559
5.72369
−1.92163
1.55559


−5.42688
3.48687
1.55559
5.44999
−1.95059
1.55559


−5.18836
3.30357
1.55559
5.14399
−1.97880
1.55559


−4.92357
3.10505
1.55559
4.80542
−2.00377
1.55559


−4.64449
2.90068
1.55559
4.43437
−2.02381
1.55559


−4.35010
2.69168
1.55559
4.04679
−2.03699
1.55559


−4.04002
2.47886
1.55559
3.64279
−2.04219
1.55559


−3.71426
2.26317
1.55559
3.22208
−2.03625
1.55559


−3.37216
2.04572
1.55559
2.78495
−2.01574
1.55559


−3.01317
1.82724
1.55559
2.33408
−1.97787
1.55559


−2.63701
1.60858
1.55559
1.87068
−1.91996
1.55559


−2.24285
1.39085
1.55559
1.39521
−1.83903
1.55559


−1.84367
1.18184
1.55559
0.92402
−1.73545
1.55559


−1.43939
0.98147
1.55559
0.45718
−1.60812
1.55559


−1.03084
0.78981
1.55559
−0.00520
−1.45749
1.55559


−0.61876
0.60753
1.55559
−0.45950
−1.28625
1.55559


−0.20279
0.43509
1.55559
−0.90425
−1.09674
1.55559


0.21708
0.27286
1.55559
−1.33990
−0.88986
1.55559


0.64057
0.12019
1.55559
−1.76692
−0.66638
1.55559


1.06713
−0.02469
1.55559
−2.18540
−0.42637
1.55559


1.49600
−0.16362
1.55559
−2.59497
−0.16956
1.55559


1.92683
−0.29708
1.55559
−2.99563
0.10450
1.55559


2.35942
−0.42442
1.55559
−3.38534
0.39481
1.55559


2.77901
−0.54201
1.55559
−3.74906
0.68856
1.55559


3.18542
−0.65088
1.55559
−4.08828
0.98397
1.55559


3.57820
−0.75241
1.55559
−4.40402
1.28004
1.55559


3.95733
−0.84726
1.55559
−4.69776
1.57545
1.55559


4.32263
−0.93552
1.55559
−4.97155
1.86808
1.55559


4.67382
−1.01803
1.55559
−5.22604
2.15737
1.55559


5.01063
−1.09655
1.55559
−5.46150
2.44285
1.55559


5.31792
−1.16885
1.55559
−5.68099
2.72165
1.55559


5.59561
−1.23549
1.55559
−5.87432
2.98134
1.55559


5.84415
−1.29507
1.55559
−6.04342
3.21921
1.55559


6.06374
−1.34667
1.55559
−6.18941
3.43360
1.55559


6.25428
−1.39002
1.55559
−6.32101
3.63824
1.55559


6.41577
−1.42575
1.55559
−6.42821
3.81978
1.55559


6.55387
−1.45554
1.55559
−6.50357
3.96336
1.55559


6.67007
−1.48023
1.55559
−6.55638
4.08188
1.55559


6.76566
−1.50027
1.55559
−6.58803
4.17394
1.55559


6.84223
−1.51614
1.55559
−6.60204
4.24541
1.55559


6.89699
−1.54130
1.55559
−6.60167
4.28587
1.55559


6.92790
−1.57508
1.55559
−6.59452
4.31075
1.55559


6.94423
−1.60970
1.55559
−6.58775
4.32179
1.55559


6.95045
−1.63967
1.55559
−6.58329
4.32662
1.55559


−6.50914
4.38509
2.32127
6.97597
−1.77833
2.32127


−6.50663
4.38694
2.32127
6.97207
−1.80209
2.32127


−6.50125
4.38973
2.32127
6.96084
−1.83226
2.32127


−6.48937
4.39233
2.32127
6.93810
−1.86520
2.32127


−6.46514
4.38973
2.32127
6.89996
−1.89434
2.32127


−6.42960
4.37692
2.32127
6.83815
−1.91003
2.32127


−6.36992
4.34425
2.32127
6.75443
−1.91792
2.32127


−6.29521
4.29348
2.32127
6.64984
−1.92766
2.32127


−6.19971
4.22026
2.32127
6.52259
−1.93926
2.32127


−6.08323
4.12485
2.32127
6.37131
−1.95300
2.32127


−5.93334
3.99881
2.32127
6.19414
−1.96896
2.32127


−5.75960
3.85431
2.32127
5.98485
−1.98762
2.32127


−5.57287
3.70191
2.32127
5.74327
−2.00859
2.32127


−5.36098
3.53291
2.32127
5.46948
−2.03059
2.32127


−5.12339
3.34794
2.32127
5.16339
−2.05138
2.32127


−4.85944
3.14784
2.32127
4.82491
−2.06883
2.32127


−4.58101
2.94189
2.32127
4.45414
−2.08126
2.32127


−4.28708
2.73149
2.32127
4.06712
−2.08665
2.32127


−3.97756
2.51747
2.32127
3.66377
−2.08340
2.32127


−3.65226
2.30067
2.32127
3.24408
−2.06883
2.32127


−3.31035
2.08210
2.32127
2.80815
−2.03941
2.32127


−2.95164
1.86251
2.32127
2.35877
−1.99245
2.32127


−2.57548
1.64246
2.32127
1.89731
−1.92516
2.32127


−2.18168
1.42278
2.32127
1.42445
−1.83485
2.32127


−1.78288
1.21117
2.32127
0.95631
−1.72228
2.32127


−1.37953
1.00782
2.32127
0.49310
−1.58677
2.32127


−0.97246
0.81302
2.32127
0.03471
−1.42862
2.32127


−0.56169
0.62721
2.32127
−0.41644
−1.25034
2.32127


−0.14710
0.45050
2.32127
−0.85803
−1.05460
2.32127


0.27147
0.28316
2.32127
−1.29052
−0.84216
2.32127


0.69366
0.12474
2.32127
−1.71429
−0.61394
2.32127


1.11910
−0.02627
2.32127
−2.12962
−0.37031
2.32127


1.54659
−0.17170
2.32127
−2.53613
−0.11063
2.32127


1.97555
−0.31258
2.32127
−2.93372
0.16557
2.32127


2.40619
−0.44799
2.32127
−3.32130
0.45774
2.32127


2.82412
−0.57338
2.32127
−3.68354
0.75287
2.32127


3.22895
−0.68976
2.32127
−4.02136
1.04922
2.32127


3.62052
−0.79826
2.32127
−4.33590
1.34565
2.32127


3.99835
−0.89989
2.32127
−4.62843
1.64107
2.32127


4.36244
−0.99520
2.32127
−4.90102
1.93342
2.32127


4.71243
−1.08495
2.32127
−5.15448
2.22206
2.32127


5.04794
−1.17033
2.32127
−5.38901
2.50661
2.32127


5.35421
−1.24876
2.32127
−5.60758
2.78421
2.32127


5.63106
−1.32059
2.32127
−5.80025
3.04250
2.32127


5.87877
−1.38491
2.32127
−5.96908
3.27926
2.32127


6.09743
−1.44106
2.32127
−6.11534
3.49290
2.32127


6.28723
−1.48895
2.32127
−6.24713
3.69672
2.32127


6.44788
−1.52877
2.32127
−6.35461
3.87760
2.32127


6.58533
−1.56246
2.32127
−6.43025
4.02071
2.32127


6.70088
−1.59048
2.32127
−6.48334
4.13886
2.32127


6.79601
−1.61350
2.32127
−6.51526
4.23056
2.32127


6.87212
−1.63179
2.32127
−6.52974
4.30184
2.32127


6.92576
−1.65805
2.32127
−6.52965
4.34230
2.32127


6.95537
−1.69183
2.32127
−6.52278
4.36717
2.32127


6.97059
−1.72608
2.32127
−6.51600
4.37822
2.32127


6.97597
−1.75569
2.32127
−6.51164
4.38295
2.32127


−6.47016
4.41822
2.70411
6.97476
−1.84191
2.70411


−6.46765
4.41998
2.70411
6.97050
−1.86557
2.70411


−6.46227
4.42286
2.70411
6.95871
−1.89537
2.70411


−6.45030
4.42527
2.70411
6.93523
−1.92776
2.70411


−6.42616
4.42249
2.70411
6.89662
−1.95606
2.70411


−6.39071
4.40950
2.70411
6.83453
−1.97082
2.70411


−6.33131
4.37646
2.70411
6.75091
−1.97797
2.70411


−6.25688
4.32522
2.70411
6.64640
−1.98678
2.70411


−6.16175
4.25153
2.70411
6.51935
−1.99736
2.70411


−6.04583
4.15547
2.70411
6.36807
−2.00961
2.70411


−5.89659
4.02870
2.70411
6.19117
−2.02372
2.70411


−5.72369
3.88326
2.70411
5.98198
−2.03996
2.70411


−5.53779
3.73003
2.70411
5.74048
−2.05788
2.70411


−5.32664
3.56010
2.70411
5.46688
−2.07625
2.70411


−5.08989
3.37411
2.70411
5.16107
−2.09314
2.70411


−4.82677
3.17290
2.70411
4.82306
−2.10660
2.70411


−4.54917
2.96602
2.70411
4.45275
−2.11477
2.70411


−4.25599
2.75469
2.70411
4.06638
−2.11579
2.70411


−3.94730
2.53984
2.70411
3.66377
−2.10772
2.70411


−3.62265
2.32201
2.70411
3.24501
−2.08785
2.70411


−3.28148
2.10252
2.70411
2.81019
−2.05314
2.70411


−2.92333
1.88191
2.70411
2.36192
−2.00052
2.70411


−2.54791
1.66074
2.70411
1.90196
−1.92748
2.70411


−2.15477
1.43958
2.70411
1.43085
−1.83161
2.70411


−1.75680
1.22630
2.70411
0.96504
−1.71383
2.70411


−1.35465
1.02100
2.70411
0.50442
−1.57350
2.70411


−0.94880
0.82425
2.70411
0.04891
−1.41127
2.70411


−0.53923
0.63612
2.70411
−0.40020
−1.22899
2.70411


−0.12566
0.45700
2.70411
−0.83984
−1.02954
2.70411


0.29170
0.28660
2.70411
−1.27020
−0.81394
2.70411


0.71287
0.12502
2.70411
−1.69183
−0.58303
2.70411


1.13720
−0.02951
2.70411
−2.10493
−0.33718
2.70411


1.56338
−0.17875
2.70411
−2.50912
−0.07573
2.70411


1.99087
−0.32381
2.70411
−2.90430
0.20158
2.70411


2.41993
−0.46386
2.70411
−3.29002
0.49486
2.70411


2.83646
−0.59380
2.70411
−3.65124
0.79121
2.70411


3.24000
−0.71454
2.70411
−3.98814
1.08820
2.70411


3.63045
−0.82731
2.70411
−4.30184
1.38510
2.70411


4.00726
−0.93283
2.70411
−4.59345
1.68051
2.70411


4.37033
−1.03205
2.70411
−4.86529
1.97268
2.70411


4.71930
−1.12569
2.70411
−5.11791
2.26085
2.70411


5.05388
−1.21479
2.70411
−5.35161
2.54466
2.70411


5.35931
−1.29637
2.70411
−5.56944
2.82161
2.70411


5.63552
−1.37071
2.70411
−5.76146
3.07888
2.70411


5.88267
−1.43726
2.70411
−5.92972
3.31462
2.70411


6.10077
−1.49554
2.70411
−6.07562
3.52762
2.70411


6.29001
−1.54538
2.70411
−6.20741
3.73105
2.70411


6.45030
−1.58705
2.70411
−6.31489
3.91157
2.70411


6.58738
−1.62232
2.70411
−6.39062
4.05440
2.70411


6.70255
−1.65183
2.70411
−6.44380
4.17227
2.70411


6.79740
−1.67606
2.70411
−6.47572
4.26378
2.70411


6.87323
−1.69545
2.70411
−6.49039
4.33488
2.70411


6.92641
−1.72209
2.70411
−6.49048
4.37525
2.70411


6.95546
−1.75587
2.70411
−6.48371
4.40021
2.70411


6.97022
−1.79003
2.70411
−6.47702
4.41126
2.70411


6.97514
−1.81945
2.70411
−6.47266
4.41609
2.70411


−6.40640
4.47474
3.27842
6.93643
−1.95282
3.27842


−6.40389
4.47650
3.27842
6.93142
−1.97620
3.27842


−6.39841
4.47929
3.27842
6.91871
−2.00553
3.27842


−6.38653
4.48161
3.27842
6.89430
−2.03690
3.27842


−6.36240
4.47845
3.27842
6.85504
−2.06391
3.27842


−6.32723
4.46500
3.27842
6.79304
−2.07737
3.27842


−6.26829
4.43149
3.27842
6.70970
−2.08321
3.27842


−6.19460
4.37961
3.27842
6.60557
−2.09027
3.27842


−6.10049
4.30518
3.27842
6.47888
−2.09862
3.27842


−5.98578
4.20828
3.27842
6.32816
−2.10809
3.27842


−5.83821
4.08039
3.27842
6.15182
−2.11867
3.27842


−5.66716
3.93366
3.27842
5.94337
−2.13045
3.27842


−5.48312
3.77904
3.27842
5.70271
−2.14280
3.27842


−5.27411
3.60762
3.27842
5.43003
−2.15468
3.27842


−5.03958
3.42005
3.27842
5.12534
−2.16461
3.27842


−4.77879
3.21726
3.27842
4.78872
−2.17073
3.27842


−4.50342
3.00890
3.27842
4.42008
−2.17129
3.27842


−4.21255
2.79609
3.27842
4.03556
−2.16405
3.27842


−3.90619
2.57956
3.27842
3.63518
−2.14716
3.27842


−3.58395
2.36007
3.27842
3.21911
−2.11783
3.27842


−3.24519
2.13871
3.27842
2.78718
−2.07319
3.27842


−2.88945
1.91616
3.27842
2.34206
−2.01045
3.27842


−2.51645
1.69267
3.27842
1.88581
−1.92739
3.27842


−2.12591
1.46881
3.27842
1.41897
−1.82158
3.27842


−1.73072
1.25256
3.27842
0.95771
−1.69471
3.27842


−1.33182
1.04402
3.27842
0.50219
−1.54612
3.27842


−0.92912
0.84364
3.27842
0.05216
−1.37656
3.27842


−0.52252
0.65162
3.27842
−0.39194
−1.18778
3.27842


−0.11202
0.46813
3.27842
−0.82666
−0.98267
3.27842


0.30247
0.29300
3.27842
−1.25219
−0.76197
3.27842


0.72076
0.12604
3.27842
−1.66900
−0.52679
3.27842


1.14193
−0.03397
3.27842
−2.07727
−0.27732
3.27842


1.56468
−0.18924
3.27842
−2.47673
−0.01309
3.27842


1.98864
−0.34126
3.27842
−2.86699
0.26636
3.27842


2.41408
−0.48874
3.27842
−3.24816
0.56113
3.27842


2.82709
−0.62637
3.27842
−3.60632
0.85886
3.27842


3.22747
−0.75473
3.27842
−3.94043
1.15678
3.27842


3.61486
−0.87464
3.27842
−4.25153
1.45387
3.27842


3.98879
−0.98713
3.27842
−4.54082
1.74910
3.27842


4.34898
−1.09312
3.27842
−4.81053
2.04052
3.27842


4.69517
−1.19363
3.27842
−5.06121
2.32758
3.27842


5.02715
−1.28922
3.27842
−5.29305
2.61010
3.27842


5.33026
−1.37656
3.27842
−5.50911
2.88556
3.27842


5.60442
−1.45572
3.27842
−5.69965
3.14106
3.27842


5.84972
−1.52663
3.27842
−5.86661
3.37513
3.27842


6.06625
−1.58881
3.27842
−6.01140
3.58636
3.27842


6.25400
−1.64227
3.27842
−6.14263
3.78841
3.27842


6.41299
−1.68719
3.27842
−6.25010
3.96865
3.27842


6.54895
−1.72534
3.27842
−6.32584
4.11130
3.27842


6.66320
−1.75736
3.27842
−6.37911
4.22898
3.27842


6.75722
−1.78362
3.27842
−6.41122
4.32040
3.27842


6.83249
−1.80460
3.27842
−6.42607
4.39140
3.27842


6.88678
−1.83003
3.27842
−6.42635
4.43168
3.27842


6.91741
−1.86418
3.27842
−6.41985
4.45664
3.27842


6.93272
−1.89936
3.27842
−6.41317
4.46778
3.27842


6.93736
−1.92961
3.27842
−6.40881
4.47261
3.27842


−6.33623
4.53841
3.85264
6.85857
−2.08154
3.85264


−6.33373
4.54017
3.85264
6.85290
−2.10456
3.85264


−6.32834
4.54286
3.85264
6.83945
−2.13315
3.85264


−6.31637
4.54500
3.85264
6.81430
−2.16349
3.85264


−6.29243
4.54156
3.85264
6.77457
−2.18902
3.85264


−6.25744
4.52764
3.85264
6.71285
−2.20071
3.85264


−6.19906
4.49349
3.85264
6.63007
−2.20470
3.85264


−6.12611
4.44096
3.85264
6.52658
−2.20943
3.85264


−6.03293
4.36560
3.85264
6.40073
−2.21482
3.85264


−5.91961
4.26759
3.85264
6.25103
−2.22066
3.85264


−5.77371
4.13821
3.85264
6.07581
−2.22679
3.85264


−5.60470
3.98990
3.85264
5.86865
−2.23301
3.85264


−5.42280
3.83361
3.85264
5.62967
−2.23867
3.85264


−5.21611
3.66015
3.85264
5.35885
−2.24285
3.85264


−4.98390
3.47035
3.85264
5.05638
−2.24442
3.85264


−4.72570
3.26533
3.85264
4.72217
−2.24155
3.85264


−4.45293
3.05466
3.85264
4.35641
−2.23245
3.85264


−4.16466
2.83943
3.85264
3.97505
−2.21519
3.85264


−3.86071
2.62040
3.85264
3.57829
−2.18744
3.85264


−3.54135
2.39830
3.85264
3.16603
−2.14679
3.85264


−3.20612
2.17445
3.85264
2.73892
−2.09055
3.85264


−2.85456
1.94929
3.85264
2.30002
−2.01648
3.85264


−2.48647
1.72330
3.85264
1.85091
−1.92237
3.85264


−2.10159
1.49712
3.85264
1.39206
−1.80627
3.85264


−1.71262
1.27836
3.85264
0.93942
−1.67030
3.85264


−1.31967
1.06676
3.85264
0.49319
−1.51373
3.85264


−0.92272
0.86267
3.85264
0.05290
−1.33786
3.85264


−0.52141
0.66656
3.85264
−0.38182
−1.14398
3.85264


−0.11564
0.47844
3.85264
−0.81097
−0.93311
3.85264


0.29430
0.29811
3.85264
−1.23122
−0.70740
3.85264


0.70842
0.12539
3.85264
−1.64209
−0.46804
3.85264


1.12588
−0.04093
3.85264
−2.04395
−0.21560
3.85264


1.54510
−0.20307
3.85264
−2.43645
0.05049
3.85264


1.96516
−0.36252
3.85264
−2.81929
0.33040
3.85264


2.38661
−0.51825
3.85264
−3.19266
0.62415
3.85264


2.79553
−0.66433
3.85264
−3.54469
0.92114
3.85264


3.19192
−0.80123
3.85264
−3.87602
1.22008
3.85264


3.57551
−0.92949
3.85264
−4.18601
1.51893
3.85264


3.94591
−1.05015
3.85264
−4.47511
1.81601
3.85264


4.30276
−1.16421
3.85264
−4.74510
2.10948
3.85264


4.64560
−1.27261
3.85264
−4.99624
2.39840
3.85264


4.97443
−1.37600
3.85264
−5.22827
2.68230
3.85264


5.27467
−1.47011
3.85264
−5.44414
2.95860
3.85264


5.54633
−1.55540
3.85264
−5.63450
3.21457
3.85264


5.78939
−1.63160
3.85264
−5.80109
3.44854
3.85264


6.00388
−1.69870
3.85264
−5.94532
3.65913
3.85264


6.18987
−1.75661
3.85264
−6.07553
3.85997
3.85264


6.34728
−1.80553
3.85264
−6.18170
4.03816
3.85264


6.48185
−1.84710
3.85264
−6.25651
4.17923
3.85264


6.59489
−1.88209
3.85264
−6.30904
4.29553
3.85264


6.68798
−1.91087
3.85264
−6.34078
4.38592
3.85264


6.76242
−1.93388
3.85264
−6.35554
4.45609
3.85264


6.81495
−1.96117
3.85264
−6.35591
4.49590
3.85264


6.84316
−1.99542
3.85264
−6.34950
4.52059
3.85264


6.85671
−2.02985
3.85264
−6.34301
4.53154
3.85264


6.86024
−2.05936
3.85264
−6.33874
4.53627
3.85264


−6.23692
4.62881
4.61832
6.71796
−2.27273
4.61832


−6.23442
4.63057
4.61832
6.71146
−2.29519
4.61832


−6.22904
4.63317
4.61832
6.69698
−2.32294
4.61832


−6.21716
4.63502
4.61832
6.67081
−2.35171
4.61832


−6.19340
4.63113
4.61832
6.63025
−2.37501
4.61832


−6.15906
4.61674
4.61832
6.56863
−2.38327
4.61832


−6.10161
4.58203
4.61832
6.48668
−2.38420
4.61832


−6.03005
4.52904
4.61832
6.38421
−2.38494
4.61832


−5.93873
4.45302
4.61832
6.25966
−2.38550
4.61832


−5.82763
4.35418
4.61832
6.11145
−2.38540
4.61832


−5.68508
4.22378
4.61832
5.93808
−2.38457
4.61832


−5.51969
4.07417
4.61832
5.73306
−2.38215
4.61832


−5.34177
3.91630
4.61832
5.49667
−2.37761
4.61832


−5.13954
3.74108
4.61832
5.22901
−2.37009
4.61832


−4.91243
3.54933
4.61832
4.92997
−2.35839
4.61832


−4.65971
3.34190
4.61832
4.59994
−2.34123
4.61832


−4.39251
3.12872
4.61832
4.23891
−2.31635
4.61832


−4.11000
2.91080
4.61832
3.86275
−2.28257
4.61832


−3.81208
2.68861
4.61832
3.47184
−2.23774
4.61832


−3.49866
2.46271
4.61832
3.06607
−2.17955
4.61832


−3.16928
2.23403
4.61832
2.64666
−2.10586
4.61832


−2.82374
2.00312
4.61832
2.21649
−2.01481
4.61832


−2.46151
1.77063
4.61832
1.77657
−1.90455
4.61832


−2.08210
1.53740
4.61832
1.32746
−1.77295
4.61832


−1.69814
1.31113
4.61832
0.88494
−1.62250
4.61832


−1.31001
1.09172
4.61832
0.44911
−1.45285
4.61832


−0.91826
0.87956
4.61832
0.01940
−1.26565
4.61832


−0.52252
0.67538
4.61832
−0.40474
−1.06230
4.61832


−0.12279
0.47927
4.61832
−0.82341
−0.84346
4.61832


0.28084
0.29087
4.61832
−1.23391
−0.61069
4.61832


0.68809
0.10998
4.61832
−1.63513
−0.36521
4.61832


1.09831
−0.06478
4.61832
−2.02716
−0.10747
4.61832


1.51002
−0.23574
4.61832
−2.40990
0.16288
4.61832


1.92247
−0.40484
4.61832
−2.78328
0.44595
4.61832


2.33603
−0.57134
4.61832
−3.14709
0.74183
4.61832


2.73715
−0.72874
4.61832
−3.49003
1.03975
4.61832


3.12575
−0.87733
4.61832
−3.81291
1.33851
4.61832


3.50181
−1.01738
4.61832
−4.11631
1.63708
4.61832


3.86498
−1.14964
4.61832
−4.39984
1.93314
4.61832


4.21469
−1.27512
4.61832
−4.66482
2.22484
4.61832


4.55085
−1.39475
4.61832
−4.91178
2.51172
4.61832


4.87308
−1.50890
4.61832
−5.14037
2.79340
4.61832


5.16748
−1.61267
4.61832
−5.35328
3.06737
4.61832


5.43393
−1.70631
4.61832
−5.54122
3.32074
4.61832


5.67236
−1.78993
4.61832
−5.70577
3.55202
4.61832


5.88285
−1.86362
4.61832
−5.84851
3.76020
4.61832


6.06523
−1.92748
4.61832
−5.97743
3.95862
4.61832


6.21957
−1.98149
4.61832
−6.08267
4.13459
4.61832


6.35145
−2.02762
4.61832
−6.15674
4.27390
4.61832


6.46227
−2.06651
4.61832
−6.20890
4.38880
4.61832


6.55341
−2.09853
4.61832
−6.24054
4.47799
4.61832


6.62636
−2.12424
4.61832
−6.25539
4.54732
4.61832


6.67805
−2.15217
4.61832
−6.25614
4.58667
4.61832


6.70543
−2.18670
4.61832
−6.25001
4.61117
4.61832


6.71787
−2.22131
4.61832
−6.24361
4.62203
4.61832


6.72037
−2.25074
4.61832
−6.23943
4.62676
4.61832


−6.13400
4.72078
5.38400
6.55758
−2.47589
5.38400


−6.13149
4.72245
5.38400
6.55034
−2.49789
5.38400


−6.12611
4.72496
5.38400
6.53475
−2.52462
5.38400


−6.11423
4.72663
5.38400
6.50747
−2.55172
5.38400


−6.09075
4.72217
5.38400
6.46607
−2.57223
5.38400


−6.05687
4.70723
5.38400
6.40454
−2.57650
5.38400


−6.00026
4.67187
5.38400
6.32352
−2.57381
5.38400


−5.92982
4.61813
5.38400
6.22235
−2.57000
5.38400


−5.84016
4.54138
5.38400
6.09929
−2.56499
5.38400


−5.73111
4.44161
5.38400
5.95293
−2.55831
5.38400


−5.59115
4.30991
5.38400
5.78169
−2.54958
5.38400


−5.42892
4.15882
5.38400
5.57946
−2.53789
5.38400


−5.25435
3.99928
5.38400
5.34623
−2.52220
5.38400


−5.05601
3.82201
5.38400
5.08228
−2.50188
5.38400


−4.83317
3.62785
5.38400
4.78770
−2.47580
5.38400


−4.58519
3.41764
5.38400
4.46258
−2.44267
5.38400


−4.32300
3.20130
5.38400
4.10740
−2.40025
5.38400


−4.04577
2.97994
5.38400
3.73774
−2.34828
5.38400


−3.75351
2.75386
5.38400
3.35387
−2.28508
5.38400


−3.44613
2.52360
5.38400
2.95609
−2.20851
5.38400


−3.12324
2.28972
5.38400
2.54531
−2.11690
5.38400


−2.78458
2.05268
5.38400
2.12442
−2.00869
5.38400


−2.42967
1.81332
5.38400
1.69434
−1.88200
5.38400


−2.05788
1.57239
5.38400
1.25572
−1.73490
5.38400


−1.68144
1.33823
5.38400
0.82425
−1.56997
5.38400


−1.30120
1.11094
5.38400
0.39973
−1.38732
5.38400


−0.91752
0.89060
5.38400
−0.01856
−1.18908
5.38400


−0.52995
0.67788
5.38400
−0.43120
−0.97655
5.38400


−0.13847
0.47305
5.38400
−0.83835
−0.75009
5.38400


0.25681
0.27583
5.38400
−1.23883
−0.50981
5.38400


0.65580
0.08585
5.38400
−1.63011
−0.25783
5.38400


1.05766
−0.09819
5.38400
−2.01203
0.00557
5.38400


1.46139
−0.27862
5.38400
−2.38457
0.28066
5.38400


1.86567
−0.45783
5.38400
−2.74773
0.56744
5.38400


2.27088
−0.63547
5.38400
−3.10143
0.86564
5.38400


2.66365
−0.80466
5.38400
−3.43481
1.16458
5.38400


3.04398
−0.96541
5.38400
−3.74878
1.46306
5.38400


3.41179
−1.11799
5.38400
−4.04401
1.76005
5.38400


3.76688
−1.26268
5.38400
−4.32123
2.05463
5.38400


4.10888
−1.40041
5.38400
−4.58110
2.34466
5.38400


4.43752
−1.53183
5.38400
−4.82352
2.62912
5.38400


4.75271
−1.65722
5.38400
−5.04849
2.90811
5.38400


5.04070
−1.77100
5.38400
−5.25834
3.17921
5.38400


5.30159
−1.87328
5.38400
−5.44377
3.42961
5.38400


5.53528
−1.96432
5.38400
−5.60647
3.65811
5.38400


5.74151
−2.04423
5.38400
−5.74772
3.86349
5.38400


5.92026
−2.11347
5.38400
−5.87552
4.05923
5.38400


6.07154
−2.17213
5.38400
−5.97984
4.23297
5.38400


6.20082
−2.22224
5.38400
−6.05335
4.37033
5.38400


6.30941
−2.26447
5.38400
−6.10513
4.48374
5.38400


6.39869
−2.29927
5.38400
−6.13669
4.57182
5.38400


6.47016
−2.32730
5.38400
−6.15173
4.64022
5.38400


6.52111
−2.35561
5.38400
−6.15275
4.67911
5.38400


6.54775
−2.39032
5.38400
−6.14690
4.70333
5.38400


6.55925
−2.42494
5.38400
−6.14059
4.71410
5.38400


6.56083
−2.45417
5.38400
−6.13641
4.71874
5.38400


−6.02495
4.81619
6.14968
6.37995
−2.68360
6.14968


−6.02244
4.81786
6.14968
6.37187
−2.70504
6.14968


−6.01706
4.82027
6.14968
6.35535
−2.73084
6.14968


−6.00527
4.82167
6.14968
6.32686
−2.75618
6.14968


−5.98207
4.81675
6.14968
6.28472
−2.77372
6.14968


−5.94875
4.80134
6.14968
6.22365
−2.77381
6.14968


−5.89316
4.76533
6.14968
6.14374
−2.76722
6.14968


−5.82401
4.71094
6.14968
6.04397
−2.75868
6.14968


−5.73612
4.63345
6.14968
5.92276
−2.74783
6.14968


−5.62939
4.53284
6.14968
5.77863
−2.73409
6.14968


−5.49240
4.40012
6.14968
5.61009
−2.71711
6.14968


−5.33361
4.24773
6.14968
5.41101
−2.69548
6.14968


−5.16274
4.08680
6.14968
5.18158
−2.66847
6.14968


−4.96868
3.90777
6.14968
4.92199
−2.63506
6.14968


−4.75067
3.71147
6.14968
4.63252
−2.59450
6.14968


−4.50806
3.49866
6.14968
4.31344
−2.54531
6.14968


−4.25172
3.27944
6.14968
3.96494
−2.48536
6.14968


−3.98062
3.05475
6.14968
3.60270
−2.41529
6.14968


−3.69486
2.82486
6.14968
3.22691
−2.33361
6.14968


−3.39443
2.59005
6.14968
2.83785
−2.23876
6.14968


−3.07888
2.35097
6.14968
2.43682
−2.12915
6.14968


−2.74820
2.10799
6.14968
2.02623
−2.00377
6.14968


−2.40183
1.86168
6.14968
1.60682
−1.86056
6.14968


−2.03913
1.61294
6.14968
1.17971
−1.69759
6.14968


−1.67206
1.37034
6.14968
0.75993
−1.51809
6.14968


−1.30101
1.13423
6.14968
0.34739
−1.32236
6.14968


−0.92634
0.90471
6.14968
−0.05912
−1.11298
6.14968


−0.54795
0.68234
6.14968
−0.45987
−0.89088
6.14968


−0.16548
0.46748
6.14968
−0.85497
−0.65617
6.14968


0.22098
0.25996
6.14968
−1.24412
−0.40836
6.14968


0.61106
0.05940
6.14968
−1.62492
−0.14924
6.14968


1.00439
−0.13522
6.14968
−1.99644
0.12047
6.14968


1.39985
−0.32595
6.14968
−2.35839
0.40085
6.14968


1.79569
−0.51575
6.14968
−2.71107
0.69181
6.14968


2.19199
−0.70489
6.14968
−3.05466
0.99307
6.14968


2.57585
−0.88615
6.14968
−3.37856
1.29359
6.14968


2.94737
−1.05924
6.14968
−3.68381
1.59216
6.14968


3.30654
−1.22416
6.14968
−3.97106
1.88813
6.14968


3.65309
−1.38138
6.14968
−4.24105
2.18066
6.14968


3.98693
−1.53137
6.14968
−4.49488
2.46847
6.14968


4.30778
−1.67448
6.14968
−4.73257
2.75080
6.14968


4.61553
−1.81091
6.14968
−4.95327
3.02691
6.14968


4.89693
−1.93462
6.14968
−5.15949
3.29494
6.14968


5.15198
−2.04553
6.14968
−5.34214
3.54228
6.14968


5.38057
−2.14400
6.14968
−5.50270
3.76781
6.14968


5.58243
−2.23041
6.14968
−5.64220
3.97050
6.14968


5.75747
−2.30503
6.14968
−5.76861
4.16355
6.14968


5.90559
−2.36823
6.14968
−5.87172
4.33488
6.14968


6.03219
−2.42216
6.14968
−5.94439
4.47047
6.14968


6.13855
−2.46754
6.14968
−5.99562
4.58231
6.14968


6.22597
−2.50503
6.14968
−6.02690
4.66918
6.14968


6.29586
−2.53511
6.14968
−6.04193
4.73674
6.14968


6.34635
−2.56360
6.14968
−6.04314
4.77507
6.14968


6.37243
−2.59840
6.14968
−6.03766
4.79893
6.14968


6.38319
−2.63302
6.14968
−6.03154
4.80969
6.14968


6.38394
−2.66207
6.14968
−6.02736
4.81424
6.14968


−5.90652
4.91800
6.91537
6.18254
−2.90013
6.91537


−5.90411
4.91967
6.91537
6.17372
−2.92092
6.91537


−5.89863
4.92199
6.91537
6.15618
−2.94551
6.91537


−5.88694
4.92301
6.91537
6.12676
−2.96908
6.91537


−5.86401
4.91754
6.91537
6.08416
−2.98366
6.91537


−5.83125
4.90167
6.91537
6.02383
−2.97967
6.91537


−5.77677
4.86501
6.91537
5.94541
−2.96927
6.91537


−5.70911
4.80997
6.91537
5.84740
−2.95591
6.91537


−5.62308
4.73173
6.91537
5.72833
−2.93901
6.91537


−5.51885
4.63011
6.91537
5.58688
−2.91822
6.91537


−5.38502
4.49627
6.91537
5.42150
−2.89279
6.91537


−5.22994
4.34258
6.91537
5.22622
−2.86115
6.91537


−5.06306
4.18016
6.91537
5.00135
−2.82244
6.91537


−4.87355
3.99937
6.91537
4.74714
−2.77604
6.91537


−4.66064
3.80094
6.91537
4.46379
−2.72082
6.91537


−4.42379
3.58553
6.91537
4.15148
−2.65557
6.91537


−4.17348
3.36334
6.91537
3.81096
−2.57808
6.91537


−3.90906
3.13512
6.91537
3.45727
−2.48981
6.91537


−3.63036
2.90124
6.91537
3.09076
−2.38949
6.91537


−3.33735
2.66188
6.91537
2.71182
−2.27589
6.91537


−3.02978
2.41751
6.91537
2.32220
−2.14799
6.91537


−2.70755
2.16841
6.91537
1.92339
−2.00470
6.91537


−2.37037
1.91513
6.91537
1.51642
−1.84413
6.91537


−2.01760
1.65833
6.91537
1.10230
−1.66436
6.91537


−1.66065
1.40700
6.91537
0.69561
−1.46937
6.91537


−1.29980
1.16152
6.91537
0.29616
−1.25990
6.91537


−0.93534
0.92225
6.91537
−0.09745
−1.03864
6.91537


−0.56716
0.68939
6.91537
−0.48549
−0.80615
6.91537


−0.19490
0.46340
6.91537
−0.86777
−0.56215
6.91537


0.18117
0.24428
6.91537
−1.24430
−0.30637
6.91537


0.56104
0.03156
6.91537
−1.61350
−0.03991
6.91537


0.94425
−0.17532
6.91537
−1.97370
0.23620
6.91537


1.32997
−0.37792
6.91537
−2.32470
0.52196
6.91537


1.71615
−0.57969
6.91537
−2.66662
0.81719
6.91537


2.10242
−0.78118
6.91537
−2.99990
1.12152
6.91537


2.47626
−0.97515
6.91537
−3.31443
1.42361
6.91537


2.83804
−1.16105
6.91537
−3.61114
1.72274
6.91537


3.18756
−1.33878
6.91537
−3.89060
2.01806
6.91537


3.52492
−1.50853
6.91537
−4.15353
2.30902
6.91537


3.84985
−1.67058
6.91537
−4.40077
2.59450
6.91537


4.16225
−1.82529
6.91537
−4.63289
2.87423
6.91537


4.46203
−1.97268
6.91537
−4.84960
3.14812
6.91537


4.73628
−2.10623
6.91537
−5.05239
3.41383
6.91537


4.98501
−2.22586
6.91537
−5.23226
3.65885
6.91537


5.20794
−2.33185
6.91537
−5.39050
3.88187
6.91537


5.40498
−2.42485
6.91537
−5.52823
4.08225
6.91537


5.57593
−2.50513
6.91537
−5.65296
4.27307
6.91537


5.72062
−2.57288
6.91537
−5.75478
4.44235
6.91537


5.84425
−2.63079
6.91537
−5.82652
4.57637
6.91537


5.94819
−2.67942
6.91537
−5.87710
4.68691
6.91537


6.03367
−2.71961
6.91537
−5.90791
4.77275
6.91537


6.10198
−2.75172
6.91537
−5.92295
4.83939
6.91537


6.15200
−2.78068
6.91537
−5.92434
4.87735
6.91537


6.17753
−2.81548
6.91537
−5.91905
4.90092
6.91537


6.18736
−2.85010
6.91537
−5.91311
4.91151
6.91537


6.18727
−2.87897
6.91537
−5.90893
4.91605
6.91537


−5.77974
5.02343
7.68105
5.96508
−3.12927
7.68105


−5.77724
5.02501
7.68105
5.95552
−3.14951
7.68105


−5.77176
5.02724
7.68105
5.93706
−3.17290
7.68105


−5.76016
5.02798
7.68105
5.90680
−3.19443
7.68105


−5.73761
5.02204
7.68105
5.86374
−3.20575
7.68105


−5.70540
5.00552
7.68105
5.80443
−3.19786
7.68105


−5.65204
4.96821
7.68105
5.72758
−3.18357
7.68105


−5.58586
4.91262
7.68105
5.63162
−3.16529
7.68105


−5.50178
4.83354
7.68105
5.51505
−3.14236
7.68105


−5.40006
4.73108
7.68105
5.37667
−3.11433
7.68105


−5.26957
4.59614
7.68105
5.21481
−3.08036
7.68105


−5.11829
4.44124
7.68105
5.02390
−3.03860
7.68105


−4.95540
4.27743
7.68105
4.80431
−2.98820
7.68105


−4.77043
4.09496
7.68105
4.55614
−2.92834
7.68105


−4.56273
3.89440
7.68105
4.27965
−2.85836
7.68105


−4.33163
3.67658
7.68105
3.97533
−2.77669
7.68105


−4.08754
3.45142
7.68105
3.64372
−2.68119
7.68105


−3.82990
3.21986
7.68105
3.29967
−2.57427
7.68105


−3.55843
2.98208
7.68105
2.94375
−2.45473
7.68105


−3.27322
2.73808
7.68105
2.57641
−2.32155
7.68105


−2.97400
2.48851
7.68105
2.19950
−2.17454
7.68105


−2.66068
2.23338
7.68105
1.81416
−2.01221
7.68105


−2.33296
1.97323
7.68105
1.42111
−1.83318
7.68105


−1.99040
1.70854
7.68105
1.02137
−1.63531
7.68105


−1.64404
1.44858
7.68105
0.62925
−1.42380
7.68105


−1.29424
1.19382
7.68105
0.24428
−1.19948
7.68105


−0.94100
0.94443
7.68105
−0.13522
−0.96504
7.68105


−0.58415
0.70062
7.68105
−0.50925
−0.72086
7.68105


−0.22358
0.46275
7.68105
−0.87770
−0.46656
7.68105


0.14079
0.23082
7.68105
−1.24059
−0.20205
7.68105


0.50878
0.00455
7.68105
−1.59726
0.07230
7.68105


0.88012
−0.21634
7.68105
−1.94558
0.35528
7.68105


1.25423
−0.43305
7.68105
−2.28517
0.64661
7.68105


1.62900
−0.64865
7.68105
−2.61641
0.94611
7.68105


2.00386
−0.86415
7.68105
−2.93966
1.25340
7.68105


2.36656
−1.07186
7.68105
−3.24501
1.55735
7.68105


2.71729
−1.27140
7.68105
−3.53328
1.85722
7.68105


3.05623
−1.46250
7.68105
−3.80512
2.15236
7.68105


3.38348
−1.64524
7.68105
−4.06109
2.44220
7.68105


3.69866
−1.81982
7.68105
−4.30202
2.72592
7.68105


4.00178
−1.98632
7.68105
−4.52839
3.00305
7.68105


4.29293
−2.14493
7.68105
−4.73999
3.27397
7.68105


4.55938
−2.28851
7.68105
−4.93851
3.53671
7.68105


4.80115
−2.41714
7.68105
−5.11522
3.77913
7.68105


5.01805
−2.53111
7.68105
−5.27096
3.99974
7.68105


5.20980
−2.63098
7.68105
−5.40655
4.19780
7.68105


5.37611
−2.71711
7.68105
−5.52943
4.38629
7.68105


5.51709
−2.78987
7.68105
−5.62976
4.55363
7.68105


5.63747
−2.85187
7.68105
−5.70048
4.68598
7.68105


5.73872
−2.90402
7.68105
−5.75023
4.79531
7.68105


5.82197
−2.94690
7.68105
−5.78067
4.88004
7.68105


5.88861
−2.98124
7.68105
−5.79561
4.94584
7.68105


5.93780
−3.01085
7.68105
−5.79719
4.98315
7.68105


5.96249
−3.04556
7.68105
−5.79199
5.00664
7.68105


5.97149
−3.07999
7.68105
−5.78615
5.01703
7.68105


5.97047
−3.10858
7.68105
−5.78206
5.02158
7.68105


−5.51421
5.22130
9.21241
5.51004
−3.58330
9.21241


−5.51171
5.22279
9.21241
5.49918
−3.60214
9.21241


−5.50632
5.22474
9.21241
5.47895
−3.62312
9.21241


−5.49482
5.22483
9.21241
5.44693
−3.64010
9.21241


−5.47291
5.21796
9.21241
5.40377
−3.64391
9.21241


−5.44191
5.20052
9.21241
5.34725
−3.62841
9.21241


−5.39068
5.16200
9.21241
5.27411
−3.60660
9.21241


−5.32729
5.10520
9.21241
5.18279
−3.57885
9.21241


−5.24692
5.02483
9.21241
5.07216
−3.54432
9.21241


−5.14993
4.92097
9.21241
4.94074
−3.50237
9.21241


−5.02566
4.78426
9.21241
4.78742
−3.45207
9.21241


−4.88134
4.62723
9.21241
4.60672
−3.39081
9.21241


−4.72598
4.46119
9.21241
4.39919
−3.31796
9.21241


−4.54945
4.27594
9.21241
4.16503
−3.23257
9.21241


−4.35130
4.07222
9.21241
3.90470
−3.13392
9.21241


−4.13107
3.85022
9.21241
3.61866
−3.02059
9.21241


−3.89876
3.62033
9.21241
3.30756
−2.89066
9.21241


−3.65412
3.38302
9.21241
2.98570
−2.74838
9.21241


−3.39694
3.13828
9.21241
2.65362
−2.59274
9.21241


−3.12723
2.88630
9.21241
2.31292
−2.42373
9.21241


−2.84481
2.62717
9.21241
1.96423
−2.24090
9.21241


−2.54958
2.36109
9.21241
1.60821
−2.04321
9.21241


−2.24118
2.08841
9.21241
1.24570
−1.82947
9.21241


−1.91940
1.80933
9.21241
0.87789
−1.59819
9.21241


−1.59466
1.53359
9.21241
0.51751
−1.35623
9.21241


−1.26695
1.26110
9.21241
0.16381
−1.10472
9.21241


−0.93636
0.99195
9.21241
−0.18478
−0.84587
9.21241


−0.60289
0.72661
9.21241
−0.52837
−0.57997
9.21241


−0.26655
0.46526
9.21241
−0.86694
−0.30674
9.21241


0.07286
0.20799
9.21241
−1.20050
−0.02636
9.21241


0.41514
−0.04520
9.21241
−1.52895
0.26126
9.21241


0.76049
−0.29439
9.21241
−1.85230
0.55621
9.21241


1.10862
−0.53978
9.21241
−2.17018
0.85849
9.21241


1.45786
−0.78359
9.21241
−2.48183
1.16699
9.21241


1.80738
−1.02713
9.21241
−2.78727
1.48153
9.21241


2.14558
−1.26212
9.21241
−3.07684
1.79114
9.21241


2.47255
−1.48821
9.21241
−3.35128
2.09500
9.21241


2.78866
−1.70520
9.21241
−3.61087
2.39246
9.21241


3.09391
−1.91281
9.21241
−3.85598
2.68314
9.21241


3.38821
−2.11133
9.21241
−4.08726
2.96630
9.21241


3.67147
−2.30076
9.21241
−4.30481
3.24167
9.21241


3.94368
−2.48137
9.21241
−4.50852
3.50924
9.21241


4.19288
−2.64499
9.21241
−4.69981
3.76781
9.21241


4.41924
−2.79182
9.21241
−4.87030
4.00549
9.21241


4.62249
−2.92203
9.21241
−5.02074
4.22146
9.21241


4.80236
−3.03628
9.21241
−5.15198
4.41516
9.21241


4.95847
−3.13466
9.21241
−5.27105
4.59948
9.21241


5.09081
−3.21763
9.21241
−5.36822
4.76292
9.21241


5.20404
−3.28835
9.21241
−5.43662
4.89220
9.21241


5.29927
−3.34766
9.21241
−5.48489
4.99884
9.21241


5.37760
−3.39647
9.21241
−5.51449
5.08153
9.21241


5.44034
−3.43536
9.21241
−5.52916
5.14557
9.21241


5.48767
−3.46664
9.21241
−5.53101
5.18205
9.21241


5.51171
−3.50107
9.21241
−5.52628
5.20497
9.21241


5.51932
−3.53532
9.21241
−5.52062
5.21518
9.21241


5.51681
−3.56325
9.21241
−5.51653
5.21954
9.21241


−5.25685
5.38038
10.74378
5.08033
−3.98071
10.74378


−5.25435
5.38177
10.74378
5.06798
−3.99816
10.74378


−5.24887
5.38344
10.74378
5.04599
−4.01635
10.74378


−5.23755
5.38289
10.74378
5.01258
−4.02823
10.74378


−5.21639
5.37500
10.74378
4.97025
−4.02368
10.74378


−5.18650
5.35662
10.74378
4.91698
−4.00178
10.74378


−5.13731
5.31699
10.74378
4.84784
−3.97301
10.74378


−5.07652
5.25908
10.74378
4.76171
−3.93654
10.74378


−4.99958
5.17759
10.74378
4.65730
−3.89152
10.74378


−4.90677
5.07253
10.74378
4.53340
−3.83695
10.74378


−4.78770
4.93452
10.74378
4.38898
−3.77208
10.74378


−4.64941
4.77610
10.74378
4.21905
−3.69375
10.74378


−4.50036
4.60848
10.74378
4.02415
−3.60121
10.74378


−4.33098
4.42156
10.74378
3.80465
−3.49374
10.74378


−4.14072
4.21562
10.74378
3.56084
−3.37040
10.74378


−3.92948
3.99092
10.74378
3.29355
−3.23007
10.74378


−3.70692
3.75769
10.74378
3.00333
−3.07118
10.74378


−3.47295
3.51620
10.74378
2.70365
−2.89948
10.74378


−3.22756
3.26617
10.74378
2.39570
−2.71488
10.74378


−2.97094
3.00760
10.74378
2.08034
−2.51701
10.74378


−2.70281
2.74086
10.74378
1.75773
−2.30531
10.74378


−2.42308
2.46578
10.74378
1.42881
−2.07913
10.74378


−2.13166
2.18261
10.74378
1.09423
−1.83745
10.74378


−1.82845
1.89137
10.74378
0.75501
−1.57888
10.74378


−1.52338
1.60218
10.74378
0.42266
−1.31205
10.74378


−1.21628
1.31493
10.74378
0.09615
−1.03799
10.74378


−0.90740
1.02973
10.74378
−0.22544
−0.75807
10.74378


−0.59668
0.74666
10.74378
−0.54257
−0.47259
10.74378


−0.28391
0.46591
10.74378
−0.85524
−0.18172
10.74378


0.03091
0.18757
10.74378
−1.16365
0.11434
10.74378


0.34832
−0.08789
10.74378
−1.46788
0.41551
10.74378


0.66851
−0.36020
10.74378
−1.76794
0.72178
10.74378


0.99149
−0.62934
10.74378
−2.06391
1.03316
10.74378


1.31586
−0.89673
10.74378
−2.35524
1.34909
10.74378


1.64079
−1.16356
10.74378
−2.64193
1.66910
10.74378


1.95504
−1.42129
10.74378
−2.91479
1.98233
10.74378


2.25900
−1.66956
10.74378
−3.17429
2.28814
10.74378


2.55283
−1.90790
10.74378
−3.42079
2.58634
10.74378


2.83674
−2.13639
10.74378
−3.65439
2.87646
10.74378


3.11025
−2.35533
10.74378
−3.87575
3.15805
10.74378


3.37346
−2.56480
10.74378
−4.08466
3.43119
10.74378


3.62618
−2.76490
10.74378
−4.28095
3.69579
10.74378


3.85746
−2.94681
10.74378
−4.46565
3.95111
10.74378


4.06749
−3.11053
10.74378
−4.63057
4.18545
10.74378


4.25608
−3.25624
10.74378
−4.77628
4.39827
10.74378


4.42286
−3.38413
10.74378
−4.90343
4.58908
10.74378


4.56783
−3.49457
10.74378
−5.01879
4.77034
10.74378


4.69080
−3.58757
10.74378
−5.11318
4.93100
10.74378


4.79605
−3.66683
10.74378
−5.17963
5.05796
10.74378


4.88459
−3.73328
10.74378
−5.22669
5.16256
10.74378


4.95745
−3.78795
10.74378
−5.25574
5.24349
10.74378


5.01582
−3.83157
10.74378
−5.27049
5.30623
10.74378


5.06056
−3.86526
10.74378
−5.27272
5.34187
10.74378


5.08525
−3.89895
10.74378
−5.26855
5.36442
10.74378


5.09230
−3.93329
10.74378
−5.26307
5.37444
10.74378


5.08849
−3.96113
10.74378
−5.25917
5.37871
10.74378


−5.02937
5.50595
12.27514
4.69303
−4.31863
12.27514


−5.02678
5.50725
12.27514
4.67929
−4.33460
12.27514


−5.02130
5.50855
12.27514
4.65563
−4.34963
12.27514


−5.01026
5.50707
12.27514
4.62120
−4.35576
12.27514


−4.98984
5.49788
12.27514
4.58129
−4.34286
12.27514


−4.96125
5.47811
12.27514
4.53126
−4.31613
12.27514


−4.91429
5.43690
12.27514
4.46639
−4.28105
12.27514


−4.85628
5.37750
12.27514
4.38555
−4.23687
12.27514


−4.78268
5.29444
12.27514
4.28754
−4.18258
12.27514


−4.69377
5.18789
12.27514
4.17135
−4.11714
12.27514


−4.57943
5.04840
12.27514
4.03594
−4.03974
12.27514


−4.44634
4.88840
12.27514
3.87677
−3.94684
12.27514


−4.30276
4.71911
12.27514
3.69430
−3.83788
12.27514


−4.13933
4.53033
12.27514
3.48882
−3.71212
12.27514


−3.95566
4.32225
12.27514
3.26079
−3.56892
12.27514


−3.75166
4.09524
12.27514
3.01085
−3.40733
12.27514


−3.53671
3.85950
12.27514
2.73975
−3.22608
12.27514


−3.31081
3.61495
12.27514
2.46058
−3.03247
12.27514


−3.07415
3.36158
12.27514
2.17407
−2.82597
12.27514


−2.82681
3.09911
12.27514
1.88070
−2.60629
12.27514


−2.56898
2.82755
12.27514
1.58093
−2.37297
12.27514


−2.30067
2.54671
12.27514
1.27549
−2.12516
12.27514


−2.02214
2.25649
12.27514
0.96513
−1.86195
12.27514


−1.73341
1.95681
12.27514
0.65088
−1.58232
12.27514


−1.44422
1.65759
12.27514
0.34330
−1.29553
12.27514


−1.15465
1.35874
12.27514
0.04149
−1.00253
12.27514


−0.86471
1.06017
12.27514
−0.25588
−0.70471
12.27514


−0.57431
0.76216
12.27514
−0.54897
−0.40233
12.27514


−0.28316
0.46489
12.27514
−0.83826
−0.09578
12.27514


0.00928
0.16882
12.27514
−1.12411
0.21439
12.27514


0.30358
−0.12529
12.27514
−1.40709
0.52772
12.27514


0.60048
−0.41700
12.27514
−1.68729
0.84401
12.27514


0.90007
−0.70591
12.27514
−1.96479
1.16319
12.27514


1.20152
−0.99297
12.27514
−2.23923
1.48515
12.27514


1.50371
−1.27911
12.27514
−2.51070
1.80952
12.27514


1.79634
−1.55531
12.27514
−2.77010
2.12563
12.27514


2.07941
−1.82130
12.27514
−3.01781
2.43301
12.27514


2.35310
−2.07718
12.27514
−3.25383
2.73177
12.27514


2.61724
−2.32285
12.27514
−3.47824
3.02171
12.27514


2.87163
−2.55868
12.27514
−3.69115
3.30264
12.27514


3.11591
−2.78486
12.27514
−3.89254
3.57467
12.27514


3.35026
−3.00148
12.27514
−4.08206
3.83788
12.27514


3.56455
−3.19888
12.27514
−4.26044
4.09171
12.27514


3.75890
−3.37698
12.27514
−4.41961
4.32448
12.27514


3.93319
−3.53588
12.27514
−4.56031
4.53572
12.27514


4.08726
−3.67583
12.27514
−4.68310
4.72496
12.27514


4.22100
−3.79676
12.27514
−4.79484
4.90454
12.27514


4.33441
−3.89895
12.27514
−4.88645
5.06344
12.27514


4.43140
−3.98610
12.27514
−4.95114
5.18864
12.27514


4.51298
−4.05932
12.27514
−4.99717
5.29165
12.27514


4.58017
−4.11946
12.27514
−5.02594
5.37119
12.27514


4.63391
−4.16754
12.27514
−5.04107
5.43282
12.27514


4.67530
−4.20457
12.27514
−5.04395
5.46790
12.27514


4.70073
−4.23733
12.27514
−5.04060
5.49018
12.27514


4.70751
−4.27186
12.27514
−5.03550
5.50020
12.27514


4.70250
−4.29970
12.27514
−5.03160
5.50428
12.27514


−4.81712
5.62475
13.80651
4.33720
−4.63688
13.80651


−4.81452
5.62586
13.80651
4.32225
−4.65136
13.80651


−4.80895
5.62679
13.80651
4.29720
−4.66324
13.80651


−4.79809
5.62438
13.80651
4.26267
−4.66324
13.80651


−4.77860
5.61380
13.80651
4.22592
−4.64347
13.80651


−4.75132
5.59254
13.80651
4.17905
−4.61266
13.80651


−4.70667
5.54957
13.80651
4.11817
−4.57247
13.80651


−4.65127
5.48813
13.80651
4.04234
−4.52189
13.80651


−4.58110
5.40303
13.80651
3.95055
−4.45998
13.80651


−4.49609
5.29435
13.80651
3.84159
−4.38564
13.80651


−4.38629
5.15253
13.80651
3.71481
−4.29794
13.80651


−4.25822
4.98993
13.80651
3.56576
−4.19297
13.80651


−4.11984
4.81795
13.80651
3.39499
−4.07037
13.80651


−3.96215
4.62630
13.80651
3.20287
−3.92948
13.80651


−3.78451
4.41525
13.80651
2.98978
−3.76976
13.80651


−3.58683
4.18508
13.80651
2.75636
−3.59026
13.80651


−3.37828
3.94610
13.80651
2.50374
−3.39016
13.80651


−3.15916
3.69801
13.80651
2.24396
−3.17763
13.80651


−2.92973
3.44056
13.80651
1.97750
−2.95210
13.80651


−2.69047
3.17345
13.80651
1.70473
−2.71321
13.80651


−2.44155
2.89641
13.80651
1.42603
−2.46086
13.80651


−2.18354
2.60907
13.80651
1.14193
−2.19421
13.80651


−1.91653
2.31125
13.80651
0.85330
−1.91263
13.80651


−1.64097
2.00256
13.80651
0.56113
−1.61499
13.80651


−1.36598
1.69341
13.80651
0.27537
−1.31103
13.80651


−1.09200
1.38333
13.80651
−0.00492
−1.00170
13.80651


−0.81886
1.07242
13.80651
−0.28084
−0.68809
13.80651


−0.54656
0.76086
13.80651
−0.55296
−0.37087
13.80651


−0.27444
0.44911
13.80651
−0.82174
−0.05021
13.80651


−0.00186
0.13782
13.80651
−1.08773
0.27305
13.80651


0.27212
−0.17226
13.80651
−1.35196
0.59816
13.80651


0.54823
−0.48038
13.80651
−1.61480
0.92448
13.80651


0.82703
−0.78629
13.80651
−1.87588
1.25210
13.80651


1.10750
−1.09061
13.80651
−2.13519
1.58111
13.80651


1.38890
−1.39401
13.80651
−2.39264
1.91161
13.80651


1.66139
−1.68691
13.80651
−2.63970
2.23245
13.80651


1.92460
−1.96952
13.80651
−2.87646
2.54364
13.80651


2.17862
−2.24192
13.80651
−3.10282
2.84518
13.80651


2.42355
−2.50392
13.80651
−3.31861
3.13726
13.80651


2.65910
−2.75581
13.80651
−3.52372
3.41977
13.80651


2.88509
−2.99776
13.80651
−3.71806
3.69282
13.80651


3.10162
−3.22970
13.80651
−3.90099
3.95686
13.80651


3.29940
−3.44130
13.80651
−4.07306
4.21135
13.80651


3.47870
−3.63249
13.80651
−4.22647
4.44476
13.80651


3.63936
−3.80326
13.80651
−4.36170
4.65674
13.80651


3.78127
−3.95389
13.80651
−4.47966
4.84654
13.80651


3.90442
−4.08429
13.80651
−4.58704
5.02631
13.80651


4.00865
−4.19455
13.80651
−4.67530
5.18502
13.80651


4.09775
−4.28875
13.80651
−4.73795
5.30985
13.80651


4.17274
−4.36782
13.80651
−4.78278
5.41222
13.80651


4.23436
−4.43298
13.80651
−4.81118
5.49110
13.80651


4.28374
−4.48504
13.80651
−4.82658
5.55199
13.80651


4.32170
−4.52504
13.80651
−4.83030
5.58670
13.80651


4.34694
−4.55762
13.80651
−4.82779
5.60888
13.80651


4.35353
−4.59159
13.80651
−4.82306
5.61900
13.80651


4.34768
−4.61869
13.80651
−4.81944
5.62308
13.80651


−4.71076
5.68684
14.57219
4.17079
−4.80552
14.57219


−4.70816
5.68795
14.57219
4.15529
−4.81934
14.57219


−4.70259
5.68860
14.57219
4.12949
−4.82955
14.57219


−4.69182
5.68573
14.57219
4.09533
−4.82612
14.57219


−4.67280
5.67450
14.57219
4.06016
−4.80338
14.57219


−4.64616
5.65250
14.57219
4.01477
−4.77071
14.57219


−4.60254
5.60842
14.57219
3.95584
−4.72811
14.57219


−4.54843
5.54586
14.57219
3.88243
−4.67456
14.57219


−4.47985
5.45946
14.57219
3.79352
−4.60913
14.57219


−4.39669
5.34938
14.57219
3.68818
−4.53061
14.57219


−4.28912
5.20599
14.57219
3.56539
−4.43799
14.57219


−4.16355
5.04162
14.57219
3.42126
−4.32754
14.57219


−4.02777
4.86770
14.57219
3.25596
−4.19854
14.57219


−3.87278
4.67382
14.57219
3.07006
−4.05069
14.57219


−3.69801
4.46054
14.57219
2.86402
−3.88317
14.57219


−3.50348
4.22787
14.57219
2.63859
−3.69523
14.57219


−3.29819
3.98619
14.57219
2.39478
−3.48622
14.57219


−3.08250
3.73523
14.57219
2.14410
−3.26450
14.57219


−2.85697
3.47453
14.57219
1.88720
−3.02978
14.57219


−2.62207
3.20371
14.57219
1.62427
−2.78152
14.57219


−2.37807
2.92249
14.57219
1.35568
−2.51970
14.57219


−2.12553
2.63051
14.57219
1.08170
−2.24377
14.57219


−1.86474
2.32740
14.57219
0.80336
−1.95300
14.57219


−1.59587
2.01305
14.57219
0.52159
−1.64645
14.57219


−1.32802
1.69777
14.57219
0.24595
−1.33414
14.57219


−1.06138
1.38157
14.57219
−0.02441
−1.01692
14.57219


−0.79612
1.06416
14.57219
−0.29068
−0.69589
14.57219


−0.53199
0.74582
14.57219
−0.55343
−0.37152
14.57219


−0.26831
0.42711
14.57219
−0.81311
−0.04418
14.57219


−0.00455
0.10849
14.57219
−1.07028
0.28539
14.57219


0.26033
−0.20919
14.57219
−1.32598
0.61617
14.57219


0.52707
−0.52540
14.57219
−1.58065
0.94787
14.57219


0.79603
−0.83956
14.57219
−1.83402
1.28050
14.57219


1.06667
−1.15233
14.57219
−2.08581
1.61424
14.57219


1.33804
−1.46445
14.57219
−2.33612
1.94920
14.57219


1.60060
−1.76599
14.57219
−2.57678
2.27394
14.57219


1.85397
−2.05723
14.57219
−2.80769
2.58847
14.57219


2.09843
−2.33798
14.57219
−3.02885
2.89298
14.57219


2.33399
−2.60815
14.57219
−3.24000
3.18756
14.57219


2.56035
−2.86801
14.57219
−3.44093
3.47211
14.57219


2.77762
−3.11767
14.57219
−3.63156
3.74702
14.57219


2.98560
−3.35694
14.57219
−3.81115
4.01255
14.57219


3.17559
−3.57541
14.57219
−3.98006
4.26852
14.57219


3.34766
−3.77291
14.57219
−4.13042
4.50323
14.57219


3.50181
−3.94953
14.57219
−4.26295
4.71633
14.57219


3.63797
−4.10517
14.57219
−4.37831
4.90714
14.57219


3.75611
−4.23993
14.57219
−4.48347
5.08784
14.57219


3.85616
−4.35390
14.57219
−4.56996
5.24711
14.57219


3.94164
−4.45126
14.57219
−4.63140
5.37221
14.57219


4.01357
−4.53312
14.57219
−4.67558
5.47458
14.57219


4.07278
−4.60041
14.57219
−4.70370
5.55338
14.57219


4.12011
−4.65424
14.57219
−4.71930
5.61417
14.57219


4.15650
−4.69563
14.57219
−4.72329
5.64870
14.57219


4.18128
−4.72830
14.57219
−4.72115
5.67088
14.57219


4.18759
−4.76162
14.57219
−4.71679
5.68109
14.57219


4.18146
−4.78816
14.57219
−4.71308
5.68526
14.57219


−4.60263
5.75106
15.33787
4.01283
−4.97786
15.33787


−4.60003
5.75218
15.33787
3.99677
−4.99114
15.33787


−4.59447
5.75255
15.33787
3.97041
−4.99940
15.33787


−4.58379
5.74912
15.33787
3.93681
−4.99234
15.33787


−4.56523
5.73714
15.33787
3.90322
−4.96728
15.33787


−4.53924
5.71440
15.33787
3.85923
−4.93294
15.33787


−4.49674
5.66921
15.33787
3.80205
−4.88812
15.33787


−4.44393
5.60545
15.33787
3.73087
−4.83187
15.33787


−4.37701
5.51765
15.33787
3.64465
−4.76301
15.33787


−4.29580
5.40609
15.33787
3.54246
−4.68069
15.33787


−4.19056
5.26084
15.33787
3.42358
−4.58351
15.33787


−4.06758
5.09443
15.33787
3.28380
−4.46769
15.33787


−3.93449
4.91828
15.33787
3.12371
−4.33283
15.33787


−3.78256
4.72189
15.33787
2.94356
−4.17831
15.33787


−3.61114
4.50574
15.33787
2.74411
−4.00345
15.33787


−3.42033
4.26982
15.33787
2.52610
−3.80753
15.33787


−3.21893
4.02461
15.33787
2.29055
−3.58989
15.33787


−3.00742
3.76985
15.33787
2.04860
−3.35944
15.33787


−2.78662
3.50497
15.33787
1.80061
−3.11572
15.33787


−2.55673
3.22951
15.33787
1.54686
−2.85846
15.33787


−2.31839
2.94328
15.33787
1.28783
−2.58745
15.33787


−2.07189
2.64583
15.33787
1.02369
−2.30234
15.33787


−1.81759
2.33696
15.33787
0.75538
−2.00228
15.33787


−1.55568
2.01648
15.33787
0.48382
−1.68664
15.33787


−1.29507
1.69499
15.33787
0.21801
−1.36579
15.33787


−1.03595
1.37238
15.33787
−0.04279
−1.04059
15.33787


−0.77830
1.04847
15.33787
−0.29987
−0.71185
15.33787


−0.52187
0.72355
15.33787
−0.55370
−0.38043
15.33787


−0.26609
0.39806
15.33787
−0.80494
−0.04650
15.33787


−0.01067
0.07239
15.33787
−1.05404
0.28901
15.33787


0.24539
−0.25281
15.33787
−1.30175
0.62563
15.33787


0.50275
−0.57700
15.33787
−1.54863
0.96281
15.33787


0.76206
−0.89961
15.33787
−1.79439
1.30082
15.33787


1.02295
−1.22092
15.33787
−2.03885
1.63977
15.33787


1.28449
−1.54167
15.33787
−2.28211
1.97964
15.33787


1.53721
−1.85184
15.33787
−2.51608
2.30893
15.33787


1.78121
−2.15134
15.33787
−2.74086
2.62773
15.33787


2.01658
−2.44007
15.33787
−2.95646
2.93595
15.33787


2.24331
−2.71803
15.33787
−3.16241
3.23387
15.33787


2.46132
−2.98533
15.33787
−3.35870
3.52149
15.33787


2.67033
−3.24213
15.33787
−3.54516
3.79908
15.33787


2.87052
−3.48836
15.33787
−3.72094
4.06693
15.33787


3.05326
−3.71314
15.33787
−3.88623
4.32504
15.33787


3.21865
−3.91649
15.33787
−4.03334
4.56161
15.33787


3.36687
−4.09830
15.33787
−4.16299
4.77628
15.33787


3.49773
−4.25859
15.33787
−4.27576
4.96849
15.33787


3.61133
−4.39743
15.33787
−4.37868
5.15040
15.33787


3.70757
−4.51474
15.33787
−4.46342
5.31050
15.33787


3.78980
−4.61498
15.33787
−4.52375
5.43607
15.33787


3.85904
−4.69925
15.33787
−4.56709
5.53872
15.33787


3.91593
−4.76858
15.33787
−4.59484
5.61760
15.33787


3.96150
−4.82399
15.33787
−4.61043
5.67830
15.33787


3.99658
−4.86659
15.33787
−4.61461
5.71292
15.33787


4.02192
−4.89916
15.33787
−4.61284
5.73501
15.33787


4.03018
−4.93276
15.33787
−4.60857
5.74531
15.33787


4.02424
−4.96014
15.33787
−4.60495
5.74949
15.33787


−4.38592
5.90634
16.86924
3.72697
−5.30855
16.86924


−4.38323
5.90726
16.86924
3.70980
−5.32033
16.86924


−4.37766
5.90708
16.86924
3.68242
−5.32460
16.86924


−4.36736
5.90262
16.86924
3.65133
−5.31003
16.86924


−4.34973
5.88917
16.86924
3.61996
−5.28210
16.86924


−4.32513
5.86457
16.86924
3.57820
−5.24469
16.86924


−4.28494
5.81687
16.86924
3.52409
−5.19597
16.86924


−4.23501
5.75032
16.86924
3.45671
−5.13490
16.86924


−4.17172
5.65918
16.86924
3.37504
−5.06028
16.86924


−4.09450
5.54382
16.86924
3.27842
−4.97090
16.86924


−3.99408
5.39402
16.86924
3.16612
−4.86566
16.86924


−3.87658
5.22233
16.86924
3.03414
−4.74027
16.86924


−3.74925
5.04042
16.86924
2.88324
−4.59437
16.86924


−3.60381
4.83754
16.86924
2.71376
−4.42741
16.86924


−3.43982
4.61377
16.86924
2.52620
−4.23873
16.86924


−3.25726
4.36922
16.86924
2.32146
−4.02814
16.86924


−3.06477
4.11464
16.86924
2.10048
−3.79472
16.86924


−2.86300
3.84976
16.86924
1.87365
−3.54813
16.86924


−2.65260
3.57402
16.86924
1.64172
−3.28770
16.86924


−2.43413
3.28705
16.86924
1.40468
−3.01345
16.86924


−2.20776
2.98867
16.86924
1.16291
−2.72499
16.86924


−1.97379
2.67859
16.86924
0.91696
−2.42197
16.86924


−1.73258
2.35663
16.86924
0.66740
−2.10391
16.86924


−1.48422
2.02261
16.86924
0.41486
−1.77026
16.86924


−1.23744
1.68747
16.86924
0.16752
−1.43234
16.86924


−0.99223
1.35113
16.86924
−0.07555
−1.09089
16.86924


−0.74851
1.01376
16.86924
−0.31537
−0.74684
16.86924


−0.50609
0.67538
16.86924
−0.55278
−0.40103
16.86924


−0.26479
0.33625
16.86924
−0.78842
−0.05402
16.86924


−0.02459
−0.00371
16.86924
−1.02286
0.29384
16.86924


0.21495
−0.34414
16.86924
−1.25637
0.64225
16.86924


0.45486
−0.68429
16.86924
−1.48904
0.99130
16.86924


0.69626
−1.02342
16.86924
−1.72079
1.34092
16.86924


0.93896
−1.36162
16.86924
−1.95142
1.69128
16.86924


1.18231
−1.69926
16.86924
−2.18104
2.04238
16.86924


1.41758
−2.02576
16.86924
−2.40202
2.38234
16.86924


1.64478
−2.34085
16.86924
−2.61436
2.71126
16.86924


1.86400
−2.64462
16.86924
−2.81808
3.02904
16.86924


2.07542
−2.93697
16.86924
−3.01308
3.33587
16.86924


2.27849
−3.21809
16.86924
−3.19916
3.63184
16.86924


2.47320
−3.48826
16.86924
−3.37606
3.91695
16.86924


2.65966
−3.74730
16.86924
−3.54330
4.19167
16.86924


2.82996
−3.98368
16.86924
−3.70061
4.45590
16.86924


2.98421
−4.19752
16.86924
−3.84085
4.69795
16.86924


3.12241
−4.38861
16.86924
−3.96429
4.91717
16.86924


3.24445
−4.55725
16.86924
−4.07185
5.11337
16.86924


3.35026
−4.70333
16.86924
−4.17014
5.29862
16.86924


3.43982
−4.82696
16.86924
−4.25116
5.46131
16.86924


3.51639
−4.93248
16.86924
−4.30898
5.58865
16.86924


3.58080
−5.02121
16.86924
−4.35056
5.69250
16.86924


3.63379
−5.09416
16.86924
−4.37729
5.77204
16.86924


3.67620
−5.15253
16.86924
−4.39251
5.83311
16.86924


3.70887
−5.19745
16.86924
−4.39687
5.86773
16.86924


3.73338
−5.23105
16.86924
−4.39567
5.89000
16.86924


3.74442
−5.26381
16.86924
−4.39177
5.90049
16.86924


3.73894
−5.29119
16.86924
−4.38824
5.90476
16.86924


−4.28253
6.01075
17.63492
3.60196
−5.46744
17.63492


−4.27984
6.01158
17.63492
3.58414
−5.47848
17.63492


−4.27427
6.01112
17.63492
3.55648
−5.48034
17.63492


−4.26416
6.00611
17.63492
3.52697
−5.46196
17.63492


−4.24689
5.99181
17.63492
3.49643
−5.43282
17.63492


−4.22304
5.96629
17.63492
3.45587
−5.39393
17.63492


−4.18406
5.91719
17.63492
3.40316
−5.34326
17.63492


−4.13571
5.84879
17.63492
3.33745
−5.27968
17.63492


−4.07417
5.75561
17.63492
3.25791
−5.20209
17.63492


−3.99918
5.63784
17.63492
3.16380
−5.10928
17.63492


−3.90136
5.48507
17.63492
3.05447
−4.99986
17.63492


−3.78665
5.30994
17.63492
2.92611
−4.86974
17.63492


−3.66228
5.12450
17.63492
2.77938
−4.71827
17.63492


−3.52000
4.91745
17.63492
2.61483
−4.54491
17.63492


−3.35944
4.68913
17.63492
2.43264
−4.34945
17.63492


−3.18069
4.43947
17.63492
2.23366
−4.13153
17.63492


−2.99247
4.17942
17.63492
2.01890
−3.89050
17.63492


−2.79534
3.90851
17.63492
1.79856
−3.63592
17.63492


−2.58996
3.62646
17.63492
1.57341
−3.36733
17.63492


−2.37668
3.33281
17.63492
1.34361
−3.08454
17.63492


−2.15598
3.02737
17.63492
1.10954
−2.78736
17.63492


−1.92794
2.70996
17.63492
0.87158
−2.47543
17.63492


−1.69285
2.38058
17.63492
0.63037
−2.14809
17.63492


−1.45081
2.03885
17.63492
0.38637
−1.80525
17.63492


−1.21024
1.69620
17.63492
0.14729
−1.45851
17.63492


−0.97126
1.35233
17.63492
−0.08780
−1.10852
17.63492


−0.73376
1.00745
17.63492
−0.31982
−0.75659
17.63492


−0.49765
0.66155
17.63492
−0.54981
−0.40326
17.63492


−0.26302
0.31472
17.63492
−0.77849
−0.04900
17.63492


−0.02979
−0.03313
17.63492
−1.00625
0.30572
17.63492


0.20242
−0.38154
17.63492
−1.23344
0.66090
17.63492


0.43463
−0.73004
17.63492
−1.45981
1.01655
17.63492


0.66795
−1.07771
17.63492
−1.68534
1.37275
17.63492


0.90248
−1.42463
17.63492
−1.90984
1.72970
17.63492


1.13794
−1.77091
17.63492
−2.13315
2.08730
17.63492


1.36570
−2.10558
17.63492
−2.34809
2.43357
17.63492


1.58575
−2.42856
17.63492
−2.55460
2.76852
17.63492


1.79801
−2.73994
17.63492
−2.75274
3.09215
17.63492


2.00265
−3.03971
17.63492
−2.94245
3.40436
17.63492


2.19913
−3.32807
17.63492
−3.12361
3.70544
17.63492


2.38754
−3.60511
17.63492
−3.29605
3.99528
17.63492


2.56796
−3.87064
17.63492
−3.45921
4.27436
17.63492


2.73279
−4.11297
17.63492
−3.61281
4.54268
17.63492


2.88240
−4.33200
17.63492
−3.74971
4.78816
17.63492


3.01651
−4.52774
17.63492
−3.87027
5.01053
17.63492


3.13484
−4.70055
17.63492
−3.97515
5.20943
17.63492


3.23721
−4.85034
17.63492
−4.07102
5.39718
17.63492


3.32380
−4.97712
17.63492
−4.15009
5.56182
17.63492


3.39787
−5.08543
17.63492
−4.20652
5.69055
17.63492


3.46005
−5.17648
17.63492
−4.24726
5.79533
17.63492


3.51119
−5.25138
17.63492
−4.27344
5.87552
17.63492


3.55221
−5.31133
17.63492
−4.28847
5.93696
17.63492


3.58367
−5.35736
17.63492
−4.29293
5.97177
17.63492


3.60734
−5.39198
17.63492
−4.29200
5.99413
17.63492


3.61931
−5.42391
17.63492
−4.28838
6.00481
17.63492


3.61402
−5.45073
17.63492
−4.28494
6.00917
17.63492


−4.18759
6.13892
18.40060
3.47583
−5.62995
18.40060


−4.18490
6.13975
18.40060
3.45727
−5.64016
18.40060


−4.17923
6.13892
18.40060
3.42924
−5.63895
18.40060


−4.16940
6.13326
18.40060
3.40186
−5.61705
18.40060


−4.15260
6.11813
18.40060
3.37234
−5.58651
18.40060


−4.12949
6.09158
18.40060
3.33309
−5.54577
18.40060


−4.09171
6.04072
18.40060
3.28204
−5.49268
18.40060


−4.04475
5.97047
18.40060
3.21847
−5.42614
18.40060


−3.98517
5.87487
18.40060
3.14153
−5.34502
18.40060


−3.91231
5.75441
18.40060
3.05048
−5.24794
18.40060


−3.81700
5.59811
18.40060
2.94468
−5.13369
18.40060


−3.70507
5.41908
18.40060
2.82068
−4.99773
18.40060


−3.58358
5.22938
18.40060
2.67905
−4.83958
18.40060


−3.44436
5.01768
18.40060
2.52026
−4.65878
18.40060


−3.28724
4.78417
18.40060
2.34429
−4.45553
18.40060


−3.11238
4.52857
18.40060
2.15161
−4.22944
18.40060


−2.92816
4.26239
18.40060
1.94344
−3.97969
18.40060


−2.73548
3.98498
18.40060
1.72979
−3.71630
18.40060


−2.53473
3.69597
18.40060
1.51132
−3.43880
18.40060


−2.32638
3.39518
18.40060
1.28839
−3.14691
18.40060


−2.11069
3.08222
18.40060
1.06147
−2.84026
18.40060


−1.88794
2.75720
18.40060
0.83093
−2.51849
18.40060


−1.65824
2.41993
18.40060
0.59742
−2.18131
18.40060


−1.42176
2.07013
18.40060
0.36103
−1.82845
18.40060


−1.18676
1.71949
18.40060
0.12947
−1.47243
18.40060


−0.95334
1.36774
18.40060
−0.09838
−1.11400
18.40060


−0.72150
1.01497
18.40060
−0.32363
−0.75399
18.40060


−0.49124
0.66118
18.40060
−0.54711
−0.39286
18.40060


−0.26256
0.30627
18.40060
−0.76958
−0.03109
18.40060


−0.03545
−0.04956
18.40060
−0.99140
0.33105
18.40060


0.19035
−0.40632
18.40060
−1.21275
0.69348
18.40060


0.41588
−0.76327
18.40060
−1.43354
1.05627
18.40060


0.64197
−1.11985
18.40060
−1.65350
1.41962
18.40060


0.86907
−1.47568
18.40060
−1.87235
1.78353
18.40060


1.09711
−1.83105
18.40060
−2.09008
2.14818
18.40060


1.31790
−2.17426
18.40060
−2.29946
2.50132
18.40060


1.53109
−2.50559
18.40060
−2.50067
2.84286
18.40060


1.73657
−2.82523
18.40060
−2.69381
3.17271
18.40060


1.93416
−3.13317
18.40060
−2.87878
3.49086
18.40060


2.12377
−3.42952
18.40060
−3.05540
3.79760
18.40060


2.30540
−3.71426
18.40060
−3.22357
4.09283
18.40060


2.47923
−3.98730
18.40060
−3.38292
4.37673
18.40060


2.63794
−4.23659
18.40060
−3.53291
4.64969
18.40060


2.78217
−4.46175
18.40060
−3.66655
4.89935
18.40060


2.91145
−4.66305
18.40060
−3.78423
5.12534
18.40060


3.02542
−4.84069
18.40060
−3.88660
5.32739
18.40060


3.12380
−4.99494
18.40060
−3.98006
5.51811
18.40060


3.20696
−5.12553
18.40060
−4.05728
5.68508
18.40060


3.27786
−5.23718
18.40060
−4.11250
5.81547
18.40060


3.33745
−5.33110
18.40060
−4.15232
5.92146
18.40060


3.38645
−5.40832
18.40060
−4.17803
6.00249
18.40060


3.42562
−5.47013
18.40060
−4.19288
6.06439
18.40060


3.45578
−5.51765
18.40060
−4.19752
6.09947
18.40060


3.47843
−5.55319
18.40060
−4.19678
6.12212
18.40060


3.49263
−5.58512
18.40060
−4.19343
6.13288
18.40060


3.48826
−5.61287
18.40060
−4.19000
6.13734
18.40060


−4.10118
6.29530
19.16629
3.32575
−5.80267
19.16629


−4.09840
6.29604
19.16629
3.30645
−5.81204
19.16629


−4.09283
6.29484
19.16629
3.27851
−5.80731
19.16629


−4.08318
6.28871
19.16629
3.25318
−5.78225
19.16629


−4.06693
6.27266
19.16629
3.22459
−5.75023
19.16629


−4.04466
6.24500
19.16629
3.18654
−5.70754
19.16629


−4.00809
6.19238
19.16629
3.13726
−5.65185
19.16629


−3.96280
6.11998
19.16629
3.07582
−5.58206
19.16629


−3.90526
6.02188
19.16629
3.00157
−5.49695
19.16629


−3.83463
5.89835
19.16629
2.91386
−5.39514
19.16629


−3.74182
5.73835
19.16629
2.81214
−5.27513
19.16629


−3.63286
5.55496
19.16629
2.69325
−5.13230
19.16629


−3.51434
5.36061
19.16629
2.55747
−4.96636
19.16629


−3.37847
5.14353
19.16629
2.40526
−4.77684
19.16629


−3.22515
4.90399
19.16629
2.23654
−4.56393
19.16629


−3.05428
4.64180
19.16629
2.05175
−4.32745
19.16629


−2.87423
4.36866
19.16629
1.85230
−4.06638
19.16629


−2.68574
4.08410
19.16629
1.64784
−3.79157
19.16629


−2.48916
3.78776
19.16629
1.43865
−3.50256
19.16629


−2.28508
3.47935
19.16629
1.22528
−3.19925
19.16629


−2.07375
3.15870
19.16629
1.00801
−2.88119
19.16629


−1.85536
2.82569
19.16629
0.78731
−2.54819
19.16629


−1.63002
2.48016
19.16629
0.56336
−2.20015
19.16629


−1.39818
2.12192
19.16629
0.33625
−1.83699
19.16629


−1.16783
1.76265
19.16629
0.11286
−1.47122
19.16629


−0.93914
1.40245
19.16629
−0.10775
−1.10360
19.16629


−0.71222
1.04114
19.16629
−0.32660
−0.73487
19.16629


−0.48697
0.67872
19.16629
−0.54442
−0.36558
19.16629


−0.26349
0.31528
19.16629
−0.76151
0.00408
19.16629


−0.04186
−0.04937
19.16629
−0.97812
0.37412
19.16629


0.17810
−0.41495
19.16629
−1.19437
0.74434
19.16629


0.39713
−0.78118
19.16629
−1.41016
1.11483
19.16629


0.61589
−1.14760
19.16629
−1.62520
1.48580
19.16629


0.83483
−1.51382
19.16629
−1.83922
1.85731
19.16629


1.05414
−1.87987
19.16629
−2.05221
2.22948
19.16629


1.26611
−2.23375
19.16629
−2.25705
2.58977
19.16629


1.47039
−2.57557
19.16629
−2.45390
2.93818
19.16629


1.66677
−2.90570
19.16629
−2.64267
3.27471
19.16629


1.85509
−3.22394
19.16629
−2.82347
3.59936
19.16629


2.03569
−3.53031
19.16629
−2.99600
3.91222
19.16629


2.20860
−3.82461
19.16629
−3.16018
4.21339
19.16629


2.37389
−4.10694
19.16629
−3.31582
4.50296
19.16629


2.52490
−4.36467
19.16629
−3.46209
4.78120
19.16629


2.66216
−4.59744
19.16629
−3.59249
5.03559
19.16629


2.78541
−4.80552
19.16629
−3.70720
5.26585
19.16629


2.89409
−4.98909
19.16629
−3.80697
5.47161
19.16629


2.98802
−5.14836
19.16629
−3.89811
5.66568
19.16629


3.06718
−5.28330
19.16629
−3.97366
5.83543
19.16629


3.13475
−5.39866
19.16629
−4.02758
5.96778
19.16629


3.19155
−5.49565
19.16629
−4.06647
6.07534
19.16629


3.23833
−5.57538
19.16629
−4.09162
6.15729
19.16629


3.27573
−5.63923
19.16629
−4.10610
6.21994
19.16629


3.30450
−5.68832
19.16629
−4.11065
6.25539
19.16629


3.32612
−5.72508
19.16629
−4.11018
6.27823
19.16629


3.34162
−5.75700
19.16629
−4.10694
6.28918
19.16629


3.33847
−5.78531
19.16629
−4.10359
6.29372
19.16629


−4.00206
6.48863
19.93197
3.15786
−5.96731
19.93197


−3.99928
6.48918
19.93197
3.13800
−5.97585
19.93197


−3.99371
6.48760
19.93197
3.11062
−5.96778
19.93197


−3.98433
6.48083
19.93197
3.08667
−5.94077
19.93197


−3.96865
6.46385
19.93197
3.05855
−5.90773
19.93197


−3.94721
6.43498
19.93197
3.02115
−5.86355
19.93197


−3.91222
6.38050
19.93197
2.97289
−5.80592
19.93197


−3.86888
6.30579
19.93197
2.91284
−5.73352
19.93197


−3.81375
6.20463
19.93197
2.84045
−5.64517
19.93197


−3.74590
6.07766
19.93197
2.75534
−5.53927
19.93197


−3.65634
5.91339
19.93197
2.65706
−5.41416
19.93197


−3.55091
5.72498
19.93197
2.54262
−5.26511
19.93197


−3.43601
5.52535
19.93197
2.41213
−5.09193
19.93197


−3.30385
5.30251
19.93197
2.26623
−4.89415
19.93197


−3.15452
5.05647
19.93197
2.10493
−4.67187
19.93197


−2.98802
4.78714
19.93197
1.92896
−4.42472
19.93197


−2.81233
4.50658
19.93197
1.73972
−4.15186
19.93197


−2.62829
4.21422
19.93197
1.54631
−3.86452
19.93197


−2.43626
3.90990
19.93197
1.34890
−3.56251
19.93197


−2.23663
3.59332
19.93197
1.14797
−3.24566
19.93197


−2.02994
3.26431
19.93197
0.94351
−2.91396
19.93197


−1.81620
2.92268
19.93197
0.73561
−2.56731
19.93197


−1.59587
2.56815
19.93197
0.52401
−2.20582
19.93197


−1.36923
2.20071
19.93197
0.30841
−1.82984
19.93197


−1.14416
1.83226
19.93197
0.09513
−1.45238
19.93197


−0.92086
1.46269
19.93197
−0.11657
−1.07409
19.93197


−0.69942
1.09191
19.93197
−0.32762
−0.69543
19.93197


−0.48011
0.72002
19.93197
−0.53848
−0.31667
19.93197


−0.26284
0.34674
19.93197
−0.74926
0.06218
19.93197


−0.04789
−0.02784
19.93197
−0.95984
0.44103
19.93197


0.16483
−0.40372
19.93197
−1.17043
0.81998
19.93197


0.37579
−0.78053
19.93197
−1.38083
1.19901
19.93197


0.58535
−1.15808
19.93197
−1.59067
1.57842
19.93197


0.79399
−1.53628
19.93197
−1.79959
1.95820
19.93197


1.00179
−1.91486
19.93197
−2.00767
2.33853
19.93197


1.20189
−2.28127
19.93197
−2.20776
2.70671
19.93197


1.39428
−2.63543
19.93197
−2.40016
3.06264
19.93197


1.57898
−2.97744
19.93197
−2.58467
3.40641
19.93197


1.75606
−3.30719
19.93197
−2.76119
3.73811
19.93197


1.92599
−3.62442
19.93197
−2.92955
4.05775
19.93197


2.08878
−3.92911
19.93197
−3.08955
4.36541
19.93197


2.24470
−4.22128
19.93197
−3.24120
4.66110
19.93197


2.38735
−4.48783
19.93197
−3.38348
4.94538
19.93197


2.51710
−4.72858
19.93197
−3.51026
5.20516
19.93197


2.63413
−4.94352
19.93197
−3.62172
5.44015
19.93197


2.73790
−5.13286
19.93197
−3.71834
5.65018
19.93197


2.82801
−5.29695
19.93197
−3.80651
5.84814
19.93197


2.90421
−5.43579
19.93197
−3.87955
6.02123
19.93197


2.96946
−5.55431
19.93197
−3.93162
6.15609
19.93197


3.02449
−5.65380
19.93197
−3.96911
6.26542
19.93197


3.06978
−5.73566
19.93197
−3.99315
6.34876
19.93197


3.10617
−5.80109
19.93197
−4.00698
6.41224
19.93197


3.13419
−5.85139
19.93197
−4.01134
6.44816
19.93197


3.15526
−5.88907
19.93197
−4.01088
6.47118
19.93197


3.17187
−5.92100
19.93197
−4.00781
6.48231
19.93197


3.17058
−5.94968
19.93197
−4.00447
6.48705
19.93197


−3.94043
6.60417
20.31481
3.07860
−6.03321
20.31481


−3.93756
6.60473
20.31481
3.05846
−6.04137
20.31481


−3.93199
6.60297
20.31481
3.03155
−6.03163
20.31481


−3.92280
6.59582
20.31481
3.00788
−6.00397
20.31481


−3.90749
6.57837
20.31481
2.97976
−5.97056
20.31481


−3.88651
6.54895
20.31481
2.94236
−5.92592
20.31481


−3.85236
6.49336
20.31481
2.89409
−5.86754
20.31481


−3.81031
6.41735
20.31481
2.83414
−5.79431
20.31481


−3.75667
6.31461
20.31481
2.76203
−5.70485
20.31481


−3.69050
6.18579
20.31481
2.67729
−5.59737
20.31481


−3.60298
6.01901
20.31481
2.57984
−5.47041
20.31481


−3.49968
5.82791
20.31481
2.46661
−5.31894
20.31481


−3.38682
5.62549
20.31481
2.33770
−5.14269
20.31481


−3.25689
5.39959
20.31481
2.19384
−4.94148
20.31481


−3.10969
5.15012
20.31481
2.03542
−4.71503
20.31481


−2.94560
4.87707
20.31481
1.86316
−4.46295
20.31481


−2.77233
4.59252
20.31481
1.67856
−4.18443
20.31481


−2.59088
4.29608
20.31481
1.49062
−3.89106
20.31481


−2.40155
3.98749
20.31481
1.29962
−3.58247
20.31481


−2.20461
3.66655
20.31481
1.10555
−3.25874
20.31481


−2.00071
3.33290
20.31481
0.90852
−2.91980
20.31481


−1.79003
2.98653
20.31481
0.70814
−2.56592
20.31481


−1.57276
2.62708
20.31481
0.50377
−2.19756
20.31481


−1.34927
2.25454
20.31481
0.29476
−1.81490
20.31481


−1.12736
1.88098
20.31481
0.08724
−1.43141
20.31481


−0.90731
1.50640
20.31481
−0.11963
−1.04764
20.31481


−0.68930
1.13061
20.31481
−0.32641
−0.66368
20.31481


−0.47333
0.75352
20.31481
−0.53329
−0.27982
20.31481


−0.25968
0.37514
20.31481
−0.74016
0.10395
20.31481


−0.04854
−0.00464
20.31481
−0.94731
0.48762
20.31481


0.16019
−0.38572
20.31481
−1.15456
0.87130
20.31481


0.36669
−0.76800
20.31481
−1.36162
1.25498
20.31481


0.57143
−1.15122
20.31481
−1.56830
1.63893
20.31481


0.77441
−1.53545
20.31481
−1.77425
2.02326
20.31481


0.97562
−1.92052
20.31481
−1.97927
2.40814
20.31481


1.16885
−2.29352
20.31481
−2.17649
2.78059
20.31481


1.35428
−2.65418
20.31481
−2.36610
3.14069
20.31481


1.53248
−3.00231
20.31481
−2.54791
3.48845
20.31481


1.70353
−3.33782
20.31481
−2.72193
3.82386
20.31481


1.86780
−3.66052
20.31481
−2.88788
4.14721
20.31481


2.02558
−3.97032
20.31481
−3.04547
4.45841
20.31481


2.17704
−4.26703
20.31481
−3.19480
4.75744
20.31481


2.31589
−4.53767
20.31481
−3.33494
5.04487
20.31481


2.44267
−4.78194
20.31481
−3.45968
5.30743
20.31481


2.55738
−4.99986
20.31481
−3.56919
5.54503
20.31481


2.65966
−5.19151
20.31481
−3.66386
5.75738
20.31481


2.74885
−5.35736
20.31481
−3.75008
5.95766
20.31481


2.82439
−5.49760
20.31481
−3.82145
6.13261
20.31481


2.88927
−5.61733
20.31481
−3.87222
6.26885
20.31481


2.94403
−5.71784
20.31481
−3.90869
6.37930
20.31481


2.98932
−5.80035
20.31481
−3.93199
6.46329
20.31481


3.02551
−5.86643
20.31481
−3.94545
6.52733
20.31481


3.05354
−5.91710
20.31481
−3.94962
6.56343
20.31481


3.07452
−5.95515
20.31481
−3.94907
6.58663
20.31481


3.09159
−5.98708
20.31481
−3.94610
6.59786
20.31481


3.09113
−6.01557
20.31481
−3.94285
6.60260
20.31481


−3.86897
6.73745
20.69765
3.00751
−6.08759
20.69765


−3.86600
6.73791
20.69765
2.98690
−6.09530
20.69765


−3.86052
6.73587
20.69765
2.96064
−6.08388
20.69765


−3.85152
6.72845
20.69765
2.93688
−6.05595
20.69765


−3.83649
6.71053
20.69765
2.90857
−6.02235
20.69765


−3.81616
6.68028
20.69765
2.87098
−5.97734
20.69765


−3.78303
6.62357
20.69765
2.82254
−5.91849
20.69765


−3.74228
6.54626
20.69765
2.76249
−5.84452
20.69765


−3.69040
6.44176
20.69765
2.69028
−5.75403
20.69765


−3.62609
6.31089
20.69765
2.60583
−5.64526
20.69765


−3.54079
6.14161
20.69765
2.50903
−5.51644
20.69765


−3.43991
5.94764
20.69765
2.39682
−5.36265
20.69765


−3.32947
5.74215
20.69765
2.26939
−5.18362
20.69765


−3.20185
5.51282
20.69765
2.12748
−4.97898
20.69765


−3.05735
5.25964
20.69765
1.97166
−4.74862
20.69765


−2.89586
4.98260
20.69765
1.80293
−4.49200
20.69765


−2.72527
4.69387
20.69765
1.62269
−4.20819
20.69765


−2.54671
4.39307
20.69765
1.43985
−3.90897
20.69765


−2.36025
4.07983
20.69765
1.25479
−3.59416
20.69765


−2.16646
3.75407
20.69765
1.06741
−3.26366
20.69765


−1.96562
3.41550
20.69765
0.87770
−2.91767
20.69765


−1.75810
3.06403
20.69765
0.68457
−2.55664
20.69765


−1.54417
2.69938
20.69765
0.48735
−2.18104
20.69765


−1.32421
2.32136
20.69765
0.28493
−1.79160
20.69765


−1.10583
1.94242
20.69765
0.08306
−1.40190
20.69765


−0.88931
1.56236
20.69765
−0.11898
−1.01228
20.69765


−0.67482
1.18119
20.69765
−0.32140
−0.62285
20.69765


−0.46257
0.79872
20.69765
−0.52428
−0.23370
20.69765


−0.25272
0.41505
20.69765
−0.72754
0.15536
20.69765


−0.04557
0.02988
20.69765
−0.93098
0.54424
20.69765


0.15908
−0.35658
20.69765
−1.13460
0.93302
20.69765


0.36131
−0.74443
20.69765
−1.33823
1.32180
20.69765


0.56113
−1.13349
20.69765
−1.54148
1.71077
20.69765


0.75844
−1.52385
20.69765
−1.74409
2.10010
20.69765


0.95325
−1.91551
20.69765
−1.94595
2.48991
20.69765


1.13961
−2.29501
20.69765
−2.14011
2.86709
20.69765


1.31837
−2.66198
20.69765
−2.32675
3.23183
20.69765


1.49016
−3.01623
20.69765
−2.50568
3.58395
20.69765


1.65517
−3.35749
20.69765
−2.67683
3.92364
20.69765


1.81388
−3.68558
20.69765
−2.83989
4.25098
20.69765


1.96664
−4.00048
20.69765
−2.99470
4.56616
20.69765


2.11365
−4.30184
20.69765
−3.14162
4.86891
20.69765


2.24888
−4.57655
20.69765
−3.27916
5.15986
20.69765


2.37287
−4.82426
20.69765
−3.40139
5.42567
20.69765


2.48554
−5.04506
20.69765
−3.50859
5.66614
20.69765


2.58661
−5.23903
20.69765
−3.60103
5.88118
20.69765


2.67506
−5.40665
20.69765
−3.68493
6.08397
20.69765


2.75033
−5.54827
20.69765
−3.75426
6.26115
20.69765


2.81521
−5.66902
20.69765
−3.80354
6.39888
20.69765


2.87006
−5.77028
20.69765
−3.83881
6.51044
20.69765


2.91544
−5.85353
20.69765
−3.86136
6.59536
20.69765


2.95191
−5.91998
20.69765
−3.87417
6.65986
20.69765


2.98004
−5.97102
20.69765
−3.87816
6.69624
20.69765


3.00129
−6.00935
20.69765
−3.87751
6.71963
20.69765


3.01883
−6.04128
20.69765
−3.87463
6.73086
20.69765


3.01985
−6.06977
20.69765
−3.87138
6.73578
20.69765


−3.79064
6.89049
21.08049
2.95609
−6.12945
21.08049


−3.78767
6.89096
21.08049
2.93521
−6.13678
21.08049


−3.78219
6.88873
21.08049
2.90932
−6.12388
21.08049


−3.77338
6.88093
21.08049
2.88509
−6.09604
21.08049


−3.75881
6.86246
21.08049
2.85623
−6.06235
21.08049


−3.73904
6.83147
21.08049
2.81790
−6.01724
21.08049


−3.70692
6.77365
21.08049
2.76862
−5.95822
21.08049


−3.66748
6.69485
21.08049
2.70745
−5.88406
21.08049


−3.61727
6.58858
21.08049
2.63423
−5.79311
21.08049


−3.55481
6.45559
21.08049
2.54875
−5.68368
21.08049


−3.47174
6.28370
21.08049
2.45120
−5.55366
21.08049


−3.37318
6.08657
21.08049
2.33853
−5.39820
21.08049


−3.26515
5.87775
21.08049
2.21101
−5.21685
21.08049


−3.14013
5.64480
21.08049
2.06966
−5.00933
21.08049


−2.99832
5.38753
21.08049
1.91541
−4.77526
21.08049


−2.83961
5.10603
21.08049
1.74938
−4.51400
21.08049


−2.67181
4.81276
21.08049
1.57313
−4.22471
21.08049


−2.49622
4.50704
21.08049
1.39540
−3.91937
21.08049


−2.31301
4.18879
21.08049
1.21655
−3.59769
21.08049


−2.12238
3.85774
21.08049
1.03632
−3.25986
21.08049


−1.92488
3.51388
21.08049
0.85413
−2.90635
21.08049


−1.72070
3.15684
21.08049
0.66832
−2.53789
21.08049


−1.51020
2.78643
21.08049
0.47769
−2.15523
21.08049


−1.29386
2.40248
21.08049
0.28112
−1.75912
21.08049


−1.07919
2.01760
21.08049
0.08436
−1.36301
21.08049


−0.86638
1.63160
21.08049
−0.11314
−0.96727
21.08049


−0.65561
1.24458
21.08049
−0.31147
−0.57208
21.08049


−0.44716
0.85636
21.08049
−0.51055
−0.17717
21.08049


−0.24112
0.46693
21.08049
−0.71018
0.21755
21.08049


−0.03777
0.07610
21.08049
−0.91009
0.61199
21.08049


0.16288
−0.31620
21.08049
−1.11029
1.00643
21.08049


0.36066
−0.70981
21.08049
−1.31038
1.40078
21.08049


0.55575
−1.10490
21.08049
−1.51011
1.79532
21.08049


0.74786
−1.50157
21.08049
−1.70928
2.19022
21.08049


0.93682
−1.89982
21.08049
−1.90780
2.58541
21.08049


1.11678
−2.28600
21.08049
−2.09881
2.96788
21.08049


1.28867
−2.65975
21.08049
−2.28238
3.33763
21.08049


1.45340
−3.02069
21.08049
−2.45826
3.69467
21.08049


1.61174
−3.36826
21.08049
−2.62634
4.03909
21.08049


1.76441
−3.70238
21.08049
−2.78634
4.37107
21.08049


1.91207
−4.02257
21.08049
−2.93818
4.69071
21.08049


2.05518
−4.32866
21.08049
−3.08222
4.99763
21.08049


2.18790
−4.60718
21.08049
−3.21679
5.29268
21.08049


2.31041
−4.85805
21.08049
−3.33633
5.56210
21.08049


2.42262
−5.08116
21.08049
−3.44093
5.80601
21.08049


2.52415
−5.27681
21.08049
−3.53096
6.02402
21.08049


2.61362
−5.44553
21.08049
−3.61254
6.22959
21.08049


2.69010
−5.58790
21.08049
−3.67992
6.40899
21.08049


2.75618
−5.70921
21.08049
−3.72781
6.54849
21.08049


2.81224
−5.81083
21.08049
−3.76196
6.66134
21.08049


2.85883
−5.89427
21.08049
−3.78368
6.74710
21.08049


2.89623
−5.96091
21.08049
−3.79602
6.81235
21.08049


2.92509
−6.01214
21.08049
−3.79973
6.84901
21.08049


2.94681
−6.05047
21.08049
−3.79918
6.87249
21.08049


2.96500
−6.08240
21.08049
−3.79630
6.88390
21.08049


2.96844
−6.11107
21.08049
−3.79305
6.88882
21.08049


−3.70163
7.08280
21.50204
2.92166
−6.16444
21.50204


−3.69866
7.08317
21.50204
2.90041
−6.17131
21.50204


−3.69319
7.08066
21.50204
2.87516
−6.15664
21.50204


−3.68456
7.07249
21.50204
2.85047
−6.12852
21.50204


−3.67045
7.05337
21.50204
2.82115
−6.09455
21.50204


−3.65124
7.02163
21.50204
2.78226
−6.04908
21.50204


−3.62033
6.96242
21.50204
2.73214
−5.98959
21.50204


−3.58237
6.88195
21.50204
2.67005
−5.91469
21.50204


−3.53393
6.77365
21.50204
2.59571
−5.82290
21.50204


−3.47341
6.63814
21.50204
2.50903
−5.71236
21.50204


−3.39258
6.46301
21.50204
2.41018
−5.58094
21.50204


−3.29652
6.26226
21.50204
2.29603
−5.42372
21.50204


−3.19081
6.04963
21.50204
2.16711
−5.24024
21.50204


−3.06839
5.81232
21.50204
2.02446
−5.03012
21.50204


−2.92936
5.55022
21.50204
1.86947
−4.79280
21.50204


−2.77344
5.26344
21.50204
1.70371
−4.52746
21.50204


−2.60861
4.96469
21.50204
1.52914
−4.23316
21.50204


−2.43598
4.65312
21.50204
1.35484
−3.92178
21.50204


−2.25603
4.32884
21.50204
1.18119
−3.59314
21.50204


−2.06883
3.99157
21.50204
1.00782
−3.24751
21.50204


−1.87476
3.64103
21.50204
0.83343
−2.88556
21.50204


−1.67429
3.27721
21.50204
0.65580
−2.50847
21.50204


−1.46760
2.89976
21.50204
0.47268
−2.11737
21.50204


−1.25526
2.50856
21.50204
0.28270
−1.71309
21.50204


−1.04458
2.11644
21.50204
0.09160
−1.30936
21.50204


−0.83585
1.72339
21.50204
−0.10079
−0.90629
21.50204


−0.62925
1.32913
21.50204
−0.29467
−0.50387
21.50204


−0.42507
0.93367
21.50204
−0.48957
−0.10191
21.50204


−0.22349
0.53700
21.50204
−0.68522
0.29959
21.50204


−0.02459
0.13884
21.50204
−0.88142
0.70090
21.50204


0.17133
−0.26070
21.50204
−1.07780
1.10203
21.50204


0.36409
−0.66183
21.50204
−1.27428
1.50315
21.50204


0.55370
−1.06453
21.50204
−1.47039
1.90446
21.50204


0.73979
−1.46900
21.50204
−1.66594
2.30605
21.50204


0.92216
−1.87504
21.50204
−1.86093
2.70792
21.50204


1.09497
−2.26911
21.50204
−2.04869
3.09679
21.50204


1.25980
−2.65056
21.50204
−2.22892
3.47267
21.50204


1.41795
−3.01865
21.50204
−2.40164
3.83574
21.50204


1.57072
−3.37290
21.50204
−2.56657
4.18592
21.50204


1.71903
−3.71296
21.50204
−2.72342
4.52347
21.50204


1.86381
−4.03826
21.50204
−2.87219
4.84830
21.50204


2.00544
−4.34880
21.50204
−3.01336
5.16033
21.50204


2.13806
−4.63085
21.50204
−3.14487
5.46029
21.50204


2.26122
−4.88440
21.50204
−3.26144
5.73427
21.50204


2.37482
−5.10965
21.50204
−3.36325
5.98216
21.50204


2.47812
−5.30688
21.50204
−3.45077
6.20379
21.50204


2.56944
−5.47681
21.50204
−3.52984
6.41271
21.50204


2.64759
−5.62020
21.50204
−3.59527
6.59489
21.50204


2.71516
−5.74225
21.50204
−3.64168
6.73634
21.50204


2.77251
−5.84452
21.50204
−3.67463
6.85086
21.50204


2.82012
−5.92842
21.50204
−3.69551
6.93773
21.50204


2.85827
−5.99553
21.50204
−3.70720
7.00372
21.50204


2.88778
−6.04704
21.50204
−3.71073
7.04075
21.50204


2.90996
−6.08564
21.50204
−3.71008
7.06451
21.50204


2.92853
−6.11776
21.50204
−3.70720
7.07611
21.50204


2.93363
−6.14616
21.50204
−3.70405
7.08112
21.50204


−3.64418
7.20401
21.73972
2.90532
−6.18282
21.73972


−3.64121
7.20428
21.73972
2.88379
−6.18922
21.73972


−3.63583
7.20168
21.73972
2.85892
−6.17344
21.73972


−3.62729
7.19333
21.73972
2.83423
−6.14514
21.73972


−3.61337
7.17384
21.73972
2.80472
−6.11089
21.73972


−3.59462
7.14154
21.73972
2.76574
−6.06495
21.73972


−3.56446
7.08159
21.73972
2.71543
−6.00499
21.73972


−3.52743
7.00001
21.73972
2.65325
−5.92945
21.73972


−3.48019
6.89031
21.73972
2.57863
−5.83691
21.73972


−3.42098
6.75323
21.73972
2.49186
−5.72536
21.73972


−3.34172
6.57605
21.73972
2.39292
−5.59273
21.73972


−3.24724
6.37308
21.73972
2.27876
−5.43412
21.73972


−3.14320
6.15804
21.73972
2.14967
−5.24896
21.73972


−3.02245
5.91803
21.73972
2.00692
−5.03698
21.73972


−2.88509
5.65296
21.73972
1.85212
−4.79763
21.73972


−2.73112
5.36284
21.73972
1.68664
−4.53006
21.73972


−2.56805
5.06065
21.73972
1.51280
−4.23297
21.73972


−2.39747
4.74556
21.73972
1.33962
−3.91862
21.73972


−2.21964
4.41748
21.73972
1.16783
−3.58655
21.73972


−2.03467
4.07631
21.73972
0.99697
−3.23703
21.73972


−1.84302
3.72168
21.73972
0.82592
−2.87071
21.73972


−1.64496
3.35360
21.73972
0.65190
−2.48898
21.73972


−1.44097
2.97178
21.73972
0.47250
−2.09314
21.73972


−1.23122
2.57603
21.73972
0.28595
−1.68413
21.73972


−1.02314
2.17946
21.73972
0.09791
−1.27577
21.73972


−0.81710
1.78186
21.73972
−0.09170
−0.86824
21.73972


−0.61329
1.38315
21.73972
−0.28279
−0.46136
21.73972


−0.41189
0.98323
21.73972
−0.47519
−0.05513
21.73972


−0.21309
0.58201
21.73972
−0.66842
0.35073
21.73972


−0.01698
0.17949
21.73972
−0.86230
0.75631
21.73972


0.17606
−0.22460
21.73972
−1.05655
1.16180
21.73972


0.36614
−0.63018
21.73972
−1.25071
1.56719
21.73972


0.55278
−1.03724
21.73972
−1.44468
1.97277
21.73972


0.73580
−1.44598
21.73972
−1.63810
2.37853
21.73972


0.91492
−1.85648
21.73972
−1.83096
2.78458
21.73972


1.08467
−2.25473
21.73972
−2.01658
3.17744
21.73972


1.24662
−2.64007
21.73972
−2.19496
3.55722
21.73972


1.40227
−3.01196
21.73972
−2.36573
3.92401
21.73972


1.55318
−3.36956
21.73972
−2.52889
4.27780
21.73972


1.70009
−3.71268
21.73972
−2.68397
4.61878
21.73972


1.84376
−4.04095
21.73972
−2.83089
4.94705
21.73972


1.98474
−4.35409
21.73972
−2.97020
5.26223
21.73972


2.11709
−4.63837
21.73972
−3.09967
5.56535
21.73972


2.24025
−4.89387
21.73972
−3.21438
5.84220
21.73972


2.35403
−5.12070
21.73972
−3.31443
6.09279
21.73972


2.45779
−5.31922
21.73972
−3.40009
6.31674
21.73972


2.54968
−5.49036
21.73972
−3.47741
6.52779
21.73972


2.62819
−5.63459
21.73972
−3.54135
6.71183
21.73972


2.69613
−5.75747
21.73972
−3.58664
6.85467
21.73972


2.75386
−5.86039
21.73972
−3.61875
6.97022
21.73972


2.80166
−5.94494
21.73972
−3.63889
7.05783
21.73972


2.84008
−6.01242
21.73972
−3.65012
7.12428
21.73972


2.86969
−6.06430
21.73972
−3.65337
7.16159
21.73972


2.89196
−6.10319
21.73972
−3.65263
7.18554
21.73972


2.91061
−6.13548
21.73972
−3.64975
7.19714
21.73972


2.91720
−6.16398
21.73972
−3.64660
7.20224
21.73972


−3.59741
7.30378
21.92349
2.89261
−6.19692
21.92349


−3.59444
7.30405
21.92349
2.87098
−6.20305
21.92349


−3.58906
7.30136
21.92349
2.84639
−6.18653
21.92349


−3.58061
7.29273
21.92349
2.82161
−6.15794
21.92349


−3.56687
7.27306
21.92349
2.79210
−6.12351
21.92349


−3.54840
7.24039
21.92349
2.75302
−6.07729
21.92349


−3.51871
7.17978
21.92349
2.70263
−6.01687
21.92349


−3.48232
7.09746
21.92349
2.64026
−5.94077
21.92349


−3.43592
6.98674
21.92349
2.56564
−5.84749
21.92349


−3.37763
6.84845
21.92349
2.47877
−5.73510
21.92349


−3.29940
6.66970
21.92349
2.37993
−5.60145
21.92349


−3.20612
6.46487
21.92349
2.26586
−5.44136
21.92349


−3.10329
6.24797
21.92349
2.13714
−5.25472
21.92349


−2.98366
6.00574
21.92349
1.99467
−5.04107
21.92349


−2.84769
5.73826
21.92349
1.84033
−4.79976
21.92349


−2.69520
5.44553
21.92349
1.67550
−4.52996
21.92349


−2.53381
5.14047
21.92349
1.50259
−4.23047
21.92349


−2.36498
4.82231
21.92349
1.33052
−3.91343
21.92349


−2.18902
4.49108
21.92349
1.16031
−3.57848
21.92349


−2.00609
4.14647
21.92349
0.99140
−3.22589
21.92349


−1.81657
3.78841
21.92349
0.82248
−2.85623
21.92349


−1.62083
3.41661
21.92349
0.65078
−2.47107
21.92349


−1.41916
3.03108
21.92349
0.47370
−2.07170
21.92349


−1.21173
2.63153
21.92349
0.28938
−1.65907
21.92349


−1.00597
2.23115
21.92349
0.10348
−1.24718
21.92349


−0.80216
1.82984
21.92349
−0.08409
−0.83613
21.92349


−0.60067
1.42742
21.92349
−0.27323
−0.42572
21.92349


−0.40159
1.02379
21.92349
−0.46359
−0.01596
21.92349


−0.20492
0.61895
21.92349
−0.65487
0.39342
21.92349


−0.01086
0.21272
21.92349
−0.84680
0.80253
21.92349


0.18024
−0.19490
21.92349
−1.03910
1.21145
21.92349


0.36818
−0.60391
21.92349
−1.23140
1.62046
21.92349


0.55287
−1.01441
21.92349
−1.42333
2.02948
21.92349


0.73385
−1.42649
21.92349
−1.61480
2.43886
21.92349


0.91102
−1.84024
21.92349
−1.80562
2.84843
21.92349


1.07882
−2.24173
21.92349
−1.98938
3.24473
21.92349


1.23892
−2.63024
21.92349
−2.16591
3.62776
21.92349


1.39299
−3.00500
21.92349
−2.33501
3.99770
21.92349


1.54241
−3.36548
21.92349
−2.49650
4.35446
21.92349


1.68812
−3.71119
21.92349
−2.64991
4.69832
21.92349


1.83077
−4.04197
21.92349
−2.79525
5.02937
21.92349


1.97091
−4.35743
21.92349
−2.93307
5.34716
21.92349


2.10261
−4.64366
21.92349
−3.06087
5.65287
21.92349


2.22549
−4.90102
21.92349
−3.17410
5.93195
21.92349


2.33909
−5.12942
21.92349
−3.27276
6.18449
21.92349


2.44304
−5.32915
21.92349
−3.35722
6.41020
21.92349


2.53511
−5.50131
21.92349
−3.43323
6.62301
21.92349


2.61390
−5.64637
21.92349
−3.49615
6.80845
21.92349


2.68212
−5.77000
21.92349
−3.54079
6.95230
21.92349


2.74003
−5.87348
21.92349
−3.57244
7.06860
21.92349


2.78801
−5.95840
21.92349
−3.59230
7.15676
21.92349


2.82653
−6.02634
21.92349
−3.60335
7.22359
21.92349


2.85632
−6.07850
21.92349
−3.60660
7.26118
21.92349


2.87869
−6.11757
21.92349
−3.60576
7.28521
21.92349


2.89734
−6.15015
21.92349
−3.60298
7.29691
21.92349


2.90430
−6.17836
21.92349
−3.59991
7.30201
21.92349


−3.50246
7.54601
22.34503
2.86356
−6.22969
22.34503


−3.49940
7.54620
22.34503
2.84166
−6.23516
22.34503


−3.49411
7.54304
22.34503
2.81771
−6.21734
22.34503


−3.48594
7.53394
22.34503
2.79284
−6.18839
22.34503


−3.47267
7.51362
22.34503
2.76323
−6.15340
22.34503


−3.45467
7.48011
22.34503
2.72407
−6.10653
22.34503


−3.42571
7.41821
22.34503
2.67358
−6.04518
22.34503


−3.38998
7.33431
22.34503
2.61112
−5.96796
22.34503


−3.34441
7.22155
22.34503
2.53640
−5.87330
22.34503


−3.28696
7.08085
22.34503
2.44963
−5.75895
22.34503


−3.21011
6.89875
22.34503
2.35106
−5.62289
22.34503


−3.11860
6.68993
22.34503
2.23765
−5.46020
22.34503


−3.01762
6.46867
22.34503
2.10985
−5.27049
22.34503


−2.90031
6.22152
22.34503
1.96878
−5.05332
22.34503


−2.76704
5.94838
22.34503
1.81611
−4.80756
22.34503


−2.61752
5.64925
22.34503
1.65360
−4.53219
22.34503


−2.45956
5.33750
22.34503
1.48329
−4.22592
22.34503


−2.29454
5.01220
22.34503
1.31428
−3.90108
22.34503


−2.12256
4.67335
22.34503
1.14787
−3.55750
22.34503


−1.94409
4.32086
22.34503
0.98360
−3.19628
22.34503


−1.75931
3.95445
22.34503
0.81998
−2.81808
22.34503


−1.56858
3.57411
22.34503
0.65348
−2.42448
22.34503


−1.37210
3.17958
22.34503
0.48122
−2.01676
22.34503


−1.17006
2.77094
22.34503
0.30126
−1.59568
22.34503


−0.96931
2.36164
22.34503
0.11945
−1.17544
22.34503


−0.77042
1.95142
22.34503
−0.06395
−0.75594
22.34503


−0.57375
1.54009
22.34503
−0.24892
−0.33709
22.34503


−0.37941
1.12773
22.34503
−0.43500
0.08121
22.34503


−0.18729
0.71408
22.34503
−0.62201
0.49913
22.34503


0.00223
0.29931
22.34503
−0.80958
0.91687
22.34503


0.18915
−0.11666
22.34503
−0.99743
1.33442
22.34503


0.37300
−0.53394
22.34503
−1.18518
1.75197
22.34503


0.55370
−0.95260
22.34503
−1.37257
2.16980
22.34503


0.73079
−1.37275
22.34503
−1.55939
2.58773
22.34503


0.90397
−1.79467
22.34503
−1.74557
3.00602
22.34503


1.06759
−2.20405
22.34503
−1.92497
3.41067
22.34503


1.22351
−2.60016
22.34503
−2.09723
3.80168
22.34503


1.37350
−2.98226
22.34503
−2.26243
4.17923
22.34503


1.51921
−3.34970
22.34503
−2.42039
4.54324
22.34503


1.66148
−3.70219
22.34503
−2.57037
4.89406
22.34503


1.80116
−4.03928
22.34503
−2.71247
5.23161
22.34503


1.93889
−4.36077
22.34503
−2.84741
5.55561
22.34503


2.06892
−4.65229
22.34503
−2.97252
5.86726
22.34503


2.19087
−4.91401
22.34503
−3.08343
6.15163
22.34503


2.30438
−5.14631
22.34503
−3.18013
6.40881
22.34503


2.40861
−5.34920
22.34503
−3.26292
6.63861
22.34503


2.50123
−5.52396
22.34503
−3.33763
6.85504
22.34503


2.58067
−5.67116
22.34503
−3.39972
7.04344
22.34503


2.64945
−5.79654
22.34503
−3.44418
7.18953
22.34503


2.70792
−5.90151
22.34503
−3.47583
7.30749
22.34503


2.75627
−5.98773
22.34503
−3.49597
7.39677
22.34503


2.79516
−6.05659
22.34503
−3.50729
7.46452
22.34503


2.82523
−6.10950
22.34503
−3.51082
7.50248
22.34503


2.84778
−6.14922
22.34503
−3.51035
7.52689
22.34503


2.86662
−6.18217
22.34503
−3.50785
7.53886
22.34503


2.87507
−6.21057
22.34503
−3.50488
7.54415
22.34503


−3.43481
7.74871
22.68843
2.83989
−6.25669
22.68843


−3.43174
7.74880
22.68843
2.81780
−6.26198
22.68843


−3.42664
7.74537
22.68843
2.79395
−6.24342
22.68843


−3.41875
7.73590
22.68843
2.76899
−6.21400
22.68843


−3.40585
7.71492
22.68843
2.73919
−6.17855
22.68843


−3.38831
7.68077
22.68843
2.69994
−6.13094
22.68843


−3.35981
7.61775
22.68843
2.64926
−6.06866
22.68843


−3.32455
7.53246
22.68843
2.58661
−5.99024
22.68843


−3.27926
7.41812
22.68843
2.51162
−5.89408
22.68843


−3.22227
7.27538
22.68843
2.42475
−5.77798
22.68843


−3.14654
7.09041
22.68843
2.32638
−5.63960
22.68843


−3.05614
6.87824
22.68843
2.21305
−5.47403
22.68843


−2.95637
6.65346
22.68843
2.08572
−5.28107
22.68843


−2.84073
6.40213
22.68843
1.94548
−5.06009
22.68843


−2.70959
6.12407
22.68843
1.79411
−4.81016
22.68843


−2.56248
5.81965
22.68843
1.63355
−4.53006
22.68843


−2.40684
5.50224
22.68843
1.46593
−4.21868
22.68843


−2.24424
5.17109
22.68843
1.30045
−3.88865
22.68843


−2.07477
4.82612
22.68843
1.13785
−3.53922
22.68843


−1.89899
4.46722
22.68843
0.97794
−3.17104
22.68843


−1.71717
4.09413
22.68843
0.81886
−2.78578
22.68843


−1.52969
3.70674
22.68843
0.65691
−2.38494
22.68843


−1.33665
3.30496
22.68843
0.48864
−1.96999
22.68843


−1.13794
2.88880
22.68843
0.31240
−1.54167
22.68843


−0.94072
2.47199
22.68843
0.13392
−1.11428
22.68843


−0.74517
2.05435
22.68843
−0.04622
−0.68754
22.68843


−0.55194
1.63559
22.68843
−0.22776
−0.26145
22.68843


−0.36094
1.21581
22.68843
−0.41031
0.16418
22.68843


−0.17244
0.79492
22.68843
−0.59389
0.58944
22.68843


0.01364
0.37291
22.68843
−0.77803
1.01441
22.68843


0.19704
−0.05012
22.68843
−0.96253
1.43920
22.68843


0.37764
−0.47444
22.68843
−1.14704
1.86400
22.68843


0.55510
−0.90016
22.68843
−1.33127
2.28897
22.68843


0.72902
−1.32728
22.68843
−1.51512
2.71404
22.68843


0.89896
−1.75606
22.68843
−1.69861
3.13939
22.68843


1.05905
−2.17213
22.68843
−1.87532
3.55072
22.68843


1.21145
−2.57474
22.68843
−2.04507
3.94823
22.68843


1.35809
−2.96305
22.68843
−2.20795
4.33191
22.68843


1.50074
−3.33643
22.68843
−2.36378
4.70185
22.68843


1.64042
−3.69449
22.68843
−2.51181
5.05833
22.68843


1.77787
−4.03686
22.68843
−2.65205
5.40126
22.68843


1.91402
−4.36318
22.68843
−2.78541
5.73046
22.68843


2.04312
−4.65888
22.68843
−2.90867
6.04685
22.68843


2.16461
−4.92450
22.68843
−3.01800
6.33558
22.68843


2.27802
−5.15996
22.68843
−3.11350
6.59656
22.68843


2.38262
−5.36553
22.68843
−3.19526
6.82961
22.68843


2.47561
−5.54243
22.68843
−3.26923
7.04911
22.68843


2.55543
−5.69157
22.68843
−3.33095
7.24011
22.68843


2.62457
−5.81854
22.68843
−3.37531
7.38795
22.68843


2.68332
−5.92480
22.68843
−3.40715
7.50731
22.68843


2.73196
−6.01214
22.68843
−3.42747
7.59771
22.68843


2.77103
−6.08193
22.68843
−3.43907
7.66620
22.68843


2.80119
−6.13548
22.68843
−3.44279
7.70462
22.68843


2.82393
−6.17567
22.68843
−3.44251
7.72931
22.68843


2.84286
−6.20917
22.68843
−3.44019
7.74147
22.68843


2.85140
−6.23767
22.68843
−3.43731
7.74685
22.68843


−3.36807
7.95307
23.03182
2.81623
−6.28407
23.03182


−3.36501
7.95289
23.03182
2.79395
−6.28936
23.03182


−3.36000
7.94918
23.03182
2.76991
−6.27080
23.03182


−3.35239
7.93934
23.03182
2.74476
−6.24082
23.03182


−3.33986
7.91781
23.03182
2.71488
−6.20472
23.03182


−3.32269
7.88291
23.03182
2.67543
−6.15637
23.03182


−3.29476
7.81878
23.03182
2.62457
−6.09307
23.03182


−3.25995
7.73228
23.03182
2.56165
−6.01344
23.03182


−3.21512
7.61617
23.03182
2.48657
−5.91562
23.03182


−3.15897
7.47121
23.03182
2.39951
−5.79747
23.03182


−3.08435
7.28336
23.03182
2.30104
−5.65677
23.03182


−2.99526
7.06776
23.03182
2.18809
−5.48823
23.03182


−2.89669
6.83935
23.03182
2.06122
−5.29184
23.03182


−2.78263
6.58385
23.03182
1.92182
−5.06687
23.03182


−2.65344
6.30096
23.03182
1.77193
−4.81220
23.03182


−2.50875
5.99107
23.03182
1.61332
−4.52690
23.03182


−2.35533
5.66800
23.03182
1.44830
−4.20949
23.03182


−2.19505
5.33101
23.03182
1.28588
−3.87305
23.03182


−2.02808
4.98000
23.03182
1.12690
−3.51694
23.03182


−1.85490
4.61479
23.03182
0.97107
−3.14208
23.03182


−1.67596
4.23501
23.03182
0.81636
−2.74996
23.03182


−1.49155
3.84066
23.03182
0.65877
−2.34206
23.03182


−1.30175
3.43165
23.03182
0.49449
−1.92005
23.03182


−1.10639
3.00806
23.03182
0.32196
−1.48459
23.03182


−0.91251
2.58392
23.03182
0.14701
−1.05005
23.03182


−0.72030
2.15885
23.03182
−0.02970
−0.61626
23.03182


−0.53041
1.73276
23.03182
−0.20771
−0.18302
23.03182


−0.34293
1.30565
23.03182
−0.38674
0.24984
23.03182


−0.15806
0.87733
23.03182
−0.56661
0.68234
23.03182


0.02441
0.44809
23.03182
−0.74721
1.11465
23.03182


0.20427
0.01773
23.03182
−0.92829
1.54668
23.03182


0.38145
−0.41375
23.03182
−1.10954
1.97862
23.03182


0.55556
−0.84652
23.03182
−1.29071
2.41055
23.03182


0.72624
−1.28069
23.03182
−1.47178
2.84268
23.03182


0.89274
−1.71643
23.03182
−1.65257
3.27480
23.03182


1.04950
−2.13927
23.03182
−1.82687
3.69272
23.03182


1.19855
−2.54828
23.03182
−1.99430
4.09663
23.03182


1.34222
−2.94273
23.03182
−2.15496
4.48644
23.03182


1.48245
−3.32195
23.03182
−2.30874
4.86213
23.03182


1.62009
−3.68549
23.03182
−2.45482
5.22409
23.03182


1.75587
−4.03306
23.03182
−2.59320
5.57241
23.03182


1.89082
−4.36402
23.03182
−2.72462
5.90661
23.03182


2.01936
−4.66407
23.03182
−2.84602
6.22792
23.03182


2.14057
−4.93350
23.03182
−2.95405
6.52102
23.03182


2.25408
−5.17230
23.03182
−3.04844
6.78571
23.03182


2.35877
−5.38066
23.03182
−3.12927
7.02210
23.03182


2.45204
−5.56006
23.03182
−3.20250
7.24466
23.03182


2.53204
−5.71125
23.03182
−3.26357
7.43826
23.03182


2.60128
−5.83998
23.03182
−3.30784
7.58805
23.03182


2.66012
−5.94782
23.03182
−3.33977
7.70880
23.03182


2.70894
−6.03636
23.03182
−3.36019
7.80031
23.03182


2.74801
−6.10718
23.03182
−3.37188
7.86955
23.03182


2.77827
−6.16156
23.03182
−3.37578
7.90843
23.03182


2.80091
−6.20231
23.03182
−3.37569
7.93340
23.03182


2.81994
−6.23628
23.03182
−3.37346
7.94565
23.03182


2.82811
−6.26514
23.03182
−3.37058
7.95122
23.03182


−3.30469
8.15568
23.36594
2.79321
−6.31117
23.36594


−3.30153
8.15531
23.36594
2.77066
−6.31683
23.36594


−3.29661
8.15132
23.36594
2.74606
−6.29855
23.36594


−3.28909
8.14120
23.36594
2.72082
−6.26811
23.36594


−3.27675
8.11920
23.36594
2.69084
−6.23145
23.36594


−3.25986
8.08375
23.36594
2.65121
−6.18217
23.36594


−3.23239
8.01851
23.36594
2.60007
−6.11785
23.36594


−3.19823
7.93061
23.36594
2.53705
−6.03683
23.36594


−3.15424
7.81265
23.36594
2.46169
−5.93733
23.36594


−3.09911
7.66546
23.36594
2.37454
−5.81724
23.36594


−3.02570
7.47464
23.36594
2.27598
−5.67403
23.36594


−2.93799
7.25561
23.36594
2.16312
−5.50252
23.36594


−2.84073
7.02358
23.36594
2.03681
−5.30261
23.36594


−2.72815
6.76381
23.36594
1.89852
−5.07346
23.36594


−2.60081
6.47628
23.36594
1.75021
−4.81396
23.36594


−2.45826
6.16119
23.36594
1.59392
−4.52319
23.36594


−2.30707
5.83264
23.36594
1.43178
−4.19993
23.36594


−2.14883
5.48999
23.36594
1.27270
−3.85737
23.36594


−1.98409
5.13304
23.36594
1.11734
−3.49495
23.36594


−1.81323
4.76162
23.36594
0.96504
−3.11359
23.36594


−1.63689
4.37543
23.36594
0.81404
−2.71488
23.36594


−1.45535
3.97440
23.36594
0.66006
−2.30030
23.36594


−1.26862
3.55843
23.36594
0.49932
−1.87133
23.36594


−1.07660
3.12760
23.36594
0.33031
−1.42872
23.36594


−0.88596
2.69622
23.36594
0.15871
−0.98713
23.36594


−0.69710
2.26401
23.36594
−0.01466
−0.54619
23.36594


−0.51073
1.83077
23.36594
−0.18915
−0.10571
23.36594


−0.32678
1.39642
23.36594
−0.36474
0.33430
23.36594


−0.14553
0.96086
23.36594
−0.54118
0.77404
23.36594


0.03323
0.52428
23.36594
−0.71835
1.21349
23.36594


0.20947
0.08659
23.36594
−0.89608
1.65276
23.36594


0.38312
−0.35212
23.36594
−1.07409
2.09184
23.36594


0.55380
−0.79195
23.36594
−1.25219
2.53093
23.36594


0.72095
−1.23307
23.36594
−1.43039
2.96992
23.36594


0.88420
−1.67568
23.36594
−1.60849
3.40900
23.36594


1.03789
−2.10502
23.36594
−1.78028
3.83361
23.36594


1.18435
−2.52026
23.36594
−1.94530
4.24392
23.36594


1.32588
−2.92055
23.36594
−2.10363
4.63985
23.36594


1.46445
−3.30524
23.36594
−2.25528
5.02139
23.36594


1.60088
−3.67379
23.36594
−2.39932
5.38901
23.36594


1.73583
−4.02610
23.36594
−2.53585
5.74271
23.36594


1.87031
−4.36179
23.36594
−2.66532
6.08212
23.36594


1.99857
−4.66612
23.36594
−2.78514
6.40816
23.36594


2.11969
−4.93926
23.36594
−2.89215
6.70534
23.36594


2.23301
−5.18140
23.36594
−2.98588
6.97374
23.36594


2.33761
−5.39282
23.36594
−3.06626
7.21338
23.36594


2.43069
−5.57491
23.36594
−3.13911
7.43881
23.36594


2.51051
−5.72842
23.36594
−3.19990
7.63492
23.36594


2.57965
−5.85919
23.36594
−3.24427
7.78657
23.36594


2.63840
−5.96870
23.36594
−3.27629
7.90880
23.36594


2.68704
−6.05864
23.36594
−3.29689
8.00134
23.36594


2.72611
−6.13047
23.36594
−3.30877
8.07141
23.36594


2.75627
−6.18569
23.36594
−3.31257
8.11067
23.36594


2.77892
−6.22718
23.36594
−3.31248
8.13591
23.36594


2.79785
−6.26161
23.36594
−3.31025
8.14835
23.36594


2.80592
−6.29140
23.36594
−3.30728
8.15392
23.36594









It is noted that the first column of TABLE I lists X coordinate values of the pressure side at each respective Z coordinate value of the third column, the second column lists Y coordinate values of the pressure side at each respective Z coordinate value of the third column, the fourth column lists X coordinate values of the suction side at each respective Z coordinate value of the sixth column, and the fifth column lists Y coordinate values of the suction side at each respective Z coordinate value of the sixth column. The Z coordinate values of the third column and the sixth column are equal to each other for each respective row. As set forth in TABLE I, at each respective Z coordinate value, the airfoil shape 110 of the airfoil 82 (e.g., a cross-sectional profile taken through line 6-6 of FIGS. 3, 4, and 5) is defined by multiple sets of Cartesian coordinate values of X, Y, and Z for both the suction side 62 (e.g., suction side profile 112) and the pressure side 64 (e.g., pressure side profile 114). For example, at each respective Z coordinate value, the suction side profile 112 of the suction side 62 may be defined by at least equal to or greater than 10, 15, 20, 25, 30, 35, 40, 45, 50, or 55 (e.g., 56) sets of Cartesian coordinate values of X, Y, and Z. Similarly, at each respective Z coordinate value, the pressure side profile 114 of the pressure side 64 may be defined by at least equal to or greater than 10, 15, 20, 25, 30, 35, 40, 45, 50, or 55 (e.g., 56) sets of Cartesian coordinate values of X, Y, and Z. Furthermore, in the Z direction along the Z axis 74, the airfoil profile of the airfoil 82 may be defined by multiple sets of Cartesian coordinate values of X, Y, and Z at multiple Cartesian coordinate values of Z, such as at least equal to or greater than 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, or more Cartesian coordinate values of Z.


As noted above, the Cartesian coordinate values of X, Y, and Z as set forth in TABLE I may be non-dimensional values convertible to dimensional distances. For example, the Cartesian coordinate values of X, Y, and Z may be multiplied by a scale factor F (e.g., F equal to 1, greater than 1, or less than 1) to obtain the desired dimensional distances. In certain embodiments, a nominal airfoil profile of the airfoil 82 may be partially or entirely (e.g., all or part of the suction side 62, all or part of the pressure side 64, or a combination thereof) defined by the Cartesian coordinate values of X, Y, and Z as set forth in TABLE I. The nominal airfoil profile of the airfoil 82 also may be covered by the coating 120, which increases the X and Y values as set forth in TABLE I.


For example, the airfoil 82 may include a first suction portion (e.g., 80) of the nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z of the suction side 62 as set forth in TABLE I, wherein the X and Y values of the suction side 62 are coordinate values that couple together (e.g., in a smooth continuous and/or curved manner) to define suction side sections of the first suction portion (e.g., 80) of the nominal airfoil profile at each Z coordinate value, and the suction side sections of the first suction portion (e.g., 80) of the nominal airfoil profile are coupled together (e.g., in a smooth continuous and/or curved manner) to define the first suction portion (e.g., 80). In such an embodiment, the airfoil 82 has an airfoil length L along the Z axis 74, and the first suction portion (e.g., 80) comprises a first portion length l along the Z axis as illustrated and described above with reference to FIG. 4. The first portion length l is less than or equal to the airfoil length L. The first portion length l may include greater than or equal to 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, or more Cartesian coordinate values of Z (e.g., consecutive values of Z) in TABLE I. The first portion length l may be equal to or greater than approximately 5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, 99, or 100 percent of the airfoil length L.


By further example, the airfoil 82 may include a second suction portion (e.g., 80) of the nominal airfoil profile substantially in accordance with the Cartesian coordinate values of X, Y, and Z of the suction side 62 as set forth in TABLE I, wherein the X and Y values of the suction side 62 are coordinate values that couple together (e.g., in a smooth continuous and/or curved manner) to define suction side sections of the second suction portion (e.g., 80) of the nominal airfoil profile at each Z coordinate value, the suction side sections of the second suction portion (e.g., 80) of the nominal airfoil profile are coupled together (e.g., in a smooth continuous and/or curved manner) to define the second suction portion (e.g., 80). In such an embodiment, the second suction portion (e.g., 80) has a second portion length l along the Z axis, the second portion length l is less than or equal to the airfoil length L, and the first and second suction portions (e.g., 80, 102, 104, 106) are offset from one another along the Z axis as illustrated and described above with reference to FIGS. 4 and 5. Again, the second portion length l may include greater than or equal to 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, or more Cartesian coordinate values of Z (e.g., consecutive values of Z) in TABLE I. The second portion length l may be equal to or greater than approximately 5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, 99, or 100 percent of the airfoil length L. Furthermore, the first and second suction portions (e.g., 80, 102, 104, 106) may be separated by an offset distance of equal to or greater than approximately 5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, or 90 percent of the airfoil length L.


By further example, the airfoil 82 may include a first pressure portion (e.g., 80) of the nominal airfoil profile substantially in accordance with the Cartesian coordinate values of X, Y, and Z of the pressure side 64 as set forth in TABLE I, wherein the X and Y values of the pressure side 64 are coordinate values that couple together (e.g., in a smooth continuous and/or curved manner) to define pressure side sections of the first pressure portion (e.g., 80) of the nominal airfoil profile at each Z coordinate value, the pressure side sections of the first pressure portion (e.g., 80) of the nominal airfoil profile are coupled together (e.g., in a smooth continuous and/or curved manner) to define the first pressure portion (e.g., 80). In such an embodiment, the first pressure portion (e.g., 80) comprises a second portion length l along the Z axis, and the second portion length l is less than or equal to the airfoil length L as illustrated and described above with reference to FIG. 4. Similar to the first suction portion (e.g., 80), the second portion length l of the first pressure portion (e.g., 80) may include greater than or equal to 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, or more Cartesian coordinate values of Z (e.g., consecutive values of Z) in TABLE I. The second portion length l of the first pressure portion (e.g., 80) may be equal to or greater than approximately 5, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, 99, or 100 percent of the airfoil length L. In certain embodiments, the first suction portion (e.g., 80) and the first pressure portion (e.g., 80) at least partially overlap with one another along the Z axis.


For example, in certain embodiments, the first and second portion lengths l may be substantially the same, and the first and second portion lengths l may start at a common distance d relative to the base 60 of the airfoil 82 and extend toward the tip 68 of the airfoil 82. However, in some embodiments, the first and second portion lengths l may be different from one another, the first and second portion lengths l may start at different distances d relative to the base 60 of the airfoil 82, or a combination thereof. Additionally, the airfoil 82 may include a second pressure portion (e.g., 80) of the nominal airfoil profile substantially in accordance with the Cartesian coordinate values of X, Y, and Z of the pressure side 64 as set forth in TABLE I, wherein the first and second pressure portions (e.g., 80, 102, 104, 106) are offset from one another along the Z axis 74.


Technical effects of the disclosed embodiments include an airfoil having a first suction portion of a nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z of a suction side as set forth in TABLE I, wherein the X and Y values of the suction side are coordinate values that couple together to define suction side sections of the first suction portion of the nominal airfoil profile at each Z coordinate value, the suction side sections of the first suction portion of the nominal airfoil profile are coupled together to define the first suction portion, the airfoil includes an airfoil length along a Z axis, the first suction portion comprises a first portion length along the Z axis, the first portion length is less than or equal to the airfoil length, and the Cartesian coordinate values of X, Y, and Z are non-dimensional values convertible to dimensional distances (e.g., instances in inches or mm).


This written description uses examples to disclose the subject matter, including the best mode, and also to enable any person skilled in the art to practice the subject matter, including making and using any devices or systems and performing any incorporated methods. The patentable scope of the subject matter is defined by the claims, and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements with insubstantial differences from the literal language of the claims.

Claims
  • 1. A system comprising: an airfoil comprising a first suction portion of a nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z of a suction side as set forth in TABLE I to a maximum of three decimal places, wherein the X and Y values of the suction side are coordinate values that couple together to define suction side sections of the first suction portion of the nominal airfoil profile at each Z coordinate value, the suction side sections of the first suction portion of the nominal airfoil profile are coupled together to define the first suction portion, the airfoil comprises an airfoil length along a Z axis, the first suction portion comprises a first portion length along the Z axis, the first portion length is less than or equal to the airfoil length, and the Cartesian coordinate values of X, Y, and Z are non-dimensional values convertible to dimensional distances.
  • 2. The system of claim 1, wherein the airfoil comprises a second suction portion of the nominal airfoil profile substantially in accordance with the Cartesian coordinate values of X, Y, and Z of the suction side as set forth in TABLE I to the maximum of three decimal places, wherein the X and Y values of the suction side are coordinate values that couple together to define suction side sections of the second suction portion of the nominal airfoil profile at each Z coordinate value, the suction side sections of the second suction portion of the nominal airfoil profile are coupled together to define the second suction portion, the second suction portion comprises a second portion length along the Z axis, the second portion length is less than or equal to the airfoil length, and the first and second suction portions are offset from one another along the Z axis.
  • 3. The system of claim 1, wherein the airfoil comprises a first pressure portion of the nominal airfoil profile substantially in accordance with the Cartesian coordinate values of X, Y, and Z of a pressure side as set forth in TABLE I to the maximum of three decimal places, wherein the X and Y values of the pressure side are coordinate values that couple together to define pressure side sections of the first pressure portion of the nominal airfoil profile at each Z coordinate value, the pressure side sections of the first pressure portion of the nominal airfoil profile are coupled together to define the first pressure portion, the first pressure portion comprises a second portion length along the Z axis, and the second portion length is less than or equal to the airfoil length.
  • 4. The system of claim 3, wherein the first suction portion and the first pressure portion at least partially overlap with one another along the Z axis.
  • 5. The system of claim 4, wherein the first and second portion lengths are substantially the same, and the first and second portion lengths start at a common distance relative to a base of the airfoil and extend toward a tip of the airfoil.
  • 6. The system of claim 1, wherein the first portion length of the first suction portion starts at a distance relative to a base of the airfoil and extends toward a tip of the airfoil.
  • 7. The system of claim 1, wherein the first portion length includes greater than or equal to two consecutive Cartesian coordinate values of Z in TABLE I.
  • 8. The system of claim 1, wherein the first portion length is equal to or greater than approximately 10 percent of the airfoil length.
  • 9. The system of claim 1, wherein the first portion length is equal to or greater than approximately 25 percent of the airfoil length.
  • 10. The system of claim 1, wherein the first portion length is equal to or greater than approximately 50 percent of the airfoil length.
  • 11. The system of claim 1, wherein the first portion length is equal to or greater than approximately 75 percent of the airfoil length.
  • 12. The system of claim 1, wherein the first portion length is equal to approximately 100 percent of the airfoil length.
  • 13. The system of claim 1, wherein the airfoil comprises the nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z as set forth in TABLE I to the maximum of three decimal places along an entirety of both the suction side and a pressure side of the airfoil.
  • 14. The system of claim 1, wherein the airfoil comprises a coating disposed over the first suction portion of the nominal airfoil profile substantially in accordance with the Cartesian coordinate values of X, Y, and Z of the suction side as set forth in TABLE I to the maximum of three decimal places.
  • 15. The system of claim 14, wherein the coating increases the X and Y values of the suction side in TABLE I to the maximum of three decimal places by no greater than approximately 3.5 mm along the first suction portion.
  • 16. The system of claim 1, comprising a plurality of compressor airfoils of a compressor stage, wherein each of the plurality of compressor airfoils comprises the airfoil having the first suction portion of the nominal airfoil profile substantially in accordance with the Cartesian coordinate values of X, Y, and Z of the suction side as set forth in TABLE I to the maximum of three decimal places.
  • 17. The system of claim 1, comprising a compressor having the airfoil.
  • 18. The system of claim 17, comprising a gas turbine engine having the compressor, a combustor, and a turbine.
  • 19. The system of claim 1, wherein the airfoil is a first stage compressor airfoil.
  • 20. The system of claim 19, wherein the airfoil is a compressor rotor blade.
  • 21. The system of claim 1, wherein the airfoil comprises the first suction portion of the nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z of the suction side as set forth in TABLE I to a maximum of four decimal places.
  • 22. The system of claim 1, wherein the airfoil comprises the first suction portion of the nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z of the suction side as set forth in TABLE I to a maximum of five decimal places.
  • 23. A system comprising: an airfoil comprising a suction side of a nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z of the suction side as set forth in TABLE I to a maximum of three decimal places, wherein the X and Y values of the suction side are coordinate values that couple together to define suction side sections of the suction side of the nominal airfoil profile at each Z coordinate value, the suction side sections of the suction side of the nominal airfoil profile are coupled together to define the suction side, and the Cartesian coordinate values of X, Y, and Z are non-dimensional values convertible to dimensional distances.
  • 24. A system comprising: an airfoil comprising a nominal airfoil profile substantially in accordance with Cartesian coordinate values of X, Y, and Z as set forth in TABLE I to a maximum of three decimal places, wherein the X and Y values are coordinate values that couple together to define airfoil sections of the nominal airfoil profile at each Z coordinate value, the airfoil sections of the nominal airfoil profile are coupled together to define an entirety of the airfoil, and the Cartesian coordinate values of X, Y, and Z are non-dimensional values convertible to dimensional distances.
US Referenced Citations (51)
Number Name Date Kind
5980209 Barry et al. Nov 1999 A
7186090 Tomberg et al. Mar 2007 B2
7329092 Keener et al. Feb 2008 B2
7396211 Tomberg et al. Jul 2008 B2
7467926 Stampfli et al. Dec 2008 B2
7494321 Latimer et al. Feb 2009 B2
7494322 Spracher et al. Feb 2009 B2
7494323 Douchkin et al. Feb 2009 B2
7497665 King et al. Mar 2009 B2
7510378 LaMaster et al. Mar 2009 B2
7513748 Shrum et al. Apr 2009 B2
7513749 Duong et al. Apr 2009 B2
7517188 McGowan et al. Apr 2009 B2
7517190 Latimer et al. Apr 2009 B2
7517196 Shrum et al. Apr 2009 B2
7517197 Duong et al. Apr 2009 B2
7520729 McGowan et al. Apr 2009 B2
7524170 Devangada et al. Apr 2009 B2
7530793 Huskins et al. May 2009 B2
7534092 Columbus et al. May 2009 B2
7534093 Spracher et al. May 2009 B2
7534094 Tomberg et al. May 2009 B2
7537434 Cheruku et al. May 2009 B2
7537435 Radhakrishnan et al. May 2009 B2
7540715 Latimer et al. Jun 2009 B2
7566202 Noshi et al. Jul 2009 B2
7568892 Devangada et al. Aug 2009 B2
7572104 Hudson et al. Aug 2009 B2
7572105 Columbus et al. Aug 2009 B2
7985053 Schott et al. Jul 2011 B2
7993100 Bonini et al. Aug 2011 B2
7997861 Hudson et al. Aug 2011 B2
8038390 Hudson et al. Oct 2011 B2
8038411 Shafique Oct 2011 B2
8172543 Delvemois et al. May 2012 B2
8186963 LaMaster et al. May 2012 B2
8192168 Bonini et al. Jun 2012 B2
8215917 LaMaster et al. Jul 2012 B2
8366397 Blohm et al. Feb 2013 B2
8491260 Dutka et al. Jul 2013 B2
8556588 Shrum et al. Oct 2013 B2
8573945 Wang et al. Nov 2013 B2
8602740 O'Hearn Dec 2013 B2
8882456 Lanese Nov 2014 B2
8926287 Dutka et al. Jan 2015 B2
8936441 McKeever et al. Jan 2015 B2
8961119 McKeever et al. Feb 2015 B2
9017019 McKeever et al. Apr 2015 B2
9145777 Dutka et al. Sep 2015 B2
9175693 Dutka et al. Nov 2015 B2
9297259 Miller Mar 2016 B2
Non-Patent Literature Citations (27)
Entry
U.S. Appl. No. 15/272,546, filed Sep. 22, 2016, Lakshmanan Valliappan.
U.S. Appl. No. 15/272,577, filed Sep. 22, 2016, Lakshmanan Valliappan.
U.S. Appl. No. 15/273,361, filed Sep. 22, 2016, Matthew John McKeever.
U.S. Appl. No. 15/273,045, filed Sep. 22, 2016, Marc Edward Blohm.
U.S. Appl. No. 15/273,179, filed Sep. 22, 2016, Marc Edward Blohm.
U.S. Appl. No. 15/272,676, filed Sep. 22, 2016, Marc Edward Blohm.
U.S. Appl. No. 15/272,716, filed Sep. 22, 2016, Marc Edward Blohm.
U.S. Appl. No. 15/274,352, filed Sep. 23, 2016, Michael James Dutka.
U.S. Appl. No. 15/277,219, filed Sep. 27, 2016, Francesco Soranna.
U.S. Appl. No. 15/277,576, filed Sep. 27, 2016, John David Stampfli.
U.S. Appl. No. 15/278,994, filed Sep. 28, 2016, Moorthi Subramaniyan.
U.S. Appl. No. 15/279,004, filed Sep. 28, 2016, Moorthi Subramaniyan.
U.S. Appl. No. 15/280,943, filed Sep. 29, 2016, Paul G. Delvernois.
U.S. Appl. No. 15/280,957, filed Sep. 29, 2016, Sunil Rajagopal.
U.S. Appl. No. 15/282,313, filed Sep. 30, 2016, Matthew John McKeever.
U.S. Appl. No. 15/285,258, filed Oct. 4, 2016, Moorthi Subramaniyan.
U.S. Appl. No. 15/286,545, filed Oct. 5, 2016, Prabakaran Modachur Krishnan.
U.S. Appl. No. 15/286,556, filed Oct. 5, 2016, Prabakaran Modachur Krishnan.
U.S. Appl. No. 15/296,757, filed Oct. 18, 2016, Michael James Dutka.
U.S. Appl. No. 15/296,823, filed Oct. 18, 2016, Michael James Dutka.
U.S. Appl. No. 15/272,220, filed Sep. 21, 2016, Paul G. Delvernois.
U.S. Appl. No. 15/272,244, filed Sep. 21, 2016, Paul G. Delvernois.
U.S. Appl. No. 15/272,278, filed Sep. 21, 2016, Paul G. Delvernois.
U.S. Appl. No. 15/271,864, filed Sep. 21, 2016, Marc Edward Blohm.
U.S. Appl. No. 15/272,018, filed Sep. 21, 2016, John David Stampfli.
U.S. Appl. No. 15/272,008, filed Sep. 21, 2016, John David Stampfli.
U.S. Appl. No. 15/272,301, filed Sep. 21, 2016, Michael Healy.
Related Publications (1)
Number Date Country
20180080328 A1 Mar 2018 US