The present invention describes an intake valve actuating system and a method for starting compressors. In preferred embodiments, the present invention may be used in reciprocating machines such as compressors. The present invention lies in the field of Mechanical Engineering, specifically the flow machines area.
Reciprocating machines are mechanical devices widely used today because they are versatile and have wide applicability in various sectors of industry.
An example of reciprocating movements is those promoted from a set of mechanisms, commonly known as connecting rod and crank, which transforms the rotation of a shaft into reciprocating motion (to-and-from) which is intended to reciprocating displace any device.
Reciprocating machines enjoy the reciprocating element in a pressurizer, such as a piston to pressurize fluids within a chamber. It is further provided a set of valves for the fluid to be pressurized is directed correctly when leaving the compression chamber. Due to the reciprocating movement of the pressurizer element and the performance of directional valves, is knowledge of the skilled in the art that reciprocating machines need a large initial torque to the starting of the both the inertia of the components and, especially, because the pressurizer element already starts the working cycle by compressing a portion of the fluid to be pressurized.
It is also the knowledge of ordinary skill in the art, the use of an actuating mechanism in the intake valve of reciprocating machines, which aims to promote the opening of said intake valve during the first instants after the starting of the reciprocating machine, in order to reduce the initial starting torque. After the reciprocating machine supplying the initial inertia and assuming a constant rotation, the valve is closed, and an effective pressurization of the fluid is started.
For construction and performance issues, current reciprocating machines are built from a pressurizer piston traveling as much as possible course, coming very close to the top of the pressurization chamber, part where commonly the intake valves are housed and discharge. This compact arrangement of the elements makes pressurizer piston to touch the intake valve, which in normal operation, should be closed so that would happen the pressurization of the desired fluid. When this occurs, there is a direct impact on the device which operated the intake valve so that it remained open during the starting. If said device to keep the intake valve open is a solenoid, it will be forced, while magnetized in the opposite direction to the field you are applying, which promotes greater energy consumption.
In the search for prior art in scientific and patent literature, the following documents related to the matter were found:
The PI0806059 discloses a pressure relief system for gas compressors, so as to reduce the initial starting torque and to avoid “bumps” of the compressor, while in high-load conditions. Among the disclosed embodiments can highlight the use of stems and mechanical devices for actuation of the intake valve in accordance with the rotation imposed to the compressor. It was also revealed magnetic media for this function. However, the document PI0806059, beyond revealing complex mechanisms and susceptible to vibration and balance of the compressor, does not reveal a safe and effective way to not damage the intake valve in case the piston will touch it.
The US20070272890 discloses a solenoid device used to work in reciprocating compressor intake valves in order to regulate the internal pressure of the pressurizing chamber during periods of time when you want to control said internal pressure in the chamber of said reciprocating compressor. This document discloses several means to be made available to the solenoids used, including a system for compensating the differential pressure. This document, however, does not reveal an effective way to solve the piston contact problem in the intake valve, without the solenoid which acts on said intake valve is damaged.
Thus, what is clear from the literature, no documents were found suggesting or anticipating the teachings of the present invention, so that the solution proposed here has novelty and inventive activity against the state of the art.
In view of the above, we see the imminent need for a mechanism of action of valves that is not damaged or increase the power consumption of reciprocating machines, at the beginning of the operation of said reciprocating machine.
Thus, the present invention solves the constant problems in the prior art, from a system and intake valve actuation (13) of reciprocating machines. More specifically, the present invention discloses a system capable of keeping the intake valve system (13) in a pre-set condition for the time of starting a compressor to the piston and, after stabilization of rotation, according to pre-defined values, the present invention stops acting on said intake valve (13).
It is, therefore, a first object of the present invention to provide an intake valve opening system (13), comprising:
a) controlled actuation means (1); and
b) actuating stem (5) associated to the controlled actuation means (1),
the system being defined by the fact that the controlled actuation means (1) projecting the actuating stem (5) into an opening direction (OD) sufficient to promote the opening of the intake valve (13), and in that the actuating stem (5), the controlled actuation means (1), or both comprise displacement absorbing means in a sense of relief (RD) opposite the projection imposed by the controlled actuation means and comprises return means of the actuating stem (5) in position enough to promote the reopening of the intake valve (13).
It is a second object of the present invention to provide a method for starting compressors, defined by the fact that the system is as disclosed by the present invention and said method comprises the actuating steps through controlled actuation means (1) for opening an intake valve (13) according to the displacement movement of a piston (12) in the compression direction.
It is a third and last object of the present invention to provide the use of intake valve opening system (13), defined by the fact that the system be as disclosed by the present invention and be employed in a compressor.
Further, the common inventive concept to all the claimed protection context refers to the fact of the present invention to provide an intake valve opening system (13) in pressurization chambers (21) for reciprocating machines, so request a lower torque for the start of this reciprocating machine. Specifically, the present invention acts on the intake valve (13) of a compressor so as to not allow during the first instants of starting the compressor, builds up pressure in the pressurizing chamber. This measure makes the initial torque required for starting said compressor lower, reducing energy consumption and eliminating the need for electrical and electronic components that were used in the prior art to enable the start with higher torques.
These and other objects of the invention will be immediately appreciated by those versed in the art and by companies with interests in the sector, and will be described in sufficient detail to reproduce in the description below.
In order to better define and clarify the content of this patent application, these figures are presented:
In a first object the present invention provides an intake valve opening system (13) comprising:
a) controlled actuation means (1); and
b) actuating stem (5) associated to the controlled actuation means (1),
the system being defined by the fact that the controlled actuation means (1) projects the actuating stem (5) into an opening direction (OD) sufficient to promote the opening of the intake valve (13), and in that the actuating stem (5), the controlled actuation means (1), or both comprise displacement absorbing means in a sense of relief (RD) opposite the projection imposed by the controlled actuation means and comprises return means of the actuating stem (5) in position enough to promote the reopening of the intake valve (13).
In one embodiment, the controlled environment of action is given by applying electric current.
In one embodiment, the displacement absorbing means is comprised of at least one of the group defined by: elastic mechanical element; electric current intensity controller; Spring-gas; fluid compression; a calibrated balance masses; or equivalent.
As springy mechanical element, we can exemplify in a non-limiting manner, the plate springs and compression. As for the embodiment that deals with the calibrated mass use for balance, is it exemplified not restrictively, that the construction of the actuating stem (5) and other peripherals associated with this, must be done accurately, so the actuating stem assembly (5) has total mass such that it is able to overcome the force imposed to open the intake valve (13) when the means of controlled operation (1) is triggered. When the piston (12) comes against the intake valve (13), the actuating stem (5) is pushed in the opposite direction to that which the means for controlled actuation (1) imposed by moving the metered mass and allowing the closure of said intake valve (13). The actuating stem (5) back to open the intake valve so that the piston returns.
In one embodiment, the intake valve actuation system is defined by the fact that:
a) actuation means is a solenoid fitted with a magnetizable movable plunger (4) housing the actuating stem (5), the solenoid being able to impose displacement of the moving piston (4) into an opening direction (OD);
b) means of displacement absorption is a spring (10) associated to the movable piston (4) and actuating stem (5) able to allow, through elastic deformation, the displacement of the actuating stem (5) in a relief direction (RD), otherwise the displacement of the movable piston (4) when magnetized.
In a second object, the present invention provides a method for starting compressors, defined by the fact that the system is as disclosed by the present invention and said method comprises the medium controlled actuation trigger steps (1) to open an intake valve (13) in accordance with the displacement movement of a piston (12) in the compression direction.
In one embodiment, the actuating of controlled actuation means (1) takes place during the compressor start.
In an embodiment of the present invention, the compressor starting method includes the steps of:
a) activating a controlled actuation means (1) for opening an intake valve (13);
b) initiating displacement movement of a piston (12) in the compression direction;
c) absorbing piston displacement movement (12) when in contact with the intake valve (13),
controlled actuation means (1) being held actuated during all steps (a) to (c).
In a preferred embodiment, the controlled actuation means is disabled when the compressor reaches the pre-defined operating conditions to maintain an operating system.
In a third and last object of the present invention, the system and method described are employed in a compressor.
In a preferred embodiment of the present invention, the hermetic type compressor is used to feed cooling cycles.
The examples shown herein are intended to illustrate only one of many ways of performing the invention, but without limiting the scope thereof.
Those skilled in the art will value the knowledge presented herein, and may play the invention shown in the embodiments, and other embodiments which fall within the scope of the appended claims.
Number | Date | Country | Kind |
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10 2015 025294 3 | Oct 2015 | BR | national |