1. Field of the Disclosure
This disclosure relates generally to a liner hanger system and methods of setting the same in wellbores.
2. Background of the Art
Wellbores (also referred to as wells or boreholes) are drilled in subsurface formations for the production of hydrocarbons (oil and gas), which are trapped in various zones in the subsurface formations at different depths. A first or uppermost section of the wellbore having a first diameter is drilled to a first depth and such a wellbore is lined with a casing (metal tubular) and cemented to stabilize the upper section of the earth subsurface. A second borehole of a diameter smaller than the first diameter is drilled to a second depth, lined with a casing and cemented. Additional wellbores of successive smaller diameters may also be drilled and lined in the same manner. Once a section is drilled, a liner (also refer referred to as tubular or pipe) is hung from the casing in the prior upper section. A commonly used liner includes a liner hanger on its outside that is set inside the casing to hang the liner in the wellbore. A packer placed above the liner hanger on the outside of the liner is then set to seal the annulus between the liner and the casing above the packer. A commonly used liner hanger is a hydraulically-set device that is in fluid communication with the inside of the service string via communication holes or fluid flow paths in the liner and the service string. A fluid under pressure is supplied to the inside of the service tool to hydraulically set such a liner hanger. The running tool is then disengaged from the inside of the liner and moved to mechanically set the packer. The holes in the liner often create leak paths between the liner and the casing or the formation, which degrade the liner hanger over time. It is therefore desirable to have liner hangers that avoid the use of such holes or fluid flow paths. It also is desirable to set liner hangers and other devices, such as packers, without supplying pressurized fluid from the surface or to manipulate the service string as such operations are time consuming and require using heavy equipment. It is also desirable to obtain information or confirmation that the liner hangers are fully set before releasing the running tools or setting the packers.
The disclosure herein provides apparatus and methods for remotely setting liner hangers without the use fluid flow paths or holes in the liners and other devices, including packers.
In one aspect, a method of hanging a liner in a wellbore is disclosed that in one non-limiting embodiment includes: conveying a liner having a liner hanger and a liner hanger actuator into the wellbore by a service string that includes a controller that determines a downhole parameter of interest relating to setting of the liner hanger; determining by the controller the parameter of interest relating to setting of the liner hanger in the wellbore; and sending a wireless liner hanger command signal from the controller in response to the determined parameter of interest to cause the liner hanger actuator to set the liner hanger in the wellbore.
In another aspect, an apparatus for use in a wellbore is disclosed that in one non-limiting embodiment includes: a liner having a liner hanger and a liner hanger actuator to set the liner hanger in the wellbore; and a service string for placement in the liner that includes: a controller that (i) determines a downhole parameter of interest relating to setting of the liner hanger in the wellbore; and (ii) transmits a wireless liner hanger command signal to cause the liner hanger actuator to set the liner hanger in the well bore.
Examples of the more important features of the apparatus and methods disclosed herein are summarized rather broadly in order that the detailed description thereof that follows may be better understood, and in order that the contributions to the art may be appreciated. There are, of course, additional features that will be described hereinafter and which will form the subject of the claims.
For a detailed understanding of the apparatus and methods disclosed herein, reference should be made to the accompanying drawings and the detailed description thereof, wherein like elements are generally given same numerals and wherein:
In a non-limiting embodiment, an actuator 140 (also referred to herein as the “liner hanger actuator”) is coupled to the liner hanger 120 to set the liner hanger. In a non-limiting embodiment, the actuator 140 includes an actuation device 142 that is activated or triggered by a control circuit 144. In a non-limiting embodiment, the control circuit 144 includes a transducer 146 (a receiver and/or transmitter) that receives and/or sends wireless signals, including, but not limited to, acoustic signals, electromagnetic signals, and vibration signals. The actuation device 142, includes, but is not limited to, a hydraulic device that applies force on the setting sleeve 126, a linear motion device, such as a magneto-strictive or magnetic device in which a member coupled to the setting sleeve 126 moves linearly to move the setting sleeve 126, an electric motor that moves a member linearly to move the setting sleeve 126, and any other device that generates a force to set a device. In operation, a transducer 146a in the actuator 140 receives command signals wirelessly from a known source and an actuation circuit 146b in the actuator activates the actuation device 142 to set the liner hanger 120. The control circuit 144 also determined the actuation of the device 140 from a sensor 147 and thus the setting of the liner hanger 120 and transmits a wireless signal relating to the setting of the liner hanger 120. The circuit 144 may utilize a pressure sensor to determine the activation of a hydraulically-activated liner hanger, linear movement of a member in the activation device 142 that provide an indication of the setting of the liner hanger 120 or any other suitable sensor. The packer 130 may also include a remotely-controlled actuator 135 similar to the actuator 140 for setting the packer 130.
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Thus, a liner hanger system or apparatus, according to one non-limiting embodiment, includes an electronic sub (or e-sub) in a service string that includes one or more sensors and a controller or circuit for determining a parameter or condition of interest relating to the setting of a liner hanger to set or hang a liner in a casing in the wellbore. The controller is carried by a service string or assembly placed inside the liner. The service string includes a running tool that is releasably engaged to the inside of the liner. A liner hanger on the liner includes a remotely-activated (electronically-activated) liner hanger actuator or setting device that sets or activates the liner hanger in response to a wireless signal received from the controller in the electronic sub. The sensors in the electronic sub may include, but are not limited to, vibration sensors, flow rate sensors, accelerometers, magnets, electromagnetic wave receivers for receiving signals from a surface location through the earth subsurface or through a tubular of the system, radio wave receivers for receiving a signals transmitted from a ball dropped inside the service string, and wiper plugs. The signal transmitted by the electronic sub may include, but is not limited to, an acoustic short hop signal, an electromagnetic signal, vibration signal, and Inductive signal. When the liner hanger has been set, the liner hanger actuator transmits a confirmation signal to the electronic-sub, which records such information and transmits a signal via a link (such as a conductor or optical fiber) in the service string or wirelessly to a running tool actuator to release the running tool. The running tool may then be pulled out of the liner hanger assembly and if the packer is mechanically set packer the running tool may be utilized to mechanically set the packer above the liner hanger. In one embodiment, the running tool includes lugs that set weight on the packer to set the packer inside the casing. In another embodiment, the packer includes a packer actuator that receives wireless command signals from the controller and sets the packer. In such a case, the packer may be set before releasing the running tool. In the liner hanger system, the electronic sub may record data relating to setting of the liner hanger, packer and the running tool for real time use or later analysis by a surface controller. The data may also include information relating to downhole pressure, torque, weight, and flow rates. Such a system avoids the use of holes in the liner to hydraulically set the liner hangers, as is commonly performed in the current systems, which holes are prone to leaks and thus degrade the liner hanger over time. In one embodiment, the devices to set the liner hanger, release the running tool and/or to set the packer may include an external spring or an atmospheric chamber independent of the liner hanger mandrel to provide a setting force relative to hydrostatic to linearly or axially move a member to set such devices.
The foregoing disclosure is directed to certain exemplary embodiments and methods. Various modifications will be apparent to those skilled in the art. It is intended that all such modifications within the scope of the appended claims be embraced by the foregoing disclosure. The words “comprising” and “comprises” as used in the claims are to be interpreted to mean “including but not limited to”. Also, the abstract is not to be used to limit the scope of the claims.