BLOWOUT PREVENTER INSTALLATION AND REMOVAL DEVICES AND RELATED METHODS
A blowout preventer (BOP) installation and removal device, includes: a carriage for supporting a BOP assembly, the BOP assembly having a BOP axis; the carriage being mounted on a linear actuator that has a translation axis that is parallel to the BOP axis; and a rotator mounted to the carriage and connectable to the BOP for rotating the BOP about the BOP axis. A combination of a BOP assembly mounted to the carriage of the BOP installation and removal device with the rotator connected to the BOP and the BOP axis parallel to the translation axis. A rotation of the BOP aligns the axis of the BOP with the axis of the well. A method of using the BOP installation and removal device including installing a BOP assembly on a well.
This document relates to blowout preventer installation and removal devices and related methods.
BACKGROUNDBlowout preventers (BOP) are installed on wellheads to prevent expulsion of pressurized well fluids and loss of well control. For vertical applications, BOPs are typically installed using cranes or drawworks.
SUMMARYA blowout preventer (BOP) installation and removal device, comprising: a carriage for supporting a BOP assembly, the BOP assembly having a BOP centerline axis; the carriage being mounted on a linear actuator that has a translation axis that is parallel to the BOP axis; and a rotator mounted to the carriage and connectable to the BOP for rotating the BOP about the BOP centerline axis.
A combination is disclosed comprising a BOP assembly mounted to the carriage of the BOP installation and removal device with the rotator connected to the BOP and the BOP axis parallel to the translation axis.
A method of using the BOP installation and removal device further comprising installing a BOP assembly on a well.
A blowout preventer (BOP) installation and removal device is disclosed, comprising: a BOP assembly mounted on a carriage, the BOP assembly having a BOP axis; the carriage being mounted on a linear actuator that has a translation axis that is parallel to the BOP axis; a rotator mounted to the carriage and connected to the BOP for rotating the BOP about the BOP centerline axis; and the linear actuator being mounted on a loader mounting part, such as a quick connector jib boom, with a pivot actuator connected to pivot the linear actuator, relative to the loader mounting part, about a pivot axis perpendicular to the translation axis.
In various embodiments, there may be included any one or more of the following features: The BOP installation and removal device is mounted on a loader arm of a loader. The linear actuator is mounted on a loader mounting part, such as a quick connector jib boom, with a pivot actuator connected to pivot the linear actuator, relative to the loader mounting part, about a pivot axis perpendicular to the translation axis. The loader mounting part or quick connector jib boom is mounted on a loader arm of a loader. The pivot axis is horizontal to a ground reference surface below the loader. The loader mounting part or quick connector jib boom is positioned above the linear actuator in use. The carriage further comprises one or more collars that are coaxial with the BOP centerline axis and form a seat for one or more annular flanges of the BOP assembly. The carriage is mounted to the linear actuator via one or more rails. One or more of the linear actuator and rotator each comprise a screw jack. A controller is connected to send control signals to one or more components of the BOP installation and removal device. Installing comprises: aligning the BOP axis with a well axis; and translating the BOP assembly along the BOP axis using the linear actuator to install the BOP assembly on the well. The well is a slanted well, for example, inclined at all angles up to and including vertically oriented wells.
These and other aspects of the device and method are set out in the claims, which are incorporated herein by reference.
Embodiments will now be described with reference to the figures, in which like reference characters denote like elements, by way of example, and in which:
Immaterial modifications may be made to the embodiments described here without departing from what is covered by the claims.
A blowout preventer (BOP) is a valve at the top of a well that may be closed if the drilling/service crew fears loss of well control. By closing this valve, which is usually operated remotely via hydraulic actuators, the drilling/service crew can maintain control of the reservoir, and procedures can be initiated until it is possible to re-open the BOP and retain pressure control of the formation. BOPs come in a variety of styles, sizes and pressure ratings. Some can effectively close over an open wellbore, while others are designed to seal around tubular components in the well, such as drill pipe, casing. or tubing. Others are fitted with hardened steel shearing “ram” devices that can actually cut through drill pipe. Common BOP types include ram BOPs and annular BOPs, or combinations thereof. Since BOPs are critically important to the safety of the crew, the rig, the wellbore, and the environment, BOPs may be inspected, tested, and refurbished at regular intervals determined by a combination of risk assessment, local practice, well type, and legal requirements. BOPs are installed during the drilling of the wells or during completion and servicing.
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A second stage involves translating the BOP assembly 18 along the BOP axis 20 using the linear actuator 14 to install the BOP assembly 18 on the well 94. In the slant well example shown, rough axial translation of BOP 18 along axis 20 may first be accomplished by lowering the loader arm 86 (
Once the well 94 and BOP centerline axes have been and axially aligned, linear actuator 14 may be used to advance the BOP 18 along axis 96 to position BOP 18 close to well 94 (
On completion of the drilling completion or servicing of the well the BOP may be removed and stored for transportation to the next job. The removal procedure may comprise the reverse of some or all steps of the installation procedure. The loader 87 is positioned with the BOP axis 20 aligned in the same vertical plane as the well axis 96. The carriage 12 is positioned, using pivot actuator 72, over the BOP 18 using the reverse of the installation. Members 56 and 58 are installed to secure the BOP 18. The nuts 102 are removed to allow separation of the BOP 18 from the well 94 along the axis 96 of the well. The BOP is moved off the flange bolts 98 along axis 26 by the linear actuator 14. When the BOP is released from the well 94, the loader 87 may transport the BOP to storage on the rig. The BOP installation and removal device may also have fixtures on the carriage to allow it to be used to assemble or dismantle the well head on well 94.
Screw jacks are one type of mechanical actuator that may be used to drive parts of device 10 relative to other parts of device 10. For example, screw jacks may be used for each rotator and linear actuator in device 10. Screw jacks provide a mechanical advantage with, in some cases, several stages of worm drives. The mechanical advantage provides a force advantage as well as an actuator position locking effect, when the actuator is stationary that improves the safety of use of device 10. Various other mechanical actuators may be used that may incorporate a gearbox or transmission between a driver and a power source. In other cases, a source of hydraulic power may be used to drive parts, such as hydraulic arms instead of arms 36 of device 10. Locking valves may be used with hydraulic arms to permit the locking of the arm in a particular position during operation. Hydraulic power from the loader itself or a separate power source may be used. One or both hydraulic and non-hydraulic power sources may be used for one or more or all components of device 10. For example, a mechanical actuator may be powered by a suitable power source, such as an electric motor. Power supply for and the control of actuators on this equipment may be Hydraulic, Hydro-Mechanical, Electro-Mechanical, Electro-Hydro-Mechanical or Manual-Mechanical and provided by remote sources, on-board mounted sources, or manually, whichever is more practical and convenient for a given application.
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Although use on a slanted well is shown, use on vertical and other wells is contemplated. A loader includes an excavator, a tracked or wheeled mover, a skid-steer, telehandler, BOBCAT™, tractor, or other mover with a powered arm for loading. One or more sensors (not shown) may be used for detecting the positioning or approach of BOP 18 at any stage of the process, and in some cases automatically adjusting the approach. Referring to
Components 56 and 58 represent one example of how the carriage 12 receives a BOP assembly 18. Other examples of a suitable carriage 12 include an encircling frame with arms laterally extended against various points about BOP 18. Straps, chains, or other fasteners may be used to secure the BOP to the carriage 12. Magnets may be used in some cases. BOP 18 may be secured to carriage 12 by threaded points in some cases. Thus, various mechanisms could be used to mount the BOP assembly on the carriage 12.
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In some embodiments, carriage 12 comprises rails 28 that connect to followers or rails on linear actuator 14 for translation.
In the claims, the word “comprising” is used in its inclusive sense and does not exclude other elements being present. The indefinite articles “a” and “an” before a claim feature do not exclude more than one of the features being present. Each one of the individual features described here may be used in one or more embodiments and is not, by virtue only of being described here, to be construed as essential to all embodiments as defined by the claims.
Claims
1. A blowout preventer (BOP) installation and removal device, comprising:
- a carriage for supporting a BOP assembly, the BOP assembly having a BOP axis;
- the carriage being mounted on a linear actuator that has a translation axis that is parallel to the BOP axis; and
- a rotator mounted to the carriage and connectable to the BOP for rotating the BOP about the BOP axis.
2. The BOP installation and removal device of claim 1 mounted on a loader arm of a loader.
3. The BOP installation and removal device of claim 1 in which the linear actuator is mounted on a loader mounting part, with a pivot actuator connected to pivot the linear actuator, relative to the loader mounting part, about a pivot axis perpendicular to the translation axis.
4. The BOP installation and removal device of claim 3 in which the loader mounting part comprises a quick connector jib boom.
5. The BOP installation and removal device of claim 4 in which the loader mounting part is mounted on a loader arm of a loader.
6. The BOP installation and removal device of claim 5 in which the pivot axis is horizontal to a ground surface below the loader.
7. The BOP installation and removal device of claim 5 in which the quick connector jib boom is positioned above the linear actuator in use.
8. The BOP installation and removal device of claim 1 in which the carriage further comprises one or more clamping collars that are coaxial with the BOP axis and form a seat for one or more annular flanges of the BOP assembly.
9. The BOP installation and removal device of claim 1 in which the carriage is mounted to the linear actuator via one or more track rails.
10. The BOP installation and removal device of claim 1 in which one or more of the linear actuator and rotator each comprise a screw jack.
11. The BOP installation and removal device of claim 1 further comprising a controller connected to send control signals to one or more components of the BOP installation and removal device.
12. A combination comprising a BOP assembly mounted to the carriage of the BOP installation and removal device of claim 1 with the rotator connected to the BOP and the BOP axis parallel to the translation axis.
13. A method of using the BOP installation and removal device of claim 1 further comprising installing and removal a BOP assembly on a well.
14. The method of claim 13 in which installing further comprises:
- aligning the BOP centerline axis with a well centerline axis; and
- translating the BOP assembly along the BOP axis using the linear actuator to install the BOP assembly on the well.
15. The method of claim 14 further comprising, before translating, rotating the BOP using the rotator to align studs on a wellhead with lower flange mounting holes on the BOP.
16. The method of claim 13 in which the well is a slanted well.
17. A blowout preventer (BOP) installation and removal device, comprising:
- a BOP assembly mounted on a carriage, the BOP assembly having a BOP axis;
- the carriage being mounted on a linear actuator that has a translation axis that is parallel to the BOP axis;
- a rotator mounted to the carriage and connected to the BOP for rotating the BOP about the BOP axis; and
- the linear actuator being mounted on a loader mounting part, with pivot actuator connected to pivot the linear actuator, relative to the loader mounting part, about a pivot axis perpendicular to the translation axis.
18. The BOP installation and removal device of claim 17 in which the loader mounting part comprises a quick connector jib boom.
19. The BOP installation and removal device of claim 18 in which the quick connector jib boom is secured to a loader arm.
Type: Application
Filed: Feb 7, 2014
Publication Date: Aug 13, 2015
Applicant: Allan R. Nelson Engineering (1997) Inc. (Edmonton)
Inventor: Gerald Edward Kent (Edmonton)
Application Number: 14/175,941