Cradle for retention, transportation and rotation of blowout preventer
10352106 ยท 2019-07-16
Assignee
Inventors
Cpc classification
F16M1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E21B33/06
FIXED CONSTRUCTIONS
E21B23/001
FIXED CONSTRUCTIONS
E21B7/026
FIXED CONSTRUCTIONS
E21B15/003
FIXED CONSTRUCTIONS
E21B19/14
FIXED CONSTRUCTIONS
E21B41/00
FIXED CONSTRUCTIONS
International classification
F16M11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E21B15/00
FIXED CONSTRUCTIONS
E21B7/02
FIXED CONSTRUCTIONS
F16M1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A retention, transportation and positioning cradle for a blowout preventer. The cradle includes a frame surrounding a circumference of the blowout preventer, with the frame having an opening for receipt or removal of the blowout preventer. A lift connecter mechanism on the frame connects to a lift mechanism. A pivoting gate encloses the opening on the frame. A plurality of rollers on an upper support surface of the frame engages the blowout preventer permitting rotation of the blowout preventer with respect to the cradle.
Claims
1. A retention, transportation and positioning cradle for a blowout preventer, which cradle comprises: a frame surrounding a circumference of said blowout preventer, said frame having an opening for receipt or removal of a blowout preventer; a pivoting gate movable between an open position and a closed position and enclosing said opening on said frame when in said closed position; a plurality of rollers on an upper support surface of said frame to engage said blowout preventer, said plurality of rollers configured to permit rotation of the blowout preventer with respect to the cradle; and a lift connector mechanism on said frame to connect to a lift mechanism.
2. The retention, transportation and positioning cradle for a blowout preventer as set forth in claim 1 wherein each of said plurality of rollers has a shaft having an axis arranged radially with respect to said blowout preventer.
3. The retention, transportation and positioning cradle for a blowout preventer as set forth in claim 1 wherein each of said plurality of rollers are partially recessed in the frame and extend slightly from said upper support surface of said frame.
4. The retention, transportation and positioning cradle for a blowout preventer as set forth in claim 1 wherein said lift connector mechanism includes a pair of opposed projecting ears and wherein said lift mechanism includes cables attached to said ears.
5. The retention, transportation and positioning cradle for a blowout preventer as set forth in claim 1 including a plurality of adjustable brackets extending from said frame.
6. The retention, transportation and positioning cradle for a blowout preventer as set forth in claim 1 wherein said brackets extend radially outward from said frame.
7. The retention, transportation and positioning cradle for a blowout preventer as set forth in claim 5 wherein said plurality of adjustable brackets extending from said frame are capable of attachment to a storage, transport and lift skid assembly.
8. The retention, transportation and positioning cradle for a blowout preventer as set forth in claim 1 including a plurality of secondary retention eyes extending from said frame.
9. The retention, transportation and positioning cradle for a blowout preventer as set forth in claim 1 wherein said pivoting gate is pinned to said frame.
10. The retention, transportation and positioning cradle for a blowout preventer as set forth in claim 1 wherein insert adapters are affixed to the frame to accommodate various size blowout preventers, said insert adapters configured to engage said blowout preventer.
11. The retention, transportation and positioning cradle for a blowout preventer as set forth in claim 1 wherein at least one of said plurality of rollers is driven by a hydraulic motor.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(9) The embodiments discussed herein are merely illustrative of specific manners in which to make and use the invention and are not to be interpreted as limiting the scope.
(10) While the invention has been described with a certain degree of particularity, it is to be noted that many modifications may be made in the details of the invention's construction and the arrangement of its components without departing from the scope of this disclosure. It is understood that the invention is not limited to the embodiments set forth herein for purposes of exemplification.
(11) Referring to the drawings in detail,
(12) The blowout preventer 12 is ordinarily retained and transported in a horizontal storage and transport position which is perpendicular to the installation and removal position shown in
(13) The blowout preventer may be retained and transported on a storage, transport and lift skid assembly 14, such as shown in Applicant's application Ser. No. 14/718,284 (now U.S. Pat. No. 9,488,023) which is incorporated herein by reference. The assembly 14 includes a base frame 16 in the form of an elongated skid that may be receivable on a tractor trailer (not shown). Accordingly, the base frame 16 may be lifted or dragged on and off of the tractor trailer.
(14) A mounting frame 20 receives the blowout preventer 12 thereon. The mounting frame 20 is movable and rotatable about a pivot pin or pins 24 between an installation and removal position substantially perpendicular to the base frame 16, as shown in
(15) The mounting frame 20 pivots or rotates with respect to the base frame 16. An actuator mechanism in the form of a cylinder or a pair of hydraulic cylinders 22, each including an extending and retracting ram, are pivotally connected to the mounting frame 20 and pivotally connected to the base frame 16.
(16) As the rams of the hydraulic cylinders 22 extend, the mounting frame 20 is moved toward the vertical installation position. Conversely, as the rams of the cylinders retract, the mounting frame 20 is moved toward the horizontal storage and transportation position. It will be appreciated that pneumatic cylinders or another actuator mechanism may be employed within the spirit and scope of the invention.
(17) Once the hydraulic cylinders 22 have moved the mounting frame 20 with the blowout preventer thereon to a vertical installation position, a pair of connecting links 26 pivotally connected to the skid 16 are rotated in position and then pinned to the base frame 16 in order to lock the mounting frame 20 into a vertical position.
(18) It will be appreciated that various types of storage and transport assemblies may be used within the spirit and scope of the invention.
(19) As seen in
(20) The blowout preventer 12 is shown in
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(23) The cradle 10 includes a frame 60 which surrounds a circumference of the blowout preventer 12. In a preferred embodiment, the cradle 10 surrounds and encircles a cylindrical flange portion of the blowout preventer 12. The frame 60 has a central opening 50 for receipt of the blowout preventer 12. The central opening may be circular, hexagonal, octagonal, or take another shape. As best seen in
(24) As seen in
(25) As seen in
(26) The gate 64 is held in a closed position by pins 66 (not visible in
(27) Accordingly, the cradle 10 may be easily adapted to be used with a wide variety of blowout preventers.
(28) When the gate 64 is in the open position, the cradle 10 may be installed on or removed from the blowout preventer 12. Once the gate 64 is closed and pinned, the blowout preventer is retained in the cradle so the blowout preventer is locked in the cradle 10.
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(30) With reference to
(31) In addition, a plurality of optional, secondary retention eyes 70 extend from the frame 20. A safety cable or cables (not shown) may be attached to the secondary retention eyes 70 to prevent unwanted movement of the blowout preventer 12.
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(33) As seen in
(34) When the frame 60 of the cradle is attached to the storage, transport and lift skid assembly 14, the blowout preventer 12 may be manually rotated with respect to the cradle 10. Additionally, when the frame 60 is suspended from the lift mechanism, the blowout preventer may be rotated with respect to the cradle.
(35) In an alternate embodiment, as seen in
(36) Rotation of the blowout preventer will allow the blowout preventer 12 to be positioned when moving within the substructure of the rig. Additionally, rotation of the blowout preventer 12 allows the blowout preventer to be aligned with the wellhead and bolts on the wellhead (not shown) or passing through openings in the wellhead.
(37) Whereas, the invention has been described in relation to the drawings attached hereto, it should be understood that other and further modifications, apart from those shown or suggested herein, may be made within the scope of this invention.