Background
The present invention relates to an improved method and apparatus for use in cutting submarine casing and retrieving such casing and the other equipment on the ocean floor. One particular reason for this operation is the removal of equipment which might create a hazard if it were to remain in place on the ocean floor.
U.S. Pat. No. 3,983,936 discloses one method which cuts and recovers such submarine wellhead equipment. It involves the steps of lowering a string including a casing cutter, a spear and a swivel and landing the swivel on the upper end of the casing. The cutting is commenced and when complete the spear is expanded to firmly engage within the casing to allow it to be raised as the string is recovered.
Another patent disclosing, a modified form of such method, is U.S. Pat. No. 4,191,255. It differs from the U.S. Pat. No. 3,983,936 in that it maintains the spear above the upper end of the casing during cutting and then when cutting is complete, is lowered into the cut casing and set so that the submarine wellhead equipment may be raised with the string and thereby recovered from the ocean floor.
Summary
The prior methods for the recovering of submarine wellhead equipment and the upper end of the casing have been successful but ease of operation as possible can be improved and the engagement of the casing should be provided as early in the operation so that tension can be exerted on the casing during the cutting operation. This continuous tension ensures that there can be no slippage of the casing either during or after cutting and also the engagement of the casing is completed before cutting rather than requiring manipulations of the string after cutting.
An object of the present invention is to provide an improved method and apparatus for cutting and retrieving submarine casing in a single trip with greater economy of operation.
Another object is to provide an improved submarine casing cutting and retrieving method which has improved efficiency of operation.
A further object is to provide improved submarine casing cutting and retrieving apparatus which is simpler and has greater reliability.
Brief Description of the Drawings
These and other objects and advantages of the present invention are hereinafter set forth and explained with reference to the drawings wherein:
FIG. 1 is a sectional view of a submarine well with the improved apparatus being run into the submarine casing.
FIG. 2 is another view similar to FIG. 1 with the string landed on the upper end of the submarine casing.
FIG. 3 is another similar view showing the cutting step of the present invention.
FIG. 4 is another similar view showing the retrieving step of the present invention.
FIG. 5 is a view, partly in section, of the improved apparatus of the present invention.
FIG. 6 is a section view taken along line 6--6 in FIG. 5.
FIG. 7 is another sectional view of the improved apparatus of the present invention with the bumper sub in extended position.
Description of the Preferred Embodiment
The improved apparatus of the present invention is lowered on drill string D into the open end of the submarine wellhead W within the casing C as best seen in FIG. 1. Inner casing 10 has seat 12 on its upper end and is within one or more outer casing strings 14 which are surrounded by guide base 16. Drill string D is connected to the improved combined tool T of the present invention.
Tool T includes casing cutter 18 on its lower end and connected to bumper sub 20 with combined anchor swivel 22 thereabove and being connected to drill string D. Suitable latching means 24 is provided to retain the anchor portion of anchor swivel 22 in its unset position as the tool T is being run. This latching means 24 is also capable of unlatching by manipulation of the drill string D to allow the anchor to be set within inner casing 10 prior to the beginning of the cutting step.
Casing cutter 18 may by any suitable type such as that shown in the prior U.S. Pat. No. 3,983,936 which is actuated by pressure fluid delivered through drill string D to cause cutter arms 26 to be urger outwardly and cutting proceeds by rotation of drill string D while cutter arms are urges outward. This cutting step is illustrated in FIG. 3 which follows the landing of shoulder 28 on seat 12, the releasing of latch means 24 and the setting of anchor of anchor swivel 22 which is the position shown in FIG. 2. During cutting drill string D is held in tension so that the casing C is held under tension and when cutting is complete the tension allows the retrieval of the cut casing C and guide base 16 as shown in FIG. 4.
The details of tool T are shown in FIGS. 5, 6, and 7. Bumper sub 20 includes hollow mandrel 30 having pin end 32 on its lower end for threaded connection into casing cutter 18 and sleeve 34. The exterior of mandrel 30 is hex shaped mating with the interior of sleeve 34 as best seen in FIG. 6. This allows rotation of drill string D to be transmitted to casing cutter 18 and allows relative axial movement between mandrel 30 and sleeve 34. This allows the anchor portion of anchor swivel 22 to be unset if drill string D needs to be recovered independent of or prior to the completion of the cutting of casing C. Ring 36 is threaded onto the upper end of mandrel 30 and has a slightly larger exterior than the hex shaped portion. Ring 38 is threaded into the lower end of sleeve 34 and has a slightly smaller interior than the hex portion of sleeve 34. The engagement of rings 36 and 38 prevent disengagement of mandrel 30 and sleeve 34.
The upper end of sleeve 34 is upset to form upwardly facing shoulder 40 and is threaded to receive upper mandrel 42 which is threaded onto the lower end of drill string D. Cone ring 44 surrounds upper mandrel 42 and is provided with support on its lower end bearing ring 46 and on its interior by bearing rings 48 and 50 which are positioned at the upper and lower interior of cone ring 44. The exterior of cone ring 44 includes wedge surface 52 which tapers upwardly and inwardly. The upper end of cone ring 44 is immediately under downwardly facing shoulder 54 of upper mandrel 42. The upper end of mandrel 42 includes threaded box end 56 for receiving the pin end of drill string D. Pins 58 are secured to the exterior of upper mandrel 42 and coact with J slot 60 in collar 62. Collar 62 includes flange 64 to which anchoring elements are secured by cap screws 68. A cover or cap 65 secured to collar 62 extends upwardly thereover, and then inwardly adjacent upper mandrel 44 to form a cover over collar 62 for protecting the pin and J slot connection as shown in FIGS. 5 and 6. Anchoring elements 66 include upper ring 70 and flexible arms 72 on the exterior of which are mounted slips 74. The lower interior of arms 72 are tapered upwardly and inwardly on surface 76 to receive wedge surface 52 of cone ring 44. Upper ring 70 extends outwardly to mate with flange 64 and also provides downwardly facing shoulder 28 which engages seat 12 when tool T has been landed on wellhead W. Thus, latching means 24 is provided by the engagement of pins 58 in J slots in collar 62. The latched position shown in FIG. 5 prevents the raising of cone ring 44 with respect to anchoring elements 66. When unlatched, collar 62 and anchoring elements 66 are not moved by upward movement of drill string D thus allowing cone ring 44 to be raised within surfaces 76 to cause slips 74 to be wedged into tight gripping engagement with the interior of inner casing 10. This engagement is sufficient to allow the continuous exertion of a tension on drill string D during cutting and to support the cut casing C and guide base 16 on drill string D during retrieval.
The relative movement of bumper sub 20 allows drill string D to be lowered at any time to allow cone ring 44 to be removed from under anchoring elements 66 and thus unset the engagement of slips 74 with the interior of inner casing 10. At the same time, pins 58 can be rotated into the latched position of J slots 60 and tool T can be recovered separately from the cut casing or prior to the completion of the cutting of the casing.