CA2196382C - Mechanical set anchor with slips pocket - Google Patents

Mechanical set anchor with slips pocket Download PDF

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Publication number
CA2196382C
CA2196382C CA002196382A CA2196382A CA2196382C CA 2196382 C CA2196382 C CA 2196382C CA 002196382 A CA002196382 A CA 002196382A CA 2196382 A CA2196382 A CA 2196382A CA 2196382 C CA2196382 C CA 2196382C
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Canada
Prior art keywords
slips
anchor
borehole
mechanical set
anchor body
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CA002196382A
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French (fr)
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CA2196382A1 (en
Inventor
Joseph V. Hebert
John E. Campbell
Thomas F. Bailey
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Smith International Inc
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Smith International Inc
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    • EFIXED CONSTRUCTIONS
    • E21EARTH DRILLING; MINING
    • E21BEARTH DRILLING, e.g. DEEP DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B23/00Apparatus for displacing, setting, locking, releasing, or removing tools, packers or the like in the boreholes or wells
    • E21B23/01Apparatus for displacing, setting, locking, releasing, or removing tools, packers or the like in the boreholes or wells for anchoring the tools or the like
    • EFIXED CONSTRUCTIONS
    • E21EARTH DRILLING; MINING
    • E21BEARTH DRILLING, e.g. DEEP DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B7/00Special methods or apparatus for drilling
    • E21B7/04Directional drilling
    • E21B7/06Deflecting the direction of boreholes
    • E21B7/061Deflecting the direction of boreholes the tool shaft advancing relative to a guide, e.g. a curved tube or a whipstock

Abstract

A mechanical set anchor wherein a plunger extending from a base end of an anchor body activates a pin type trigger which releases a spring utilized to set multiple slips extending from the body of the anchor. Continued downward compressive forces fully sets the slips into the borehole pipe casing. The slips are maintained in their fully set position by a locking nut. Means are additionally provided to further set the slips into the pipe casing after slips are released from the anchor body. The anchor is mechanically released by an upward pull under tension of sufficient strength to shear release pins that release the compressed spring fully retracting the slips within the anchor body so that the anchor may be tripped from the borehole without interference from the previously engaged slips.

Description

RGU 9~-HS63 MECHANICAL SET ANCHOR WITH SLIPS POCKET
BACKGROUND OF THE INVENTION
1. Field of the Invention This invention relates to oil and gas drilling equipment and more specifically relates to a mechanical setting tool apparatus commonly used with a whipstock assembly.
2. Back_round It is often desirable to sidetrack (deviate) existing well boreholes for various reasons in producing more economical well bores. It is well known in the industry that whipstocks are used l0 in drilling to direct or deviate a drill bit at an angle from a borehole.
The borehole can be cased (lined with pipe casing) or uncased (no pipe casing). More often than not the previously bored hole is cased.
For a cased borehole, a drilling operator will set a cement plug in the borehole that is at le;ast 100 feet deep followed by a packer or bridge plug. A packer may or may not be a complete seal above the cement plug depending upon the circumstances. A bridge plug is a wire line sealing device which is set three to five feet above the casing collar (or joint) near the required point that deviation of the borehole is needed. Of course, wire lines are used with packers as well for orienting whipstocks subsequently tripped into the borehole. The position of the packer or bridge plug and the whipstock is critical because the deviated borehole must not penetrate the casing at or near a casing collar (or joint). The whipstock is traditionally set several feet above the packer or bridge plug. Great care is exercised to coordinate wire line and pipe measurements to assure that the whipstock is clear of the casing collar.

Typically, the complete downhole assembly consists of a whipstock attached to some form of packer mechanism. Presently, there are two conventional whipstock types available. The first type combines a packer with attached whipstock positioned above the packer and the second is a single whipstock assembly with a plunger sticking out the bottom of the downhole tool. The s whipstock is the actual oil tool that causes a drill bit to deviate from the original borehole. The packer or setting tool on the first type is another oil tool that holds the whipstock in place once 'the whipstock has been set in the cased borehole at the desired angle orientation.
On the second type, the plunger releases spring loaded slips when the tool is set down on the packer or bridge plug that is strategically positioned in the cased borehole. The slips hold the 1o cool in place once they are forced against the casing by the released spring. The bottom trip device operates primarily in a cased borehole and it has problems because it only has a single slip or ~aredge to secure the whipstock in place which may not grip sufficiently to prevent movement of the whip under operating conditions.
A typical whipstock is a triangular shaped tool about 10 to 12 feet long. It is slightly less 15 in diameter than the inside diameter of the pipe casing at its bottom and ramps upwardly to infinity at its top. The back of the tool usually rests against the pipe;
casing. The tool face is cup ;shaped or concave in appearance and guides the sidetracking borehole drilling equipment off to the side of the pipe casing in the direction set by the orientation of the ramped tool face. The bottom or base of the whipstock is attached to the packer or setting tool.
2o A whipstock of the proper diameter is chosen for each cased borehole so that its bottom diameter matches the pipe casing and packer or setting tool. Its top end should match the inside diameter of the borehole casing so that the sidetracking drilling assembly smoothly transitions through a window previously cut into the pipe casing.

Mechanically set anchors typically utilized to support whipstocks have either a one slip holding mechanism or two fixed slips and one moving or activating slip. Often times the holding capabilities of these conventional devices is not enough to prevent slippage or movement during sidetrack drilling operations. Moreover, the foregoing anchors only have load carrying capability in compression since tensional loads will serve to release the slips from their grasp of the pipe casing. In other words, single slip mechanical set anchors do not provide any upward load capability and very little torque capacity.
In addition, these devices are somewhat disadvantaged in that, when they are released from the pipe casing, they will drag against the casing when they are tripped from the borehole 1o because the spring force used to activate the slips is not released.
SLTwIMARY OF THE INVENTION
It is an object of this invention to provide a mechanically set anchor with multiple slips for use, in cooperation with a whipstock, to sidetrack a cased borehole.
A mechanical set anchor means for use in combination with a whipstock for sidetrack drilling operations consisting of an anchor body forming whipstock attachment means at a first end and mechanical set actuation means extending from a base end of the anchor body. The anchor body further contains at least a pair of moveable slips for engagement with a wall of a borehole or a previously placed pipe casing secured within the borehole when the mechanical set means is actuated. The mechanical set means includes a moveable plunger extending from the to base end that telescopes axially into a moveable concentric mandrel contained within the anchor body after the end of the plunger contacts a borehole stop means such as a bridge plug or packer positioned below the mechanical set packer. The body of the plunger forms a means to release a spring biased slip actuation means positioned between the mandrel and the anchor body. The slip actuation means under spring compression is actuated when the plunger reaches a predetermined position thereby driving the pair of slips contained within the anchor body into the wall of the borehole or a pipe casing secured therein.
Once the slips are driven into engagement with the borehole a locking nut prevents the slips from becoming disengaged with the borehole or pipe casing.
A mechanical set release means is also provided to completely retract the slips into the 2o anchor body when tensional forces are applied to the anchor body. Shear pins are sheared when a predetermined tensional load is applied to the anchor body allowing the mandrel and locking nut means to move downward as the spring compression forces are released. As the locking nut means moves downward, the slips begin to retract, loosening their grip with the borehole. A
_.t_ shoulder formed on an upstream end of the mandrel holds the retracted slips within the anchor body when the mandrel moves toward the base of the anchor body to assure that the retracted slips remain within the confines of the anchor body when the mechanical set anchor and whipstock is tripped out of the borehole.
Upon reaching a setting depth in a cased borehole, a plunger extending from a base or bottom end of the anchor body activates a pin type trigger which rE;leases a spring utilized to set the multiple slips. Continued downward weight or force fully sets the slips into the borehole pipe casing. The slips are maintained in their fully set position by a locking nut.
The slips provide very large load bearing capability in the downward direction and 1o significant load carrying capacity in the upward direction, contrary to conventional mechanically set anchors as heretofore mentioned.
The anchor of the present invention is mechanically released by an upward pull of suf~tcient strength to shear release pins that release the compressed spring.
Upon release, the slips sully retract within the body of the mechanically set anchor when the slip actuation means engages t:he base of each slip as the mandrel moves down the anchor body. Hence the actuation plunger serves to both engage the slip actuation spring for driving the slips against the pipe casing at the start of the setting sequence when the plunger is telescoped into the anchor body and to release the slips upon an upward pull of the drill string when the spring retention shear pins are ruptured and the mandrel is moved downward in the anchor body when being retrieved. A
shoulder 2o extending from the slip actuation ring engages the base of the slips thereby retracting the slips within the anchor body. Thus, when the anchor is tripped from the cased borehole, the slips will TIOt protrude from the anchor body and drag against the pipe casing or borehole walls as the assembly is moving up the borehole.

.75674-24 According to a broad aspect of the present invention, there is provided a mechanical set anchor for use in cooperation with drilling equipment, comprising: a) an anchor body forming attachment means for said drilling equipment at a first end and a mechanical set means extending from a base end of the anchor body; b) a pair of moveable slips for engagement with a wall formed by a borehole when said mechanical set means is actuated; c) the mechanical set means including a moveable plunger extending from the base end and disposed to telescope axially into a moveable concentric mandrel contained within the anchor body following contact of the plunger with a borehole stop means positioned below the mechanical set anchor; d) the plunger forming means to release a biased slip actuation means positioned between the mandrel and the anchor body, the slip actuation means being under a restrained compressive load such that when said plunger moves into said mandrel a predetermined distance, said slip actuation means is released driving the slips into the wall of the borehole;
e) means to lock said pair of slips after the slips are in full engagement with the borehole wall; and f) release means to completely retract the slips into the anchor body to enable the removal of the mechanical set anchor from the borehole.
According to another broad aspect of the present invention, there is provided a mechanical set anchor for use in cooperation with a whipstock assembly for sidetracking operations, the anchor comprising: a) an anchor body forming attachment means for the whipstock assembly at a first end and a mechanical set means extending from a base end of the -5a-anchor body; b) a pair of moveable slips for engagement with a borehole wall when said mechanical set means is actuated;
c) the mechanical set means including a moveable plunger extending from the base end of the anchor body that telescopes axially into a moveable concentric mandrel contained within the anchor body after the plunger contacts a borehole stop means; d) the body of the plunger forming means to release a spring biased slip actuation means positioned between the mandrel and the anchor body, the slip actuation means being under a restrained spring compressive load such that when said plunger moves into said mandrel a predetermined distance the slip actuation means is released driving the slips contained within the anchor body into the borehole wall; and e) means to lock the pair of slips in engagement with the wall.
According to still another broad aspect of the present invention, there is provided a method to set and release a mechanical set anchor for use in cooperation with a whipstock assembly for sidetracking operations comprising the steps of: lowering a whipstock and an attached mechanical set anchor into a borehole; contacting an obstruction within the borehole with a portion of said set anchor; telescoping a plunger into the body of the set anchor; triggering a spring loaded slip actuation means to drive one or more slips housed within the body of the anchor into interior walls formed by the borehole; locking the slips in engagement with the borehole; releasing the slips from engagement with the borehole; and fully retracting the slips within the body of the mechanical set anchor to facilitate removal of the set anchor from the borehole.
-5b-RGU 9~-HS63 An advantage then of the present invention over the prior art is that the mechanically set anchor provides load capability under both compression and tension.
Another advantage of the present invention over the prior art is that the anchor provides excellent torque capability (resists torque) during milting and drilling operations.
Yet another advantage of the present invention aver the prior art is that the mechanically set anchor has a locking nut that maintains the set on the slips once they engage the pipe casing.
Still another advantage of the present invention over the prior art is that the anchor has multiple slips which centralize the anchor within the pipe casing .and provide superior holding power.
1o The above noted objects and advantages of the present invention will be more fully understood upon a study of the following description in conjunction with the detailed drawings.

1 9~ 38 2 RGU 9~-HS63 BRIEF DESCRTPTION OF THE DRAWINGS
Figure 1 A is a partially cutaway view of a mechanical set anchor and attached whipstock prior to anchoring the mechanical set anchor within a cased borehole.
Figure 1B is a continuation of Fig, lA illustrating the mechanical set anchor with the slips in a retracted position.
Figure 2 is a cross-section of the mechanical set anchor illustrating the plunger in the extended position.
Figure 3 is a cross-section of the anchor partially actuated, the plunger being telescoped into the anchor body after contacting the bridge plug or packer.
to Figure 4 is a cross-section of the anchor after the slips are set against the cased borehole.
Figure 5 is a section taken through 5-5 of Fig. 2.
Figure 6 is a section taken through 6-6 of Fig. 4.
Figure 7 is a cross-section of the mechanical set anchor in the release mode wherein the spring compression forces are released.
Figure 8 is a cross-section of the anchor as it progresses through the release mode.
Figure 9 is a cross-section of the anchor illustrating the slips completely retracted within the anchor body housing.
Figure 10 is a perspective view of one of the slips showing the radially and axially aligned protrusions that, when engaged with the borehole casing, prevent torsional motion as well as axial 2o rr~otion during sidetrack drilling operations.
Figure 11 is an enlarged cross-sectional view of the slip actuation mechanism in the regained position.

Figure 12 is an enlarged cross-sectional view of the slip actuation mechanism in the released position, the slip actuation mechanism drives the slips into engagement with the borehole casing through the compressed spring.
Figure 13 is an enlarged cross-sectional view of the compression spring anchoring device.
_g_ DESCRIPTION OF THE PREFERRED EMBODIMENTS AND
BEST MODE FOR CARRYING OUT THE INVENTION
Referring now to Figures 1 A and 1B, a sidetracking assembly may, for example, include a starter mill 1 threadably connected to a drill string 1 l, a whipstock generally designated as 9 and a mechanically set anchor, generally designated as 14.
The sidetracking assembly is towered or tripped into a borehole 6 by the drillstring 11 to a predetermined depth that preferably includes a portion of the borehole that is lined with a steel casing 7 that is cemented in place (8). The lower end 12 of the window starter mill 1 is connected to the top end of the whipstock 9 through a shear bolt 3 that is threaded into shear bolt block 4 to affixed to the ramped face of the whipstock. A ledge 2 is formed in the side near the end 12 of starter mill 1 that is designed to strike shoulder 5 formed by shear bolt block 4 after the shear bolt i., sheared.
The ledge 2 formed in the starter mill 1 and the shoulder stop 5 of shear bolt block 4 serve three very important purposes. The first purpose is to assure that the starter mill 1 will not become wedged between the whipstock face and the pipe casing 7 after the shear bolt 3 breaks possibly resulting in a disastrous release of the whipstock and anchor.
Without the stopping action of the ledge 2 against shoulder 5 of the present invention, prior art starter mill whipstock assemblies have resorted to shear bolts with relatively weak breaking; points to prevent the starter null from becoming jammed against the casing and whipstock.. An obvious result of the low 2o shear strength of the bolt is that the state of the art anchor is not securely set within the borehole.
The ledge 2 and shoulder stop 5 featured in the present invention will not allow the starter null 1 to move past the shear bolt block 4 The second purpose is to allow the use of a shear bolt with a much higher shear strength property (up to 20 times the shear strength of the forgoing prior art shear bolt). The higher shear strength of the shear bolt 3 allows for the use of much heavier drill string weights to be subjected to the mechanical set anchor 14 resulting in a much better "set" of the slips 22 within the pipe casing 7. Moreover, a higher strength shear bolt may be used without fear that the starter mill 1 will become jammed against the whipstock 9 when the bolt shears because the end of the mill 12 will again, be stopped against the shear bolt block 4.
The third important purpose is to use the innovative ledge and shoulder feature of the present invention to force the mechanical set anchor into even tighter engagement with the pipe to casing . For example, when the shear bolt 3 fractures, the ledge 2 on the end 12 of the starter mill 1 strikes the shoulder 5 of shear bolt block 4 with considerable force further seating the anchor 14 within the pipe casing 7.
As a matter of fact, after the starter mill is freed from the end of the whipstock, it is common practice by drill rig operators to lift the drill string / starter mill ofd the shoulder 5 of bolt block 4 (a foot or so) without rotation and drop the drill string and starter mill so that the mechanical set anchor is further hammered in place with the pipe casing 7.
Figure 1B illustrates the lower end 10 of the whipstock 9 threadably engaged with the upper end 20 of housing 16 of the mechanically set anchor generally designated as 14. The housing contains, for example, three anchor slips generally designated as 22 that are actuatable in 2o and out of the housing 16 through three axially aligned slots 18 positioned about 120 degrees apart. A multiplicity of radially aligned engagement "threads" 23 and axially aligned "fins" 24 extend from the outer surface of each of the slips and are designed to resist torsional as well as axial loads imposed on the mechanical set anchor during sidetrack drilling operations. The lower end 21 of the housing 16 supports a base cap 36 from which a central mandrel 34 is attached. A
plunger, generally designated as 60, protrudes from the end of the housing 16.
The plunger 60 translates or telescopes into and out of the housing 16 and is slidably retained within the central mandrel 34 concentrically retained within the housing (see Figures 2., 3, 4, 7, 8 and 9).
s With reference now to the cross-section of Figure 2, the mechanical set anchor 14, in the unactuated state, is shown suspended below the whipstock 9 within the steel casing 7 of the borehole 6. The plunger 60 is in its fully extended state protruding from end cap 36 of lower housing 21.
The enlarged diameter portion 64 of the plunger forms a stop shoulder 65 that retains the to plunger within the housing. The plunger 60 further forms a conical surface 63 that serves to release a slip actuation ring generally designated as 44 after the plunger telescopes into mandrel 34 a predetermined distance (see Fig. 3). A shear pin 70 through end cap 36 holds the plunger in the extended position during the trip into the borehole to prevent inadvertent actuation of the mechanical set anchor during a transition period while tripping into the borehole.
15 Referring to both Figures IA, 1B and 2, when end 62 of the plunger 60 strikes a bridge plug or packer assembly 78, shear pin 70 is sheared allowing the plunger to move into mandrel 34. The conical surface 63 forces the spring loaded slip actuation drive ring retainers 47 radially outwardly within their sleeves formed in mandrel 34 thereby releasing the drive ring 44 which in turn, strikes the slip drive ring generally designated as 41 into base 2.7 of each of the slips 22. A
2o coil spring 49, under compression, is contained within an annulus formed between the interior walls 17 of housing 16 and exterior surface 38 of mandrel 34. Spring 49 is compressed between end cap 36 and end surface 46 of the slip actuation ring 44. Thf; slip actuation ring contact surface 45 strikes the end 48 of the slip drive ring 41 which in turn pushes against the base surface 27 formed by each of the slips 22 thereby driving the slips through each of the slots 18 in housing 16. The ramped surface 26 formed by the slips are driven up the conical ramp surface 19 formed by housing 16 thus forcing the slips 22 into engagement with the steel pipe casing 7 thereby anchoring the mechanical set anchor in place within the cased borehole.
Further downward compression force exerted by the drill string after the slips 22 are set in the casing 7 shears the shear bolt 3 freeing the starter mill 1 from the whipstock 9. The ledge 2 formed on the end of the starter mill 1 subsequently strikes the shoulder S of the shear bolt block 4 with a great deal of force further setting the slips into the steel pipe casing 7 resulting in a more secure anchor for the mechanical set anchor assembly 14 (as heretofore described).
to A segmented lock nut 54 is contained within the drive ring 41. The lock nut, for example, is formed in three 120 degree segments. The inside diameter of each of the segments contain a multiplicity of threaded, radially extended rings 55 that are biased to hold and lock the lock nut 54 in one direction only. The rings 55 engage a multiplicity of identically biased rings 39 formed in the outside surface 38 of mandrel 34.
A pair of, for example, garter springs 56 contained within grooves 57 formed in the outside surface of the stop nut 54, assure that the segments remained locked within the slip retention rings 55 and 39 formed between the segmented nut 54 and the mandrel 34 (see enlarged F~:g. 12). As the slips 22 are driven upwardly and radially out of the housing 16, the stop nut segments skip over the rings 39 formed in the mandrel 34, following in the direction the slips are 2o being driven, securely locking the slips tightly into engagement with the pipe casing 7. The segmented nut 54 cannot reverse direction due to the angulation of the cooperating threads 55 and 39 formed in the nut segments and the mandrel 34.

'~ (~ RGU 95-HS63 With reference now to Figures 4, 5 and 6, the cross-sections illustrate the mechanical set anchor 14 fully engaged with pipe casing 7. The slip actuation drive ring 44, drive ring 41 and segmented lock nut 54 are advanced by the spring 49 upwardly in direction "A"
over the angled threads 39 formed on mandrel 34 driving the ramped surfaces 26 of slips 22 over the ramps 19 formed in housing 16, fully engaging fms 23 and rings 24 formed by slips 22 with the pipe casing 7. Again, the segmented lock nut 54 prevents the slips 22 from becoming disengaged with the pipe casing 7 and also prevents the slips from being retracted within the housing prematurely.
The cross-section of Fig. 5 (taken through 5-5 of Fig. 2) illustrates the slips 22 fully retracted within the housing 16. Figure 6 taken through 6-6 of Fig. 4 show the slips 22 in full 1o contact with the pipe casing ?, Figures ?, 8 and 9 illustrate the slip retraction sequence that prepares the mechanical set anchor 14 and its attached whipstock 9 for removal from the borehole 6.
To start the retraction sequence, the tapered end of the whipstock is captured and pulled upwardly in direction "B" {Fig. ?), subjecting the mechanical set anchor housing 16 to tensional is loads (not shown). A predetermined force under tension shears shear pin ?2 holding the lower base cap 36 and the mandrel 34 to the end ofthe housing 16 thereby releasing the spring 49 under compression. Simultaneously, the plunger 60 is driven out of the mandrel 34 when it reacts to the upward pull exerted by the drill string. This in turn releases the slips 22 from the casing ?. Even though the spring is released through separation of the end cap 36 from the housing 16, the spring 2o still has enough compression force to drive the segmented lock nut 54 over the rings 39 formed in the mandrel into the non-threaded smooth segment 38 of the mandrel 34 after the slips become disengaged with the casing 7. The enlarged portion 64 of plunger 60 comes in contact with end cap 36 at shoulder 65 further moving the mandrel 34 and end cap 36 out of the housing 16.

Upper end cap 35 of mandrel 34 contacts the drive ring 41 at contact surface SO thus locking the slips 22 within the housing after the drive ring pulls the three slips 22 into the confines of the housing 16 through engagement of slip retention shoulder 42 of drive ring 41 with annular groove 25 formed in each of the slips 22.
The double action of the force under tension of the drill string coupled with the opposite force of the plunger acting upon the end caps 36 and 35 of attached mandrel 34 assures that the slips are fully retracted within housing 16 for ease of tripping the whipstock and mechanical set anchor out of the borehole.
Figures 7, 8 and 9 sequentially illustrate the slip retraction process.
to The perspective view of Figure 10 shows one of the three slips 22 clearly illustrating the multiple radially extending rings or threads 24 and the axially aligned extended fins 23 positioned above the rings. Each of the slips are captured in the annular channel 25 by shoulder 42 of slip actuation ring 41 during the slip retraction process as heretofore described.
Figures 11 and 12 are enlarged segments illustrating the slip actuation drive ring 44 and t:he spring loaded ring release mechanism 47. As the plunger conical surface 63 moves past the piston 51, it pushes or moves the release mechanism out of its retention hole 52 thus allowing the drive ring surface 45 to strike surface 48 (Fig. 12) formed by drive ring 41 thereby moving the slips out of the slots 18 in housing 16. The biased threads 3f and 55 in mandrel 34 and segmented lock nut 54 allow the lock nut to skip over the threads 39 , the garter springs 56 2o expanding to accommodate this step designed to lock the slips 22 in place after they seat against the pipe casing 7.
Figure 13 shows the base cap 36 threadably secured to the end of the central mandrel 34.
The cap 36 is attached to the end of the housing 16 by one or more shear bolts or pins 72. The -1=~-shear pin 70 secures the plunger 60 in the extended position and serves to prevent the plunger from being inadvertently actuated while the mechanical set anchor mechanism 14 is being tripped into the borehole. As mentioned before. when the end 62 of the plunger 60 contacts the bridge plug or packer assembly 78 the shear pin breaks allowing the anchor to be actuated against the pipe casing 7.
It will of course be realized that various modifications can be made in the design and operation of the present invention without departing from the spirit thereof.
Thus, while the principal preferred construction and mode of operation of the invention have been explained in what is now considered to represent its best embodiments, which have been illustrated and to described, it should be understood that within the scope of the appended claims, the invention may be practiced otherwise than as specifically illustrated and described.

Claims (16)

1. A mechanical set anchor for use in cooperation with drilling equipment, comprising:
a) an anchor body forming attachment means for said drilling equipment at a first end and a mechanical set means extending from a base end of the anchor body;
b) a pair of moveable slips for engagement with a wall formed by a borehole when said mechanical set means is actuated;
c) the mechanical set means including a moveable plunger extending from the base end and disposed to telescope axially into a moveable concentric mandrel contained within the anchor body following contact of the plunger with a borehole stop means positioned below the mechanical set anchor;
d) the plunger forming means to release a biased slip actuation means positioned between the mandrel and the anchor body, the slip actuation means being under a restrained compressive load such that when said plunger moves into said mandrel a predetermined distance, said slip actuation means is released driving the slips into the wall of the borehole;
e) means to lock said pair of slips after the slips are in full engagement with the borehole wall; and f) release means to completely retract the slips into the anchor body to enable the removal of the mechanical set anchor from the borehole.
2. The mechanical set anchor of claim 1 wherein the means to lock said slips comprises a resiliently biased segmented nut positioned between the biased slip actuation means and the slips, the segmented nut having multiple, radially disposed grooves formed in an inside surface of the segmented nut to mate with complimentary grooves formed on an outside surface of the concentric axially moveable mandrel contained within the anchor body, said segmented nut further being resiliently biased radially inwardly to move over said grooves in said mandrel when the biased slip actuation means drives the slips into engagement with the borehole wall, said radially disposed grooves forming means to allow movement of the segmented nut in one direction only thus locking the slips after the slips are in full engagement with the borehole wall.
3. The mechanical set anchor of claim 2 wherein the segmented nut is resiliently biased radially inwardly by at least one garter spring positioned radially around each of the segments of the segmented nut.
4. The mechanical set anchor of claim 1 wherein the biased slip actuation means is a concentric ring biased by at least one spring under compression, said concentric ring being released when the plunger moves axially into the concentric mandrel and engages a release pin restraining the ring thereby releasing the ring for actuation of the slips for engagement with the borehole wall.
5. The mechanical set anchor of claim 1 wherein there are three moveable slips spaced about 120 degrees apart contained within the anchor body.
6. The mechanical set anchor of claim 1 wherein the release means to completely retract the slips into the anchor body is a means to release said biased slip actuation means from its compressive load when said anchor body is moved upwardly in said borehole.
7. The mechanical set anchor of claim 6 wherein said means to release the biased slip actuation means is a shear pin which shears when tensional loads exerted on the anchor body reach a pre-determined load.
8. The mechanical set anchor of claim 1 further comprising means to secure the completely retracted slips contained within the anchor body.
9. The mechanical set anchor of claim 8 wherein said means to secure the retracted slips within the anchor body is a radially extending annular shoulder formed on an end of the moveable mandrel, such that as the mandrel moves toward the base end of the anchor body during upward movement of the anchor body, the shoulder moves adjacent a base portion formed by each slip to prevent the retracted slips from extending from the interior of the anchor body.
10. The mechanical set anchor of claim 1 wherein the slips are adapted to engage a borehole wall lined with a pipe casing.
11. The mechanical set anchor of claim 1 wherein the slips form a plurality of anti-torque fins that are axially aligned and extend radially from an outside surface of the slips.
12. The mechanical set anchor of claim 11 wherein the slips further form a plurality of radially extended threads along the outside surface of the slips.
13. The mechanical set anchor of claim 12 wherein the mechanical set anchor resists loading in torque, compression and tension.
14. The mechanical set anchor of claim 1 wherein the drilling equipment incorporated with the mechanical set anchor is a whipstock assembly attached to the first end of the anchor body, the whipstock assembly includes a window starter mill designed to start a window in a cased, lined borehole, after the mechanical set anchor is set within the casing, the window starter mill is released when a shear bolt attaching the mill to the whipstock is sheared through increased compressive loads, a shoulder formed on the window starter mill forcibly contacts a shear bolt block formed on the whipstock after the mill is released further setting the slips anchored within the cased borehole.
15. A mechanical set anchor for use in cooperation with a whipstock assembly for sidetracking operations, the anchor comprising:
a) an anchor body forming attachment means for the whipstock assembly at a first end and a mechanical set means extending from a base end of the anchor body;
b) a pair of moveable slips for engagement with a borehole wall when said mechanical set means is actuated;
c) the mechanical set means including a moveable plunger extending from the base end of the anchor body that telescopes axially into a moveable concentric mandrel contained within the anchor body after the plunger contacts a borehole stop means;
d) the body of the plunger forming means to release a spring biased slip actuation means positioned between the mandrel and the anchor body, the slip actuation means being under a restrained spring compressive load such that when said plunger moves into said mandrel a predetermined distance the slip actuation means is released driving the slips contained within the anchor body into the borehole wall; and e) means to lock the pair of slips in engagement with the wall.
16. A method to set and release a mechanical set anchor for use in cooperation with a whipstock assembly for sidetracking operations comprising the steps of:
lowering a whipstock and an attached mechanical set anchor into a borehole;
contacting an obstruction within the borehole with a portion of said set anchor;
telescoping a plunger into the body of the set anchor;
triggering a spring loaded slip actuation means to drive one or more slips housed within the body of the anchor into interior walls formed by the borehole;
locking the slips in engagement with the borehole;
releasing the slips from engagement with the borehole; and fully retracting the slips within the body of the mechanical set anchor to facilitate removal of the set anchor from the borehole.
CA002196382A 1996-01-31 1997-01-30 Mechanical set anchor with slips pocket Expired - Fee Related CA2196382C (en)

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US08/594,492 1996-01-31
US08/594,492 US5829531A (en) 1996-01-31 1996-01-31 Mechanical set anchor with slips pocket

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Families Citing this family (83)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5836387A (en) 1993-09-10 1998-11-17 Weatherford/Lamb, Inc. System for securing an item in a tubular channel in a wellbore
US6012516A (en) * 1997-09-05 2000-01-11 Schlumberger Technology Corporation Deviated borehole drilling assembly
US6283208B1 (en) 1997-09-05 2001-09-04 Schlumberger Technology Corp. Orienting tool and method
US6056051A (en) * 1998-02-04 2000-05-02 Baker Hughes, Incorporated Internal coiled tubing connection with torque capability
US6913092B2 (en) * 1998-03-02 2005-07-05 Weatherford/Lamb, Inc. Method and system for return of drilling fluid from a sealed marine riser to a floating drilling rig while drilling
CA2238910C (en) * 1998-05-28 2001-12-04 G. Maurice Laclare Anti-rotation tool
GB2345508B (en) * 1998-05-29 2002-05-29 Schlumberger Ltd Borehole logging tool with anchoring mechanism
GB2340519B (en) * 1998-08-03 2002-06-12 Smith International Deflector tool
US6076606A (en) * 1998-09-10 2000-06-20 Weatherford/Lamb, Inc. Through-tubing retrievable whipstock system
US7357188B1 (en) * 1998-12-07 2008-04-15 Shell Oil Company Mono-diameter wellbore casing
US7159669B2 (en) * 1999-03-02 2007-01-09 Weatherford/Lamb, Inc. Internal riser rotating control head
US6499537B1 (en) * 1999-05-19 2002-12-31 Smith International, Inc. Well reference apparatus and method
US6360821B1 (en) * 1999-05-20 2002-03-26 Tiw Corporation Combination whipstock and anchor assembly
US6318459B1 (en) * 1999-08-09 2001-11-20 Gadu, Inc. Device for anchoring an oil well tubing string within an oil well casing
US6431277B1 (en) * 1999-09-30 2002-08-13 Baker Hughes Incorporated Liner hanger
GB2368080B (en) * 1999-09-30 2004-01-14 Baker Hughes Inc Liner hanger
US6935423B2 (en) * 2000-05-02 2005-08-30 Halliburton Energy Services, Inc. Borehole retention device
US7255178B2 (en) 2000-06-30 2007-08-14 Bj Services Company Drillable bridge plug
US6578633B2 (en) 2000-06-30 2003-06-17 Bj Services Company Drillable bridge plug
US7600572B2 (en) * 2000-06-30 2009-10-13 Bj Services Company Drillable bridge plug
US7509778B2 (en) * 2000-12-03 2009-03-31 Simpson Strong-Tie Company, Inc. Automatic take-up device with internal spring
US6786282B2 (en) * 2001-06-25 2004-09-07 Schlumberger Technology Corporation Milling apparatus and method for a well
US6915856B2 (en) 2002-05-31 2005-07-12 Exxonmobil Upstream Research Company Apparatus and methods for preventing axial movement of downhole tool assemblies
US7487837B2 (en) * 2004-11-23 2009-02-10 Weatherford/Lamb, Inc. Riser rotating control device
US7836946B2 (en) 2002-10-31 2010-11-23 Weatherford/Lamb, Inc. Rotating control head radial seal protection and leak detection systems
US7178589B2 (en) * 2002-11-21 2007-02-20 Smith International, Inc. Thru tubing tool and method
CA2720489C (en) * 2003-04-02 2012-08-14 Bj Tool Services Ltd. Hydraulically set liner hanger
US7237623B2 (en) * 2003-09-19 2007-07-03 Weatherford/Lamb, Inc. Method for pressurized mud cap and reverse circulation drilling from a floating drilling rig using a sealed marine riser
US7377328B2 (en) * 2004-03-02 2008-05-27 Smith International, Inc. Expandable anchor
US7163066B2 (en) * 2004-05-07 2007-01-16 Bj Services Company Gravity valve for a downhole tool
US7306031B2 (en) * 2004-07-15 2007-12-11 Gadu, Inc. Tubing string rotator and method
US7926593B2 (en) 2004-11-23 2011-04-19 Weatherford/Lamb, Inc. Rotating control device docking station
US8826988B2 (en) 2004-11-23 2014-09-09 Weatherford/Lamb, Inc. Latch position indicator system and method
US7963341B2 (en) * 2005-03-04 2011-06-21 Weatherford/Lamb, Inc. Apparatus and methods of use for a whipstock anchor
CA2628164C (en) * 2005-11-10 2011-02-22 Bj Services Company Self centralizing non-rotational slip and cone system for downhole tools
AR054429A1 (en) * 2006-03-06 2007-06-27 Carro Gustavo Ignacio ANCHORAGE PROVISION FOR WELL ENTUBAMINET
US7624797B2 (en) * 2006-07-14 2009-12-01 Baker Hughes Incorporated Downhole tool operated by shape memory material
CA2566986C (en) * 2006-11-02 2015-01-06 Jonathan Jonny Melic Grip anchor for concrete
US7905066B2 (en) 2007-04-06 2011-03-15 Simpson Strong-Tie Co., Inc. Automatic take-up device and in-line coupler
US7997345B2 (en) 2007-10-19 2011-08-16 Weatherford/Lamb, Inc. Universal marine diverter converter
US8844652B2 (en) 2007-10-23 2014-09-30 Weatherford/Lamb, Inc. Interlocking low profile rotating control device
US8286734B2 (en) 2007-10-23 2012-10-16 Weatherford/Lamb, Inc. Low profile rotating control device
US7757767B2 (en) * 2008-03-06 2010-07-20 Baker Hughes Incorporated Through tubing gun lock
US9359853B2 (en) 2009-01-15 2016-06-07 Weatherford Technology Holdings, Llc Acoustically controlled subsea latching and sealing system and method for an oilfield device
US8322432B2 (en) 2009-01-15 2012-12-04 Weatherford/Lamb, Inc. Subsea internal riser rotating control device system and method
GB2467176B (en) * 2009-01-27 2013-03-20 Bruce Mcgarian Apparatus and method for setting a tool in a borehole
US8347983B2 (en) 2009-07-31 2013-01-08 Weatherford/Lamb, Inc. Drilling with a high pressure rotating control device
US8347982B2 (en) 2010-04-16 2013-01-08 Weatherford/Lamb, Inc. System and method for managing heave pressure from a floating rig
US9175542B2 (en) 2010-06-28 2015-11-03 Weatherford/Lamb, Inc. Lubricating seal for use with a tubular
EP2675981B1 (en) 2011-03-01 2017-07-12 Smith International, Inc. High performance wellbore departure and drilling system
EP2681397A4 (en) * 2011-04-05 2015-11-11 Smith International System and method for coupling a drill bit to a whipstock
WO2012142543A2 (en) 2011-04-15 2012-10-18 Smith International, Inc. System and method for coupling an impregnated drill bit to a whipstock
DE102011106605B3 (en) * 2011-06-16 2012-09-20 Sms Meer Gmbh Mechanical tensile expander
US20130020084A1 (en) * 2011-07-22 2013-01-24 Baker Hughes Incorporated Affixation and release assembly for a mill and method
US9140083B2 (en) * 2012-06-20 2015-09-22 International Tubular Services Limited Hydraulically triggered anchor
US8881478B2 (en) 2012-06-22 2014-11-11 Simpson Strong-Tie Company, Inc. Ratcheting take-up device
CN103277049B (en) * 2013-05-31 2015-08-19 中国石油集团川庆钻探工程有限公司 Slip-type whipstock
US9394706B2 (en) 2013-10-08 2016-07-19 Simpson Strong-Tie Company, Inc. Concrete anchor
BR112016005605B1 (en) * 2013-10-09 2021-09-08 Halliburton Energy Services, Inc DOUBLE CONFIGURATION SHEAR SCREW, WELL BOTTOM SET AND METHOD
US9163655B2 (en) 2014-01-14 2015-10-20 Kaoru Taneichi Thrust nut
GB201418128D0 (en) * 2014-10-14 2014-11-26 Weatherford Uk Ltd Downhole anchor
US10435971B2 (en) 2014-12-12 2019-10-08 Shell Oil Company Anchor system and method for use in a wellbore
CA3169533A1 (en) 2014-12-29 2016-06-29 Ncs Multistage Inc. Tool for opening and closing sleeves within a wellbore
WO2017105562A1 (en) * 2015-12-14 2017-06-22 Schlumberger Technology Corporation System and method for restricting liner hanger during load reversal
US10689950B2 (en) 2016-04-22 2020-06-23 Ncs Multistage Inc. Apparatus, systems and methods for controlling flow communication with a subterranean formation
WO2018125075A1 (en) 2016-12-28 2018-07-05 Halliburton Energy Services, Inc. Hydraulically assisted shear bolt
US10577882B2 (en) 2017-01-24 2020-03-03 Baker Hughes, A Ge Company, Llc Whipstock/bottom hole assembly interconnection and method
US10724319B2 (en) * 2017-01-24 2020-07-28 Baker Hughes, A Ge Company, Llc Whipstock/bottom hole assembly arrangement and method
US10689930B2 (en) 2018-04-03 2020-06-23 Wildcat Oil Tools, LLC Dual-action hydraulically operable anchor and methods of operation and manufacture for wellbore exit milling
GB2567225B (en) 2017-10-06 2020-02-26 Priority Drilling Ltd Directional drilling
US10954736B2 (en) 2018-03-16 2021-03-23 Weatherford Technology Holdings, Llc Downhole casing pulling tool
US10704329B2 (en) 2018-04-03 2020-07-07 Wildcat Oil Tools, LLC Cementing whipstock assembly and running tool with releasably engaged cement tube for minimizing downhole trips during lateral drill sidetracking operations
US10597186B2 (en) 2018-06-21 2020-03-24 John Bean Technologies Corporation Produce label printer and applicator
WO2020010283A1 (en) * 2018-07-03 2020-01-09 Wildcat Oil Tool, Llc A bi-mill for milling an opening through a wellbore casing and in a preplanned lateral drilling path in departure from the wellbore axis
US11421496B1 (en) 2020-03-25 2022-08-23 Baker Hughes Oilfield Operations Llc Mill to whipstock connection system
US11131159B1 (en) 2020-03-25 2021-09-28 Baker Hughes Oilfield Operations Llc Casing exit anchor with redundant setting system
US11162315B2 (en) 2020-03-25 2021-11-02 Baker Hughes Oilfield Operations Llc Window mill and whipstock connector for a resource exploration and recovery system
US11162314B2 (en) * 2020-03-25 2021-11-02 Baker Hughes Oilfield Operations Llc Casing exit anchor with redundant activation system
US11414943B2 (en) 2020-03-25 2022-08-16 Baker Hughes Oilfield Operations Llc On-demand hydrostatic/hydraulic trigger system
US11702888B2 (en) 2020-03-25 2023-07-18 Baker Hughes Oilfield Operations Llc Window mill and whipstock connector for a resource exploration and recovery system
US11136843B1 (en) * 2020-03-25 2021-10-05 Baker Hughes Oilfield Operations Llc Casing exit anchor with redundant activation system
US20230107931A1 (en) * 2021-10-04 2023-04-06 Halliburton Energy Services, Inc. Adjustable element energy retention mechanism
US20230243221A1 (en) * 2022-02-03 2023-08-03 Baker Hughes Oilfied Operations LLC Annular pressure activated downhole tool

Family Cites Families (29)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1619268A (en) * 1925-02-12 1927-03-01 Charles R Butler Casing wedge
US1774911A (en) * 1927-07-01 1930-09-02 James S Abercrombie Anchor for wells
US1900371A (en) * 1932-03-04 1933-03-07 Byron Jackson Co Tubing catcher
GB447149A (en) * 1934-01-29 1936-05-13 Byron Jackson Co Tubing catcher for use in wells
US2105722A (en) * 1935-11-20 1938-01-18 George J Barrett Well-boring apparatus
US2103622A (en) * 1936-07-25 1937-12-28 Robert B Kinzbach Side tracking apparatus
US2145422A (en) * 1936-07-25 1939-01-31 Robert B Kinzbach Whip stock anchor
US2170284A (en) * 1937-10-28 1939-08-22 Eastman Harlan John Whip-stock bottom
US2906346A (en) * 1955-08-01 1959-09-29 Johnston Testers Inc Slip actuating device
US2882015A (en) * 1957-06-10 1959-04-14 J E Hill Directional window cutter for whipstocks
US3746093A (en) * 1972-05-26 1973-07-17 Schlumberger Technology Corp Releasable locking system for a well tool
US3908759A (en) * 1974-05-22 1975-09-30 Standard Oil Co Sidetracking tool
US4156460A (en) * 1977-11-03 1979-05-29 Baker International Corporation Retrievable double grip well packer
US4397355A (en) * 1981-05-29 1983-08-09 Masco Corporation Whipstock setting method and apparatus
US4429741A (en) * 1981-10-13 1984-02-07 Christensen, Inc. Self powered downhole tool anchor
US4898245A (en) * 1987-01-28 1990-02-06 Texas Iron Works, Inc. Retrievable well bore tubular member packer arrangement and method
US4811785A (en) * 1987-07-31 1989-03-14 Halbrite Well Services Co. Ltd. No-turn tool
US5035292A (en) * 1989-01-11 1991-07-30 Masx Energy Service Group, Inc. Whipstock starter mill with pressure drop tattletale
US5341873A (en) * 1992-09-16 1994-08-30 Weatherford U.S., Inc. Method and apparatus for deviated drilling
US5467819A (en) * 1992-12-23 1995-11-21 Tiw Corporation Orientable retrievable whipstock and method of use
US5720349A (en) * 1995-10-12 1998-02-24 Weatherford U.S., Inc. Starting mill and operations
US5361833A (en) * 1993-11-18 1994-11-08 Triumph*Lor, Inc. Bottom set, non-retrievable whipstock assembly
US5425419A (en) * 1994-02-25 1995-06-20 Sieber; Bobby G. Whipstock apparatus and methods of use
US5431220A (en) * 1994-03-24 1995-07-11 Smith International, Inc. Whipstock starter mill assembly
US5488989A (en) * 1994-06-02 1996-02-06 Dowell, A Division Of Schlumberger Technology Corporation Whipstock orientation method and system
US5443129A (en) * 1994-07-22 1995-08-22 Smith International, Inc. Apparatus and method for orienting and setting a hydraulically-actuatable tool in a borehole
US5584350A (en) * 1995-09-22 1996-12-17 Weatherford U.S., Inc. Wellbore sidetracking methods
US5636690A (en) * 1995-10-20 1997-06-10 Garay; Thomas W. Torque anchor
US5657820A (en) * 1995-12-14 1997-08-19 Smith International, Inc. Two trip window cutting system

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CA2196382A1 (en) 1997-08-01
US5829531A (en) 1998-11-03
US5878818A (en) 1999-03-09
GB2309721A (en) 1997-08-06
GB2309721B (en) 1999-08-18
GB9702094D0 (en) 1997-03-19

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