WHIPSTOCK ASSEMBLY
20200386053 ยท 2020-12-10
Inventors
Cpc classification
B23K26/40
PERFORMING OPERATIONS; TRANSPORTING
B29C45/14336
PERFORMING OPERATIONS; TRANSPORTING
E21B7/061
FIXED CONSTRUCTIONS
B29K2705/00
PERFORMING OPERATIONS; TRANSPORTING
B29K2027/16
PERFORMING OPERATIONS; TRANSPORTING
E21B29/06
FIXED CONSTRUCTIONS
B29C45/14311
PERFORMING OPERATIONS; TRANSPORTING
International classification
B24C1/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method of manufacturing a whipstock assembly includes cutting a shape of a body plate from a flat metal plate; forming a concave surface in the body plate; and attaching a body core to the body plate in a mold.
Claims
1. A method of manufacturing a whipstock assembly, comprising: cutting a shape of a body plate from a flat metal plate; forming a concave surface in the body plate; and attaching a body core to the body plate in a mold.
2. The method of claim 1, wherein the shape of the body plate includes at least one tab.
3. The method of claim 2, further comprising bending the at least one tab.
4. The method of claim 3, wherein attaching the body core comprises: attaching the body core to an inner surface of the body plate; and at least partially disposing the at least one tab in the core body.
5. The method of claim 2, wherein the at least one tab includes a locking feature. The method of claim 5, wherein the anchoring feature comprises a hole formed in the tab.
6. The method of claim 1, wherein forming a concave surface in the body plate comprises using a pressing operation to form the concave surface.
7. The method of claim 6, wherein cutting the shape of the body plate is performed using a stamping process, a laser cutting process, or a water jet cutting process,
8. The method of claim 1, wherein the shape of the body plate includes a lug section.
9. The method of claim 1, wherein attaching the body core to the body plate comprises adding a filler material to the mold and allowing the filler material to solidify in the mold.
10. The method of claim 9, wherein adding the filler material comprises injecting a filler material into the mold.
11. The method of claim 9, wherein the filler material is selected from the group consisting of thermoset plastic, concrete, polyvinylidene fluoride polymers, and santoprene polymer.
12. The method of claim 1, further comprising forming a retrieval slot in the body core.
13. The method of claim 1, further comprising forming a communication channel in the body core.
14. A whipstock assembly, comprising: a body plate having a concave surface and a plurality of tabs; and a body core attached to the body plate, wherein the body core is formed in a mold with the body plate.
15. The whipstock assembly of claim 14, wherein the plurality of tabs are at least partially disposed in the body core.
16. The whipstock assembly of claim 14, further comprising a communication channel formed in the body core.
17. The whipstock assembly of claim 16, wherein the body plate includes a hole for fluid communication with the communication channel.
18. The whipstock assembly of claim 14, wherein the body plate has a thickness from 0.1 inches to 2 inches.
19. The whipstock assembly of claim 14, wherein the body core comprises a filler material selected from the group consisting of thermoset plastic, concrete, polyvinylidene fluoride polymers, and santoprene polymer.
20. The whipstock assembly of claim 14, further comprising an adapter for connection to a downhole tool.
21. The whipstock assembly of claim 20, wherein the adapter is formed in the mold.
22. A method of manufacturing a whipstock assembly, comprising: cutting a shape of a body plate from a flat metal plate; forming a concave surface in the body plate; forming a body core in a mold; removing the body core from the mold; and attaching the body plate to the body core.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] So that the manner in which the above recited features of the present disclosure are attained and can be understood in detail, a more particular description of the disclosure, briefly summarized above, may be had by reference to the drawings that follow. The drawings illustrate only selected embodiments of this disclosure, and are not to be considered limiting of its scope.
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DETAILED DESCRIPTION
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[0025] The flat plate cutout is formed into the desired shape of the body plate 110, as shown in
[0026] The formed body plate 110 is disposed in a mold 180 of the whipstock assembly 100. A filler material is added to the mold 180 and forms the body core 130 of the whipstock assembly 100.
[0027]
[0028] In another embodiment, the whipstock assembly can be assembled after molding. For example, the body core can be made in a mold. After removal from the mold, the body core can be attached to the body plate. In one example, the body core is bonded to the body plate. The body plate acts as the top guide surface for guiding a mill during a sidetrack drilling operation. The body core provides the supporting structure for the body plate. The body plate can optionally include tabs to facilitate attachment to the body core.
[0029] In one embodiment, a communication channel 170 may be formed in the whipstock assembly 100, as shown in
[0030] In another embodiment, a hollow whipstock is formed using the molding process. For example, the mold 180 includes a bore such that core body 130 includes a core bore. The core bore may be co-axial with the whipstock assembly 100 centerline. In one example, the core bore is larger than a communication channel 170. In another example, the whipstock assembly includes a core bore and one or more communication channels. In another embodiment, a retrieval slot 175 for receiving a retrieval tool to retrieve the whipstock assembly 100 is molded into the whipstock assembly 100.
[0031] In one embodiment, an adapter 195 is added to the whipstock assembly 100 to facilitate connection to a downhole tool 196 such as a packer and anchor assembly, as shown in
[0032]
[0033] The actuating sleeve 220, the sealing element 230, the plurality of slips 235, and the wedge members 241, 242 are disposed on the outer surface of the mandrel 211. The sealing member 230 is positioned between a shoulder of the mandrel 211 and an upper wedge member 241. The slips 235 are disposed between the upper wedge member 241 and the lower wedge member 242. The actuating sleeve 220 is disposed below the lower wedge member 242. An annular chamber 226 is defined between the actuating sleeve 220 and the mandrel 211. One or more seal rings may be used to seal the annular chamber 226. A hydraulic channel 228 through the mandrel 211 may be used to supply hydraulic fluid to the chamber 226. It is contemplated embodiments of the whipstock assembly 100 may be used with any suitable packer, anchor, or a combination of packer and anchor assembly. For example, the anchor may include a plurality of slips disposed on a mandrel having a bore. The packer may include a sealing element disposed on a mandrel having a bore.
[0034] In operation, the whipstock assembly 100 is assembled with the packer and anchor assembly 210. A mill is attached to the upper end of the whipstock assembly 100 such as via the hole 117 of the lug section 112. For example, the mill can be releasably attached to the lug section 112 using a shearable lug or screw. The whipstock assembly 100 is lowered into the wellbore using a workstring. After reaching the location of the window to be formed, the packer and anchor assembly 210 is set below the window. Hydraulic fluid is supplied to the chamber 226 to urge the actuating sleeve 220 upward, thereby moving the lower wedge member 242 closer to the upper wedge member 241. As a result, the slips 235 are urged up the inclined of the wedge members and outwardly into engagement with the surround casing. After setting the slips 235, weight is set down on the whipstock assembly 100, thereby compressing the sealing element 230 between the shoulder of the mandrel 211 and the upper wedge member 241. The sealing element 230 is urged outwardly into engagement with the surrounding casing to seal off fluid communication through the annulus.
[0035] Additional pressure is applied to the mill to release the mill from the whipstock assembly 100. For example, sufficient pressure is applied from the surface to break the shearable lug or screw connecting the mill to the lug section 112 of the whipstock assembly 100. The mill is then urged along the concave surface 113 of the whipstock assembly 100, which deflects the mill outward into engagement with the casing.
[0036] After the window is formed, the mill is retrieved. A retrieval tool is lowered into the wellbore to connect with the retrieval slot 175 formed in the body core 130. A pull force is then applied to the retrieval tool to release the sealing element 230 and the slips 235. After retrieving the whipstock assembly 100, fluid communication is re-established in the wellbore. In another embodiment, the whipstock assembly 100 and packer and anchor assembly 210 are removed using a drilling operation.
[0037] In one embodiment, a method of manufacturing a whipstock assembly includes cutting a shape of a body plate from a flat metal plate; forming a concave surface in the body plate; and attaching a body core to the body plate in a mold.
[0038] In another embodiment, a method of manufacturing a whipstock assembly includes cutting a shape of a body plate from a flat metal plate; forming a concave surface in the body plate; forming a body core in a mold; removing the body core from the mold; and attaching the body plate to the body core.
[0039] In one or more of the embodiments described herein, the shape of the body plate includes at least one tab.
[0040] In one or more of the embodiments described herein, the method includes bending the at least one tab.
[0041] In one or more of the embodiments described herein, attaching the body core includes attaching the body core to an inner surface of the body plate; and at least partially disposing the at least one tab in the core body.
[0042] In one or more of the embodiments described herein, the at least one tab includes a locking feature.
[0043] In one or more of the embodiments described herein, the locking feature comprises a hole formed in the tab.
[0044] In one or more of the embodiments described herein, a pressing operation to form the concave surface.
[0045] In one or more of the embodiments described herein, the shape of the body plate is cut using a stamping process, a laser cutting process, or a water jet cutting process,
[0046] In one or more of the embodiments described herein, the shape of the body plate includes a lug section.
[0047] In one or more of the embodiments described herein, the body core is attached to the body plate by adding a filler material to the mold and allowing the filler material to solidify in the mold.
[0048] In one or more of the embodiments described herein, a filler material is injected into the mold.
[0049] In one or more of the embodiments described herein, the filler material is selected from the group consisting of thermoset plastic, concrete, polyvinylidene fluoride polymers, and santoprene polymer.
[0050] In one or more of the embodiments described herein, the method includes forming a retrieval slot in the body core.
[0051] In one or more of the embodiments described herein, the method includes forming a communication channel in the body core.
[0052] In another embodiment, a whipstock assembly includes a body plate having a concave surface and a plurality of tabs; and a body core attached to the body plate, wherein the body core is formed in a mold with the body plate.
[0053] In one or more of the embodiments described herein, the plurality of tabs are at least partially disposed in the body core.
[0054] In one or more of the embodiments described herein, a communication channel formed in the body core.
[0055] In one or more of the embodiments described herein, the body plate includes a hole for fluid communication with the communication channel.
[0056] In one or more of the embodiments described herein, the body plate has a thickness from 0.1 inches to 2 inches.
[0057] In one or more of the embodiments described herein, the body core comprises a filler material selected from the group consisting of thermoset plastic, concrete, polyvinylidene fluoride polymers, and santoprene polymer.
[0058] In one or more of the embodiments described herein, the whipstock assembly includes an adapter for connection to a downhole tool.
[0059] In one or more of the embodiments described herein, the adapter is formed in the mold.
[0060] While the foregoing is directed to embodiments of the present disclosure, other and further embodiments of the disclosure may be devised without departing from the basic scope thereof, and the scope thereof is determined by the claims that follow.