IP Library Granted Patent US 11,781,425
Granted Patent B2
US 11,781,425 · App. 17/548,435 · Granted Oct 10, 2023

Oscillating datalink useful in downhole applications

Inventors: Benjamin G. Frith (Lafayette, LA); Terrence G. Frith (Lafayette, LA); J. Hunter Simmons (Lafayette, LA)
Assignee: Gordon Technologies, LLC
E21B47/13
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Quick Facts
Patent No.
US 11,781,425
App. No.
17/548,435
Granted
Oct 10, 2023
Kind
B2
Abstract

A datalink tool comprising an MWD-connected assembly disposed to move relative to an LWD-connected assembly. A hardwired electrical connection is provided between the MWD-connected and LWD-connected assemblies. An oil space is provided such that at least part of the hardwired electrical connection is configured to be immersed in a nonconductive oil contained inside the oil space. A compensator sleeve contributes at least in part to isolation of nonconductive oil in the oil space from drilling fluid residing outside the space. In some deployments, the drilling fluid may be conductive. The compensator sleeve is disposed to expand and relax in response to pressure variations in the drilling fluid, thereby attenuating a corresponding effect of the pressure variations in the nonconductive oil inside the oil space.

Claims (37)

1. A datalink tool, comprising:

a first assembly and a second assembly, wherein the second assembly is disposed to move relative to the first assembly;

a space;

a hardwired electrical connection between the first and second assemblies, such that at least part of the hardwired electrical connection is configured to be immersed in an internal fluid contained inside the space; and

a compensator sleeve contributing at least in part to isolation of the internal fluid inside the space from an external fluid residing outside the space;

wherein the compensator sleeve is disposed to expand and relax in response to pressure variations in the external fluid, such that said expansion and relaxation of the compensator sleeve attenuates transfer of said external fluid pressure variations into the internal fluid.

2. The datalink tool of claim 1 , in which the datalink tool is deployed inside a drillstring collar.

3. The datalink tool of claim 1 , in which the first assembly is an LWD-connected assembly.

4. The datalink tool of claim 1 , in which the second assembly is an MWD-connected assembly.

5. The datalink tool of claim 4 , in which the datalink tool is deployed in a subterranean drillstring including a bit, and in which the MWD-connected assembly is located nearer the bit than the datalink tool.

6. The datalink tool of claim 1 , in which the external fluid is conductive.

7. The datalink tool of claim 1 , in which the datalink tool is deployed in a subterranean drillstring, and in which the external fluid is drilling fluid.

8. The datalink tool of claim 1 , in which the datalink tool is deployed in a subterranean drillstring, and in which the internal fluid is nonconductive oil.

9. The datalink tool of claim 1 , in which the datalink tool is deployed in a subterranean drillstring, and in which the hardwired connection does not cross a UBHO sub.

10. The datalink tool of claim 1 , in which the compensator sleeve is made from a material selected from a group consisting of:

(a) polymer; and

(b) metal.

11. The datalink tool of claim 1 , further including a movable piston assembly disposed to accommodate relative movement between the first assembly and the second assembly.

12. A datalink tool, comprising:

a first assembly and a second assembly, wherein the second assembly is disposed to move relative to the first assembly;

a space;

a hardwired electrical connection between the first and second assemblies, such that at least part of the hardwired electrical connection is configured to be immersed in a nonconductive fluid contained inside the space; and

a compensator sleeve contributing at least in part to isolation of the nonconductive fluid inside the space from a conductive fluid residing outside the space;

wherein the compensator sleeve is disposed to expand and relax in response to pressure variations in the conductive fluid, such that said expansion and relaxation of the compensator sleeve attenuates transfer of said conductive fluid pressure variations into the nonconductive fluid.

13. The datalink tool of claim 12 , in which the datalink tool is deployed inside a drillstring collar.

14. The datalink tool of claim 12 , in which the first assembly is an LWD-connected assembly.

15. The datalink tool of claim 12 , in which the second assembly is an MWD-connected assembly.

16. The datalink tool of claim 15 , in which the datalink tool is deployed in a subterranean drillstring including a bit, and in which the MWD-connected assembly is located nearer the bit than the datalink tool.

17. The datalink tool of claim 12 , in which the datalink tool is deployed in a subterranean drillstring, and in which the nonconductive fluid is oil and the conductive fluid is drilling fluid.

18. The datalink tool of claim 12 , in which the datalink tool is deployed in a subterranean drillstring, and in which the hardwired connection does not cross a UBHO sub.

19. The datalink tool of claim 12 , further including a movable piston assembly disposed to accommodate relative movement between the first assembly and the second assembly.

20. A datalink tool, comprising:

a first assembly and a second assembly, wherein the second assembly is disposed to move relative to the first assembly;

a space;

a hardwired electrical connection between the first and second assemblies, such that at least part of the hardwired electrical connection is configured to be immersed in a nonconductive oil contained inside the space; and

a compensator sleeve contributing at least in part to isolation of the nonconductive oil inside the space from an external fluid residing outside the space;

wherein the compensator sleeve is disposed to expand and relax in response to pressure variations in the external fluid, such that said expansion and relaxation of the compensator sleeve attenuates transfer of said external fluid pressure variations into the nonconductive oil.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE INVENTOR'S EXECUTION DATE PREVIOUSLY RECORDED AT REEL: 058726 FRAME: 0137. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Mar 15, 2022
From: FRITH, BENJAMIN G.
To: GORDON TECHNOLOGIES, LLC
Reel/Frame 059365/0741 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2022
From: FRITH, BENJAMIN G.
To: GORDON TECHNOLOGIES, LLC
Reel/Frame 058726/0137 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2022
From: SIMMONS, J. HUNTER
To: GORDON TECHNOLOGIES, LLC
Reel/Frame 058726/0417 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2022
From: FRITH, TERRENCE G.
To: GORDON TECHNOLOGIES, LLC
Reel/Frame 058726/0497 →
Continuity (2)
Provisional Application 63123987 · Dec 10, 2020
Related Publication 20220186611A1 · Jun 16, 2022