Claims
- 1. A downhole connector assembly for sealingly attaching a first and a second segment of a control line having an outer housing that encapsulates a polymeric secondary housing having a communication line therein that extends therefrom, comprising:
at least one weld coupling welded to the outer housing of the first and second segment of the control line; and at least one reflective sleeve located between the communication line and the welds of the weld coupling.
- 2. The downhole connector assembly of claim 1, wherein the reflective sleeve is made of material adapted to protect the communication line from thermal radiation created during the welding of the weld coupling.
- 3. The downhole connector assembly of claim 1, wherein the reflective sleeve further comprises centralizers adapted to create a substantially uniform air gap around the communication line.
- 4. The downhole connector assembly of claim 3, wherein the centralizers are made of a non-electrically conductive material.
- 5. The downhole connector assembly of claim 4, wherein the non-electrically conductive material is PEEK.
- 6. The downhole connector assembly of claim 1, further comprising a protective housing containing the at least one weld coupling therein.
- 7. The downhole connector assembly of claim 6, wherein the protective housing is filled with an epoxy.
- 8. The downhole connector assembly of claim 6, wherein the protective housing is filled with a gel.
- 9. The downhole connector assembly of claim 6, wherein the protective housing futher comprises a port adapted for pressure testing the downhole connector assembly.
- 10. The downhole connector assembly of claim 1, wherein the communication line is an electrical line.
- 11. The downhole connector assembly of claim 1, wherein the communication line is a fiber optic line.
- 12. A protective splice assembly, comprising:
a first cable having an outer housing and a polymeric secondary housing having a communication line therein; a second cable having an outer housing and a polymeric secondary housing having a communication line therein; a spliced connection between the communication lines of the first and second cables; at least one weld coupling located between the outer housings and the communication lines welded to the outer housings of the first and second cables; and at least one reflective sleeve of the first and second cables replacing at least a portion of the polymeric secondary housings of the first and second cables, and located intermediate the welds of the weld coupling and the communication lines.
- 13. The protective splice assembly of claim 12, wherein the protective sleeve is made from material adapted to protect the communication lines from thermal radiation generated during the welding of the weld coupling.
- 14. The protective splice assembly of claim 12, wherein the protective sleeve further comprises centralizers adapted to create a substantially uniform air gap around the communication line.
- 15. The protective splice assembly of claim 12, adapted for downhole application.
- 16. The protective splice assembly of claim 12, wherein the communication line transfers data.
- 17. The protective splice assembly of claim 12, wherein the communication line transfers power.
- 18. The protective splice assembly of claim 12, wherein the communication line is an electrical line.
- 19. The protective splice assembly of claim 12, wherein the communication line is a fiber optic line.
- 20. The protective splice assembly of claim 12, further comprising a pressure housing secured to the first and second cables such that the at least one weld coupling is isolated from the surrounding environment.
- 21. The protective splice assembly of claim 12, wherein the pressure housing further comprises a port adapted for pressure testing.
- 22. The protective splice assembly of claim 12, wherein the pressure housing is filled with a gel.
- 23. The protective splice assembly of claim 12, wherein the pressure housing is filled with an epoxy.
- 24. A downhole connector assembly for sealingly attaching a first and a second segment of a control line having a polymeric secondary housing having a communication line therein, comprising:
at least one weld coupling; and means for protecting the communication line from thermal radiation, said means replacing a portion of the polymeric secondary housing, said means located between the communication line and the weld coupling.
- 25. A method for providing a downhole control line, comprising:
providing a first and a second segment of a control line having a polymeric secondary housing having a communication line therein; removing a portion of the secondary housing to create a void around the communication line; inserting at least one thermal radiation shield into the void around the communication line; providing a weld coupling; and inserting the first and second segments of the control line into the weld coupling and welding the segments in place.
- 26. A method of protecting against air expansion through the weld pool of the weld coupling of a weld splice assembly, comprising:
grinding the outer surface of the cable to have a substantially uniform outside diameter; and providing a weld coupling having an inner diameter approximate the outside diameter of the outer surface of the cable to ensure close contact between the welded surfaces.
- 27. A method of protecting against air expansion within the weld pool of the weld coupling of a weld splice assembly, comprising:
welding the first end of the weld coupling to the outer housing of the first cable with a fillet weld; welding the second end of the weld coupling to the second cable with a butt weld; and providing a weld penetration depth that prevents the weld pool from contacting the expanding air.
- 28. A method of protecting against air expansion within the weld pool of the weld coupling of a weld splice assembly, comprising:
providing compression fitting on the end of the weld coupling.
- 29. A method of protecting against air expansion within the weld pool of the weld coupling of a weld splice assembly, comprising:
providing a two-piece weld coupling; welding the first piece of the weld coupling to the first cable with a fillet weld; welding the second piece of the weld coupling to the second cable with a fillet weld; welding the first and second piece of the weld coupling together with a butt weld; and providing a weld penetration depth that prevents the weld pool from contacting the expanding air.
Parent Case Info
[0001] This application is a continuation-in-part of U.S. application Ser. No. 09/970,353 filed Oct. 3, 2001.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09970353 |
Oct 2001 |
US |
Child |
10449469 |
May 2003 |
US |