Claims
- 1. An expandable system, comprising:
a tubular member configured for use in a wellbore, the tubular member having longitudinal structures extending the length of the tubular member and openings oriented between the longitudinal structure such that expansion of the tubular member expands the plurality of openings without deforming the longitudinal structures.
- 2. The expandable system as recited in claim 1, wherein the tubular member comprises a sandscreen.
- 3. The expandable system as recited in claim 1, wherein the tubular member comprises a liner.
- 4. The expandable system as recited in claim 1, wherein the tubular member comprises a plurality of pivotal links connecting adjacent longitudinal structures.
- 5. The expandable system as recited in claim 4, wherein the plurality of pivotal links are arranged to undergo plastic deformation during expansion of the tubular member.
- 6. The expandable system as recited in claim 2, further comprising a communication line routed along the tubular member.
- 7. The expandable system as recited in claim 2, wherein the tubular member comprises a passageway in which the communication line is received.
- 8. The expandable system as recited in claim 2, further comprising a device coupled to the communication line.
- 9. The expandable system as recited in claim 1, further comprising a deformable material surrounding an outer surface of the tubular member.
- 10. The expandable system as recited in claim 9, wherein the deformable material comprises an elastomer.
- 11. The expandable system as recited in claim 1, wherein the tubular member comprises a plurality of different diameters in its expanded state.
- 12. A method of utilizing a tubular within a wellbore, comprising:
radially expanding the tubular within a wellbore; and maintaining substantially constant the axial length of the tubular.
- 13. The method as recited in claim 12, wherein radially expanding further comprises creating expanded openings in a wall of the tubular.
- 14. The method as recited in claim 12, wherein maintaining comprises arranging expandable cells such that radial expansion can occur without axial shortening of the tubular.
- 15. The method as recited in claim 12, wherein maintaining comprises linking a plurality of longitudinal bars with flexible links.
- 16. The method as recited in claim 12, wherein radially expanding comprises expanding a sandscreen.
- 17. An expandable device for use in a wellbore, comprising:
a wellbore conduit having a plurality of expandable cells, each cell having a thick strut and a compliant link, wherein radial expansion of the wellbore conduit results when the compliant link is transitioned from a contracted position to an expanded position.
- 18. The expandable device as recited in claim 17, wherein the compliant link is arcuate.
- 19. The expandable device as recited in claim 17, wherein the axial length of the wellbore conduit remains substantially constant during radial expansion of the wellbore conduit.
- 20. The expandable device as recited in claim 17, wherein the thick strut has a thickness at least two times greater than the thickness of the compliant link.
- 21. The expandable device as recited in claim 17, wherein the wellbore conduit comprises a passageway in which a communication line is deployed.
- 22. The expandable device as recited in claim 17, wherein the wellbore conduit comprises a sandscreen.
- 23. A method of forming an expandable conduit, comprising:
forming a conduit wall with a plurality of expandable cells; and structuring each expandable cell with at least one undeformed longitudinal section and at least one thin strut that can be transitioned to move the conduit wall between a contracted state and an expanded state.
- 24. The method as recited in claim 23, further comprising determining a force deflection characteristic of the conduit wall by selecting a thickness ratio of the at least one undeformed longitudinal section to the at least one thin strut.
- 25. The method as recited in claim 24, wherein selecting comprises selecting a thickness ratio of at least 2:1.
- 26. The method as recited in claim 24, wherein selecting comprises selecting a thickness ratio of at least 3:1.
- 27. The method as recited in claim 24, wherein selecting comprises selecting a thickness ratio of at least 6:1.
- 28. The method as recited in claim 23, further comprising determining a force deflection characteristic by selecting a cell shape.
- 29. The method as recited in claim 28, wherein selecting comprises selecting a curvature of the thin strut while the conduit wall is in the contracted state.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The following is a continuation of U.S. patent application Ser. No. 09/973,442 filed Oct. 9, 2001 which application claims the priority of provisional application No. 60/242,276 filed Oct. 20, 2000 and provisional application No. 60/263,941 filed Jan. 24, 2001.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60242276 |
Oct 2000 |
US |
|
60263941 |
Jan 2001 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09973442 |
Oct 2001 |
US |
Child |
10315569 |
Dec 2002 |
US |