Claims
- 1. A riser apparatus for use in offshore drilling for oil or other fossil fuels, the riser apparatus comprising a plurality of riser sections coupled serially end-to-end, wherein each of the riser sections comprises:a pipe having a first end and a second end; a first flanged coupling welded to the first end of the pipe; and a second flanged coupling welded to the second end of the pipe; wherein the pipe is constructed of an aluminum alloy having a strength-to-weight ratio greater than that of steel and wherein the flanges are constructed of the aluminum alloy.
- 2. The riser apparatus of claim 1, wherein the material used for the welding is composed of a second aluminum alloy different from the aluminum alloy of the pipe and flanges.
- 3. The riser apparatus of claim 1, wherein the pipe, the first flanged coupling and the second flanged coupling are composed of an aluminum alloy known as Russian Designation AL 1980.
- 4. A riser apparatus for use in offshore drilling for oil or other fossil fuels, the riser apparatus comprising a plurality of riser sections coupled serially end-to-end, wherein each of the riser sections comprises:a pipe having a first end and a second end; a first flanged coupling welded to the first end of the pipe; a second flanged coupling welded to the second end of the pipe; wherein the pipe is constructed of an aluminum alloy having a strength-to-weight ratio greater than that of steel and wherein the flanges are constructed of the aluminum alloy; wherein the pine, the first flanged coupling and the second flanged coupling are composed of an aluminum alloy known as Russian Designation AL 1980; and wherein the riser apparatus is subjected to post-welding thermal treatment during manufacture.
- 5. A riser apparatus for use in offshore drilling for oil or other fossil fuels, the riser apparatus comprising a plurality of riser sections coupled serially end-to-end, wherein each of the riser sections comprises:a pipe having a first end and a second end; a first flanged coupling welded to the first end of the pipe, wherein the first flanged coupling includes a first set of one or more openings for holding one or more auxiliary lines; a second flanged coupling welded to the second end of the pipe, wherein the second flanged coupling includes a second set of one or more openings for holding the one or more auxiliary lines; one or more telescoping joints coupled to the one or more auxiliary lines; wherein the pipe, the first flanged coupling, and the second flanged coupling are constructed of a first aluminum alloy having a strength-to-weight ratio greater than that of steel; and wherein the material used for welding is composed of a second aluminum alloy that is different from the first aluminum alloy.
- 6. The riser apparatus of claim 5, wherein the aluminum alloy is Russian Designation AL 1980.
- 7. The riser apparatus of claim 5, wherein the aluminum alloy has a minimum yield strength of approximately 50,250 lbs/in2, an ultimate tensile strength of at least approximately 58,750 lbs/in2, and a modulus of elasticity of approximately 10×106 lbs/in2.
- 8. The riser apparatus of claim 5, wherein the aluminum alloy has a density of approximately one-third or less that of ferrous steel.
- 9. The riser apparatus of claim 5, wherein the riser apparatus has a tensile capacity of approximately 2,000,000 pounds or greater, with substantially zero bending.
- 10. The riser apparatus of claim 5, wherein the riser apparatus has a bending capacity of approximately 950,000 ft-lbs or greater, under substantially zero tension.
- 11. The riser apparatus of claim 5, wherein one or more of the auxiliary lines are composed of an aluminum alloy known as Russian Designation AL 1980.
- 12. The riser apparatus of claim 5, wherein one or more of the auxiliary lines are composed of an aluminum alloy known as Russian Designation AL 1953.
- 13. A riser apparatus for use in offshore drilling for oil or other fossil fuels, the riser apparatus comprising a plurality of riser sections coupled serially end-to-end, wherein each of the riser sections comprises:a pipe having a first end and a second end; a first flanged coupling welded to the first end of the pipe, wherein the first flanged coupling includes a first set of one or more openings for holding one or more auxiliary lines; a second flanged coupling welded to the second end of the pipe, wherein the second flanged coupling includes a second set of one or more openings for holding the one or more auxiliary lines; one or more telescoping joints coupled to the one or more auxiliary lines; wherein the pipe, the first flanged coupling, and the second flanged coupling are constructed of a first aluminum alloy having a strength-to-weight ratio greater than that of steel; wherein the material used for welding is composed of a second aluminum alloy that is different from the first aluminum alloy; and wherein the riser apparatus is subjected to post-welding thermal treatment during manufacture.
- 14. A riser apparatus for use in offshore drilling for oil or other fossil fuels, the riser apparatus comprising a plurality of riser sections coupled serially end-to-end, wherein each of the riser sections comprises:a pipe having a first end and a second end; a first flanged coupling welded to the first end of the pipe, wherein the first flanged coupling includes a first set of one or more openings for holding one or more auxiliary lines; a second flanged coupling welded to the second end of the pipe, wherein the second flanged coupling includes a second set of one or more openings for holding the one or more auxiliary lines; one or more telescoping joints coupled to the one or more auxiliary lines; wherein the pipe, the first flanged coupling, and the second flanged coupling are constructed of a first aluminum alloy having a strength-to-weight ratio greater than that of steel; wherein the material used for welding is composed of a second aluminum alloy that is different from the first aluminum alloy; and wherein the riser apparatus has a length of approximately 3,000 meters or greater.
- 15. A riser apparatus for use in offshore drilling for oil or other fossil fuels, the riser apparatus comprising a plurality of riser sections coupled serially end-to-end, wherein each of the riser sections comprises:a pipe having a first end and a second end; a first flanged coupling welded to the first end of the pipe, wherein the first flanged coupling includes a first set of one or more openings for holding one or more auxiliary lines; a second flanged coupling welded to the second end of the pipe, wherein the second flanged coupling includes a second set of one or more openings for holding the one or more auxiliary lines; one or more telescoping joints coupled to the one or more auxiliary lines; wherein the pipe, the first flanged coupling, and the second flanged coupling are constructed of a first aluminum alloy having a strength-to-weight ratio greater than that of steel; wherein the material used for welding is composed of a second aluminum alloy that is different from the first aluminum alloy; and wherein the auxiliary lines comprise choke and kill pipes.
- 16. A riser apparatus for use in offshore drilling for oil or other fossil fuels, the riser apparatus comprising a plurality of riser sections coupled serially end-to-end, wherein each of the riser sections comprises:a pipe having a first end and a second end; a first flanged coupling welded to the first end of the pipe, wherein the first flanged coupling includes a first set of one or more openings for holding one or more auxiliary lines; a second flanged coupling welded to the second end of the pipe, wherein the second flanged coupling includes a second set of one or more openings for holding the one or more auxiliary lines; one or more telescoping joints coupled to the one or more auxiliary lines; wherein the pipe, the first flanged coupling, and the second flanged coupling are constructed of a first aluminum alloy having a strength-to-weight ratio greater than that of steel; wherein the material used for welding is composed of a second aluminum alloy that is different from the first aluminum alloy; and wherein the auxiliary lines comprise hydraulic pipes.
- 17. A riser apparatus for use in offshore drilling for oil or other fossil fuels, the riser apparatus comprising a plurality of riser sections coupled serially end-to-end, wherein each of the riser sections comprises:a pipe having a first end and a second end; a first flanged coupling welded to the first end of the pipe, wherein the first flanged coupling includes a first set of one or more openings for holding one or more auxiliary lines; a second flanged coupling welded to the second end of the pipe, wherein the second flanged coupling includes a second set of one or more openings for holding the one or more auxiliary lines; one or more telescoping joints coupled to the one or more auxiliary lines; wherein the pipe, the first flanged coupling, and the second flanged coupling are constructed of a first aluminum alloy having a strength-to-weight ratio greater than that of steel; wherein the material used for welding is composed of a second aluminum alloy that is different from the first aluminum alloy; and wherein the auxiliary lines comprise booster pipes.
- 18. A system for offshore drilling or production comprising:a floating platform; a derrick coupled to the platform; and a riser coupled to the platform, the riser comprising a plurality of riser sections serially coupled end-to-end, wherein each the riser section comprises: a pipe having a first end and a second end wherein the pipe is constructed of an aluminum alloy having a strength-to-weight ratio greater than steel; a first flanged coupling welded to the first end of the pipe; a second flanged coupling welded to the second end of the pipe; and wherein the first flanged coupling and the second flanged coupling are composed of an aluminum alloy known as Russian Designation AL 1980.
- 19. A system for offshore drilling or production comprising:a floating platform; a derrick coupled to the platform; and a riser coupled to the platform, the riser comprising a plurality of riser sections serially coupled end-to-end, wherein each the riser section comprises: a pipe having a first end and a second end wherein the pipe is constructed of an aluminum alloy having a strength-to-weight ratio greater than steel; a first flanged coupling welded to the first end of the pipe; a second flanged coupling welded to the second end of the pipe; and wherein the riser is subjected to post-welding thermal treatment during manufacture.
- 20. A riser section comprising:a riser pipe having a first end, and a first connector coupled to the first end by a first weld; wherein the first weld undergoes heat treatment such that the first weld is stronger and more flexible after the heat treatment than before the heat treatment.
- 21. The riser section of claim 20, wherein the first connector comprises a first flange.
- 22. The riser section of claim 21, wherein the flange is constructed of an aluminum alloy having a greater strength-to-weight ratio than that of steel.
- 23. The riser section of claim 20, wherein the heat treatment includes:heating the first weld at a first rate to a first temperature; and keeping the first weld at at least approximately the first temperature for a first time period.
- 24. The riser section of claim 23, wherein the heat treatment further includes:heating the first weld at a second rate to a second temperature; and keeping the first weld at least approximately the second temperature for a second time period.
- 25. The riser section of claim 24, wherein the heat treatment further includes, after keeping the first weld at least approximately the first temperature for a first time period and before heating the first weld at a second rate to a second temperature, air cooling the first weld.
- 26. The riser section of claim 25,wherein the first temperature is in the range of approximately 100° C. to approximately 175° C., the first rate is in the range of approximately 20° C. per hour to approximately 40° C. per hour, and the first time period is in the range of approximately 1 hour to approximately 3 hours; and wherein the second temperature is in the range of approximately 100° C. to approximately 175° C., the second rate is in the range of approximately 20° C. per hour to approximately 40° C. per hour, and the second time period is in the range of approximately 1 hour to approximately 3 hours.
- 27. The riser section of claim 26,wherein the first temperature is approximately 100° C. and the first time period is in the range of approximately 1.5 hours to approximately 2 hours; and wherein the second temperature is approximately 175° C. and the second time period is approximately 3 hours.
RELATED APPLICATIONS
This application is a continuation of U.S. patent application Ser. No. 09/603,246, entitled “Aluminum Riser Apparatus, System and Method”, filed on Jun. 23, 2000, now U.S. Pat. No. 6,415,867, and hereby incorporated by reference. The benefit of 35 U.S.C. §120 is claimed for the above referenced commonly owned application.
US Referenced Citations (12)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0 652 320 |
May 1995 |
EP |
Non-Patent Literature Citations (2)
Entry |
Tikhonov et al.: “Selection of parameters and bending vibrations of deepwater drilling aluminum riser in random waves” 17TH Int Conf on Offshore Mechanics and Arctic Engineering, Jul. 5-9, 1998, XP001027925, Lisbon, Portugal. |
Fine et al.: “Aluminum alloys for offshore drilling systems” 14TH Asme et al Offshore Mech & Arctic Eng Int Conf, Jun. 18-22, 1995, pp. 299-306, XP001027935, Copenhagen, Denmark. |
Continuations (1)
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Number |
Date |
Country |
Parent |
09/603246 |
Jun 2000 |
US |
Child |
10/108075 |
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US |