Claims
- 1. A gas transport process comprising:
providing a heat exchanger having a first heat exchanger flowpath for a heat transfer medium at an initial lower temperature and a second heat exchanger flowpath for a hydrocarbon stream at an initial higher temperature, wherein said hydrocarbon stream includes a gas phase comprising a gaseous hydrocarbon component and an initial liquid phase comprising a liquid aqueous component, and wherein said first heat exchanger flowpath is separated from said second heat exchanger flowpath by an exchanger heat transfer surface in heat conductive communication with said first and second heat exchanger flowpaths; conveying a liquid phase portion of said heat transfer medium through said first heat exchanger flowpath while contacting said exchanger heat transfer surface with said heat transfer medium to raise said initial lower temperature of said heat transfer medium to a vaporization temperature and convert said liquid phase portion of said heat transfer medium to a vapor phase portion; entraining a solid particle medium within said hydrocarbon stream to form a fluidizable mixture; conveying said fluidizable mixture through said second heat exchanger flowpath while contacting said exchanger heat transfer surface with said fluidizable mixture to lower said initial temperature of said hydrocarbon stream to a gas hydrate formation temperature and convert a portion of said hydrocarbon stream to a plurality of solid gas hydrate particles; forming a gas hydrate slurry comprising said plurality of solid gas hydrate particles and a remaining portion of said initial liquid phase; and conveying said gas hydrate slurry through a transport pipeline.
- 2. The process of claim 1 further comprising contacting said exchanger heat transfer surface with said solid particle medium.
- 3. The process of claim 1 wherein said heat exchanger is submersed in a body of water.
- 4. The process of claim 1 wherein said hydrocarbon stream is production stream from an offshore well.
- 5. The process of claim 1 wherein said transport pipeline is submersed in a body of water.
- 6. The process of claim 5 wherein said transport pipeline extends from said heat exchanger at a lower depth in said body of water to a higher depth in said body of water.
- 7. The process of claim 6 wherein said gas hydrate slurry is conveyed through said transport pipeline from said lower depth to said higher depth thereby increasing the temperature of said gas hydrate slurry.
- 8. A gas transport process comprising:
providing a heat exchanger having a first heat exchanger flowpath for a heat transfer medium at an initial lower temperature and a second heat exchanger flowpath for a hydrocarbon stream at an initial higher temperature, wherein said hydrocarbon stream includes a gas phase comprising a gaseous hydrocarbon component and an initial liquid phase comprising a liquid aqueous component, and wherein said first heat exchanger flowpath has a first inlet and a first outlet and said second heat exchanger flowpath has a second inlet and a second outlet, and further wherein said first heat exchanger flowpath is separated from said second heat exchanger flowpath by an exchanger heat transfer surface in heat conductive communication with said first and second heat exchanger flowpaths; conveying a liquid phase portion of said heat transfer medium from said first inlet through said first heat exchanger flowpath toward said first outlet while contacting said exchanger heat transfer surface with said heat transfer medium to raise said initial lower temperature of said heat transfer medium to a vaporization temperature and convert said liquid phase portion of said heat transfer medium to a vapor phase portion; conveying said hydrocarbon stream from said second inlet through said second heat exchanger flowpath toward said second outlet while contacting said exchanger heat transfer surface with said hydrocarbon stream to lower said initial temperature of said hydrocarbon stream to a gas hydrate formation temperature and convert a portion of said hydrocarbon stream to a plurality of solid gas hydrate particles; forming a gas hydrate slurry comprising said plurality of solid gas hydrate particles and a remaining portion of said initial liquid phase; withdrawing said gas hydrate slurry from said second heat exchanger flowpath via said second outlet and conveying said gas hydrate slurry through a transport pipeline; providing a condenser having a condenser inlet, a condenser flowpath, and a condenser outlet, wherein said condenser flowpath is enclosed by a condenser heat transfer surface in heat conductive communication with said condenser flowpath; conveying said vapor phase portion of said heat transfer medium from said first outlet of said first heat exchanger flowpath into said condenser inlet through said condenser flowpath toward said condenser outlet while contacting said condenser heat transfer surface with said heat transfer medium to cool said heat transfer medium to a temperature below said vaporization temperature and convert said vapor phase portion of said heat transfer medium to said liquid phase portion; and conveying said liquid phase portion of said heat transfer medium from said condenser outlet to said first inlet of said first heat exchanger flowpath.
- 9. The process of claim 8 wherein said heat exchanger is submersed in a body of water.
- 10. The process of claim 8 wherein said hydrocarbon stream is production stream from an offshore well.
- 11. The process of claim 8 wherein said transport pipeline is submersed in a body of water.
- 12. The process of claim 11 wherein said transport pipeline extends from said heat exchanger at a lower depth in said body of water to a higher depth in said body of water.
- 13. The process of claim 12 wherein said gas hydrate slurry is conveyed through said transport pipeline from said lower depth to said higher depth thereby increasing the temperature of said gas hydrate slurry.
- 14. The process of claim 8 further comprising immersing said condenser heat transfer surface in a body of water having an ambient temperature substantially less than said vaporization temperature of said heat transfer medium.
- 15. The process of claim 8 wherein said condenser flowpath angles downwardly from said condenser inlet to said condenser outlet.
- 16. A gas transport process comprising:
providing a heat exchanger having a first heat exchanger flowpath for a heat transfer medium at an initial lower temperature and a second heat exchanger flowpath for a hydrocarbon stream at an initial higher temperature, wherein said hydrocarbon stream includes a gas phase comprising a gaseous hydrocarbon component and an initial liquid phase comprising a liquid aqueous component, and wherein said first heat exchanger flowpath has a first inlet and a first outlet and said second heat exchanger flowpath has a second inlet and a second outlet, and further wherein said first heat exchanger flowpath is separated from said second heat exchanger flowpath by an exchanger heat transfer surface in heat conductive communication with said first and second heat exchanger flowpaths; conveying a liquid phase portion of said heat transfer medium from said first inlet through said first heat exchanger flowpath toward said first outlet while contacting said exchanger heat transfer surface with said heat transfer medium to raise said initial lower temperature of said heat transfer medium to a vaporization temperature and convert said liquid phase portion of said heat transfer medium to a vapor phase portion; entraining a solid particle medium within said hydrocarbon stream to form a fluidizable mixture; conveying said fluidizable mixture through said second heat exchanger flowpath while contacting said exchanger heat transfer surface with said fluidizable mixture to lower said initial temperature of said hydrocarbon stream to a gas hydrate formation temperature and convert a portion of said hydrocarbon stream to a plurality of solid gas hydrate particles; forming a gas hydrate slurry comprising said plurality of solid gas hydrate particles and a remaining portion of said initial liquid phase; withdrawing said gas hydrate slurry from said second heat exchanger flowpath via said second outlet and conveying said gas hydrate slurry through a transport pipeline; providing a condenser having a condenser inlet, a condenser flowpath, and a condenser outlet, wherein said condenser flowpath is enclosed by a condenser heat transfer surface in heat conductive communication with said condenser flowpath; conveying said vapor phase portion of said heat transfer medium from said first outlet of said first heat exchanger flowpath into said condenser inlet through said condenser flowpath toward said condenser outlet while contacting said condenser heat transfer surface with said heat transfer medium to cool said heat transfer medium to a temperature below said vaporization temperature and convert said vapor phase portion of said heat transfer medium to said liquid phase portion; and conveying said liquid phase portion of said heat transfer medium from said condenser outlet to said first inlet of said first heat exchanger flowpath.
- 17. The process of claim 16 further comprising contacting said exchanger heat transfer surface with said solid particle medium.
- 18. The process of claim 16 wherein said heat exchanger is submersed in a body of water.
- 19. The process of claim 16 wherein said hydrocarbon stream is production stream from an offshore well.
- 20. The process of claim 16 wherein said transport pipeline is submersed in a body of water.
- 21. The process of claim 20 wherein said transport pipeline extends from said heat exchanger at a lower depth in said body of water to a higher depth in said body of water.
- 22. The process of claim 21 wherein said gas hydrate slurry is conveyed through said transport pipeline from said lower depth to said higher depth thereby increasing the temperature of said gas hydrate slurry.
- 23. The process of claim 16 further comprising immersing said condenser heat transfer surface in a body of water having an ambient temperature substantially less than said vaporization temperature of said heat transfer medium.
- 24. The process of claim 16 wherein said condenser flowpath angles downwardly from said condenser inlet to said condenser outlet.
Parent Case Info
[0001] This a continuation-in-part application of Ser. No. 09/476,297 filed on Dec. 30, 1999.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09476297 |
Dec 1999 |
US |
Child |
09877798 |
Jun 2001 |
US |