Claims
- 1. A system for recovering refrigeration and energy from a relatively high pressure air or an air component gas supplied to a letdown station having an output stream supplied to a relatively low pressure atmosphere comprising:heat exchanger means for receiving the pressurized air or air component gas supplied to the letdown station and for cooling the pressurized air or air component gas; first expander means responsive to the cooled pressurized gas at a first output of the heat exchanger means applied thereto for expanding and further cooling the pressurized gas and for supplying a first portion of the further cooled pressurized gas to said heat exchanger means for the cooling of the received pressurized gas and for liquefying a second portion of the further cooled pressurized gas; and means for supplying said further cooled first portion of said pressurized gas at a second output of said heat exchanger means to said relatively low pressure atmosphere to thereby recover refrigeration from said first portion without the use of a compressor driven by a power source external to the system.
- 2. The system of claim 1 wherein the heat exchanger means has an input for receiving said pressurized air or gas upstream said letdown station and an output for supplying said first portion downstream said letdown station and storage means for storing said second portion.
- 3. The system of claim 1 including separator means responsive to the expanded cooled gas for separating said first and second portions.
- 4. The system of claim 1 further including an air separation means and means for supplying a third portion of said liquefied gas to said air separation means for assisting in separating air into component gases.
- 5. The system of claim 1 wherein the pressurized gas is selected from the group consisting of air, nitrogen, argon, carbon monoxide and oxygen.
- 6. The system of claim 5 wherein the pressurized gas is air, further including adsorbing means for drying and removing carbon dioxide from the pressurized air and for supplying the dried air to said heat exchanger means.
- 7. The system of claim 6 including means for regenerating said adsorbing means with the first portion of said gas outputted from the heat exchanger means.
- 8. The system of claim 1 including means coupled to the expander means for generating power.
- 9. The system of claim 2 including compressor means coupled to the expander means for compressing at least one of the received gas applied to the heat exchanger means and supplied first portion.
- 10. The system of claim 1 further including means responsive to pressurized natural gas applied to an input thereto for cooling the applied natural gas and applying the cooled natural gas to said heat exchanger means for cooling said air or air component.
- 11. The system of claim 10 including means for dividing said pressurized natural gas into a first relatively large stream and a relatively smaller second stream, said heat exchanger means comprising cascaded heat exchangers, a first portion of the cascaded heat exchangers for successively cooling and liquefying the smaller second stream, second expander means for expanding and cooling the natural gas larger first stream at an output of a second portion of said heat exchangers and for applying the expanded cooled natural gas first larger stream to a third portion of said cascaded heat exchangers for cooling said natural gas second smaller steam, and means for applying the liquefied natural gas to the first portion of said cascaded heat exchangers for cooling the smaller second stream and for applying the pressurized air or air component gas to a fifth portion of said heat exchangers including the first portion of said cascaded heat exchangers for cooling said air or air component by said cooled natural gas.
- 12. The system of claim 11 including separation means for separating cold vapor from liquid in said liquefied air or air component gas, and means for applying the cold vapor to said fifth portion of heat exchangers for cooling said air or air component gas.
- 13. The system of claim 12 wherein the first expander means is for expanding and liquefying a portion of the air or air component at the output of a sixth portion of the cascaded heat exchangers, the means for separating cold vapor for separating cold vapor from the last mentioned liquefied portion and applying the cold vapor from the liquefied last mentioned portion to said fifth portion of heat exchangers.
- 14. The system of claim 13 including compressor means driven by said first expander means for compressing warmed air or air component gas output of said fifth portion of cascaded heat exchangers and for returning the compressed warmed air or air component gas to said lower pressure output stream.
- 15. The system of claim 11 including drying means for drying said natural gas prior to formation of said first and second streams and means for regenerating the dryer means with said larger first portion of natural gas after it is expanded by the second expander means and applied to said third portion of said heat exchangers.
- 16. The system of claim 11 including CO2 absorber means for removing CO2 from said natural gas smaller second stream prior to applying said smaller stream to said cascaded heat exchangers and means for regenerating the CO2 absorber means with said smaller second stream after it is passed through said first portion of cascaded heat exchangers in a direction in which it is cooled and then through the first portion of cascaded heat exchangers in a reverse direction in which it is warmed.
- 17. The system of claim 1 wherein the first expander means comprises a first expander and a second expander, the heat exchanger means comprising cascaded first, second and third heat exchangers, the pressurized air or air component gas being applied successively to said first, second and third heat exchangers in that order, the first expander for expanding and cooling said first portion at the output of the first heat exchanger and applying the expanded cooled gas successively to the second and first heat exchangers in that order for cooling a third portion of the gas applied to the first and second heat exchangers, the second expander for expanding and liquefying a fourth portion of said gas at the output of the cascaded first and second heat exchangers and including means for applying a cold vapor portion of the output of the second expander to said third, second and first cascaded heat exchangers in that order for cooling said pressurized gas applied to the cascaded heat exchangers and including throttling valve means for liquefying a fifth portion of said air or air component gas, said liquefied fourth and fifth portions forming said second portion.
- 18. The system of claim 17 including means for combining the expanded output of said second expander and output of said valve means for forming said second portion, and the means for applying the vapor including separator means for separating vapor from liquid in said second portion and for storing said separated liquid.
- 19. A system for recovering refrigeration and energy from a relatively high pressure air or an air component gas supplied to a letdown station having a lower pressure output stream comprising:heat exchanger means for receiving the pressurized air or air component gas supplied to the letdown station and for cooling the pressurized air or air component gas; first expander means responsive to the cooled pressurized gas at an output of the heat exchanger means applied thereto for expanding and further cooling the pressurized gas and for supplying a first portion of the further cooled pressurized gas to said heat exchanger means for the cooling of the received pressurized gas and for liquefying a second portion of the further cooled pressurized gas; and air separation means and means for supplying a third portion of said liquefied gas to said air separation means for assisting in separating air into component gases.
- 20. A system for recovering refrigeration and energy from a relatively high pressure air or an air component gas supplied to a letdown station having a lower pressure output stream comprising:heat exchanger means for receiving the pressurized air or air component gas supplied to the letdown station and for cooling the pressurized air or air component gas; first expander means responsive to the cooled pressurized gas at an output of the heat exchanger means applied thereto for expanding and further cooling the pressurized gas and for supplying a first portion of the further cooled pressurized gas to said heat exchanger means for the cooling of the received pressurized gas and for liquefying a second portion of the further cooled pressurized gas; and means responsive to pressurized natural gas applied to an input thereto for cooling the applied natural gas and applying the cooled natural gas to said heat exchanger means for cooling said air or air component.
- 21. A system for recovering refrigeration and energy from a relatively high pressure air or an air component gas supplied to a letdown station having a lower pressure output stream comprising:heat exchanger means for receiving the pressurized air or air component gas supplied to the letdown station and for cooling the pressurized air or air component gas; and first expander means responsive to the cooled pressurized gas at an output of the heat exchanger means applied thereto for expanding and further cooling the pressurized gas and for supplying a first portion of the further cooled pressurized gas to said heat exchanger means for the cooling of the received pressurized gas and for liquefying a second portion of the further cooled pressurized gas; the first expander means comprising a first expander and a second expander, the heat exchanger means comprising cascaded first, second and third heat exchangers, the pressurized air or air component gas being applied successively to said first, second and third heat exchangers in that order, the first expander for expanding and cooling said first portion at the output of the first heat exchanger and applying the expanded cooled gas successively to the second and first heat exchangers in that order for cooling a third portion of the gas applied to the first and second heat exchangers, the second expander for expanding and liquefying a fourth portion of said gas at the output of the cascaded first and second heat exchangers and including means for applying a cold vapor portion of the output of the second expander to said third, second and first cascaded heat exchangers in that order for cooling said pressurized gas applied to the cascaded heat exchangers and including throttling valve means for liquefying a fifth portion of said air or air component gas, said liquefied fourth and fifth portions forming said second portion.
CROSS REFERENCE TO RELATED APPLICATION
Of interest is copending commonly owned application Ser. No. 09/262,259 entitled Natural Gas Letdown Liquefaction System filed Mar. 4, 1999 in the name of Robert Wissolik.
US Referenced Citations (7)
Foreign Referenced Citations (4)
Number |
Date |
Country |
197 07 476 A1 |
Aug 1998 |
DE |
87303758 |
Apr 1987 |
EP |
93302587 |
Apr 1993 |
EP |
406241648 |
Sep 1994 |
JP |