Claims
- 1. A hydrogen gas fueling system comprising:
a multiple-stage compressor disposed in fluid communication with a hydrogen gas source, the compressor configured to cool hydrogen gas received at a stage of the compressor; a cascade section comprising at least two hydrogen gas storage zones disposed in fluid communication with the compressor at the outlet of the compressor; and a hydrogen gas dispensing section disposed in fluid communication with the cascade section.
- 2. The fueling system of claim 1, wherein the hydrogen gas source further comprises an electrochemical cell; a water source disposed in fluid communication with the electrochemical cell; and an electrical source disposed in electrical communication with the electrochemical cell.
- 3. The fueling system of claim 1, further comprising a bypass disposed between the compressor and the cascade section enabling the cascade section to be bypassed.
- 4. The fueling system of claim 1, wherein the cascade section comprises at least three hydrogen gas storage zones each comprising a pressure vessel configured to store compressed hydrogen at a pressure of about 2,000 psi to about 20,000 psi.
- 5. The fueling system of claim 1, wherein the hydrogen gas dispensing section comprises a first outlet configured to dispense hydrogen gas at a first pressure and a second outlet configured to dispense hydrogen gas at a second pressure, wherein the first pressure is less than the second pressure.
- 6. The fueling system of claim 5, wherein the first pressure is less than or equal to about 4,500 psi, and the second pressure is about 4,750 psi to about to about 6,250 psi.
- 7. The fueling system of claim 1, wherein the hydrogen gas dispensing section further comprises an outlet comprising a pressure adjuster configured to dispense hydrogen gas at a plurality of pressures.
- 8. The fueling system of claim 1, wherein the receiving section further comprises a suction tank and purge lines disposed in fluid communication with a hydrogen vent;
wherein the compressor is disposed in a compressor section disposed in fluid communication with the suction tank and the cascade section, the compressor section further comprising a heat exchanger disposed in fluid communication with the compressor; and wherein the cascade section further comprises a piping network at least providing selective fluid communication to a first storage zone, a second storage zone, and a third storage zone.
- 9. The fueling system of claim 8, wherein the hydrogen gas dispensing section further comprises a first outlet configured to dispense hydrogen gas at a pressure of less than or equal to about 4,500 psi, and a second outlet configured to dispense hydrogen gas at a pressure of about 4,750 psi to about to about 6,250 psi.
- 10. An electrolysis cell system, comprising:
a cell; a water source disposed in fluid communication with the cell; an electrical source disposed in electrical communication with the cell; and a cascade section disposed in fluid communication with the cell, the cascade section comprising a piping network configured to distribute fluid to a first storage zone, the first storage zone being in fluid communication with a second storage zone.
- 11. The electrolysis cell system of claim 10, wherein the cascade section further comprises a valve disposed at the piping network, the valve being controllable to provide a regulated flow through the piping network.
- 12. The electrolysis cell system of claim 10, further comprising a compressor section comprising a compressor and a heat exchanger disposed upstream of the cascade section and downstream of the cell.
- 13. The electrolysis cell system of claim 12, wherein the compressor comprises at least two stages.
- 14. A cascade system, comprising:
a first zone disposed in fluid communication with a compressor configured to receive a fluid stream from a hydrogen gas source, the fluid communication being such that the fluid stream is receivable from the compressor in response to a first control signal transmitted to a first controllable valve at the first zone; and a second zone disposed in fluid communication with the compressor and with the first zone, the fluid communication being such that a fluid stream is receivable from the compressor and from the first zone in response to a second control signal transmitted to a second controllable valve at the second zone.
- 15. The cascade system of claim 14, wherein the hydrogen gas source is an electrochemical cell.
- 16. The cascade system of claim 14, wherein the compressor, the first zone, and the second zone are configured to receive hydrogen gas.
- 17. The cascade system of claim 14, wherein the second zone further comprises a transportable storage vessel.
- 18. The cascade system of claim 14, wherein the first zone further comprises a first grouping of stationary storage vessels disposed in fluid communication with an external hydrogen source through an inlet valve, and with an outlet valve, the inlet valve and the outlet valve being controllable in response to a sensed system parameter;
wherein the second zone further comprises a second grouping of stationary storage vessels disposed in fluid communication with the outlet valve and with the compressor through the inlet valve; and further comprising a third zone a first grouping of transportable storage vessels disposed in fluid communication with the outlet valve and with the compressor through the inlet valve.
- 19. A method for storing and dispensing hydrogen gas, comprising:
compressing the hydrogen gas in a compressor; passing the compressed hydrogen gas to a cascade system comprising at least two zones in fluid communication with the compressor via an inlet valve; controlling the inlet valve based upon a first sensed system parameter; dispensing the hydrogen gas from the cascade section through an outlet valve; and controlling the outlet valve based upon a second sensed system parameter; wherein when a zone pressure in a first zone from which the hydrogen gas is being dispensed decreases to below a desired dispensing pressure, dispensing ceases from the first zone and commences from a second zone.
- 20. The method as in claim 19, wherein the compressor comprises multiple stages.
- 21. The method as in claim 19, further comprising filling the first zone while dispensing from the second zone.
- 22. A storage medium encoded with a machine readable computer program code, said code including instructions for causing a computer to implement a method for storing and dispensing hydrogen gas, the method comprising:
compressing the hydrogen gas in a compressor; passing the compressed hydrogen gas to a cascade system comprising at least two zones in fluid communication with the compressor via an inlet valve; controlling the inlet valve based upon a first sensed system parameter; dispensing the hydrogen gas from the cascade section through an outlet valve; and controlling the outlet valve based upon a second sensed system parameter; wherein when a zone pressure in a first zone from which the hydrogen gas is being dispensed decreases to below a desired dispensing pressure, dispensing ceases from the first zone and commences from a second zone.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This non-provisional application claims priority to U.S. Provisional Patent Application Serial No. 60/319,088 filed Jan. 22, 2002, and to U.S. Provisional Patent Application Serial No. 60/350,639 filed Jan. 22, 2002, both of which are incorporated herein in their entirety.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60319088 |
Jan 2002 |
US |
|
60350639 |
Jan 2002 |
US |