Integrated electrochemical compressor and cascade storage method and system
View Patent ↗The present disclosure is directed to a compressed fuel storage system. The compressed fuel storage system may include an electrochemical compressor and one or more fuel dispensing units. The electrochemical compressor may be configured to compress a fuel source. Additionally, the compressed fuel storage system may include at least one low pressure compressed fuel reservoir fluidly connected to the electrochemical compressor and the fuel dispensing units and at least one high pressure compressed fuel reservoir fluidly connected to the electrochemical compressor and the fuel dispensing units.
1. A compressed fuel storage system comprising:
an electrochemical compressor configured to compress a fuel source;
at least one low pressure compressed fuel reservoir fluidly connected to the electrochemical compressor;
at least one high pressure compressed fuel reservoir fluidly connected to the electrochemical compressor;
a flow limiting valve configured to limit the rate of pressure change of the electrochemical compressor to an allowable rate of pressure change; and
a valve configured to close when the rate of pressure change of the electrochemical compressor exceeds the allowable rate of pressure change.
2. The compressed fuel storage system of claim 1 , further comprising at least one medium pressure compressed fuel reservoir fluidly connected to the electrochemical compressor.
3. The compressed fuel storage system of claim 2 , further comprising one or more fuel dispensing units fluidly connected to the medium pressure compressed fuel reservoir.
4. The compressed fuel storage system of claim 1 , further comprising one or more fuel dispensing units fluidly connected to the low pressure compressed fuel reservoir.
5. The compressed fuel storage system of claim 1 , wherein the flow limiting valve is further configured to limit the rate of pressure change of the electrochemical compressor to the allowable rate of pressure change when transitioning from the low pressure compressed fuel reservoir to the high pressure compressed fuel reservoir.
6. The compressed fuel storage system of claim 5 , wherein the allowable rate of pressure change is substantially equal to a maximum pressure change rate of the electrochemical compressor.
7. The compressed fuel storage system of claim 5 , further comprising a controller configured to regulate the flow limiting valve based on input from one or more pressure sensors.
8. The compressed fuel storage system of claim 7 , further including one or more control valves in communication with the controller, the control valves configured to open or close to selectively direct fuel to the low pressure compressed fuel reservoir and to the high pressure compressed fuel reservoir.
9. The compressed fuel storage system of claim 1 , wherein the flow limiting valve is further configured to limit the rate of pressure change of the electrochemical compressor to the allowable rate of pressure change when transitioning from the high pressure compressed fuel reservoir to the low pressure compressed fuel reservoir.
10. The compressed fuel storage system of claim 9 , wherein the allowable rate of pressure change is substantially equal to a maximum pressure change rate of the electrochemical compressor.
11. The compressed fuel storage system of claim 9 , further comprising a controller configured to regulate the flow limiting valve based on input from one or more pressure sensors.
12. The compressed fuel storage system of claim 11 , further including one or more control valves in communication with the controller, the control valves configured to open or close to selectively direct fuel to the low pressure compressed fuel reservoir and to the high pressure compressed fuel reservoir.
13. The compressed fuel storage system of claim 1 , wherein the fuel source includes at least one of hydrogen, natural gas, and propane.