Claims
- 1. A high pressure gas compressor unit adapted for use in combination with a high pressure gas storage receiver having gas stored under high pressure comprising:
- a housing containing a high pressure gas cylinder with a high pressure displacement piston reciprocal in the gas cylinder, the gas cylinder and displacement piston forming in part a gas compression chamber;
- a cylinder head enclosing the gas compression chamber, the head having a volumetric chamber communicating with the compression chamber and including a discharge passage communicating with the storage receiver with a valve unit in the discharge passage, wherein compressed gas is discharged from the volumetric chamber through the discharge passage under regulation of the valve unit when the pressure in the volumetric chamber exceeds the pressure of the gas in the storage receiver;
- a gas supply passage in the housing connectable to a gas supply from a supply source, the gas supply passage including gas entry ports to the high pressure gas cylinder that are exposed only when the displacement piston is proximate bottom dead center, wherein the gas supply passage periodically communicates with the gas compression chamber and volumetric chamber, wherein the gas supply delivers a charge of supply gas to the compression chamber for compression on displacement of the displacement piston;
- a high pressure gas supply passage in the housing communicating with the compression chamber and volumetric chamber and communicating with the storage receiver, the supply passage including a control valve means for temperature controlled metering of high pressure gas to the compression chamber for a controlled period before compression commences, and to the volumetric chamber for a controlled period during compression, wherein the metered high pressure gas is expanded and mixes with the charge of supply gas reducing the temperature of the charge of supply gas prior to and during compression of the mixed gas by the displacement piston, wherein the gas discharged to the storage receiver is reduced in temperature; and,
- sensor control means for sensing the temperature of the gas discharged to the storage receiver and controlling the timing and duration of the control valve means for reducing the temperature of the gas discharged to the storage receiver.
- 2. The compressor unit of claim 1 in combination with an external gas expander wherein the high pressure gas from the storage receiver is partially expanded in the expander before delivery to the high pressure gas supply passage in the compressor unit.
- 3. The compressor unit of claim 1 in combination with an intercooler wherein the discharge passage of the compressor unit is connected to the intercooler and the intercooler is connected to the storage receiver wherein discharged gas from the compressor unit is cooled before supply to the storage receiver.
- 4. The compressor unit of claim 1 wherein the high pressure gas supply passage discharges into the volumetric chamber and the control valve means comprises an electronically actuated poppet valve in the high pressure gas supply passage.
- 5. The compressor unit of claim 4 wherein the electronically controlled poppet valve includes a control module having a temperature sensor for sensing the discharge temperature of gas in the compressor unit and a timing sensor to sense the cycle of operation of the compressor unit wherein the controller operates the poppet valve for optimum timed admission of expansion gas to the volumetric chamber.
- 6. The gas compressor unit of claim 1 wherein the displacement piston is a stepped piston having a large diameter segment and a small diameter segment.
- 7. The compressor unit of claim 6 wherein the large diameter segment reciprocates in a large diameter cylinder and the gas supply passage is connected to the large diameter cylinder wherein the large diameter segment of the piston and the large diameter cylinder form a low pressure chamber for precompression of supply gas.
- 8. The compressor unit of claim 7 wherein the low pressure chamber communicates with the gas compression chamber for discharge of pressurized supply gas from the large diameter chamber to the compression chamber on displacement of the piston during its compression stroke.
- 9. The gas compressor unit of claim 8 wherein the large diameter chamber has the gas supply intake connected to the gas supply passage with an automatic valve in the gas supply passage, and, a low pressure discharge passage with an automatic valve in the low pressure discharge passage wherein gas enters the large diameter chamber through the intake passage on the suction stroke and is discharged from the large diameter chamber through the low pressure discharge passage on the compression stroke.
Parent Case Info
This is a continuation, of application Ser. No. 08/222,661, filed 1 Apr. 1994, now abandoned.
US Referenced Citations (19)
Foreign Referenced Citations (2)
Number |
Date |
Country |
53-124354 |
Oct 1978 |
JPX |
402247469 |
Oct 1990 |
JPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
222661 |
Apr 1994 |
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