IP Library Granted Patent US 9,464,761
Granted Patent B2
US 9,464,761 · App. 14/361,077 · Granted Oct 11, 2016

Gas supply method and gas supply apparatus

Inventors: Kenji Nagura (Takasago, JP); Hitoshi Takagi (Takasago, JP)
Assignee: Kobe Steel, Ltd.
F17C13/025F17C5/06F17C2205/0364F17C2221/012F17C2223/0123F17C2223/036F17C2225/0123F17C2225/036F17C2227/0164F17C2227/043F17C2250/01F17C2250/03F17C2250/043F17C2250/0439F17C2260/026F17C2265/065F17C2270/01F17C2270/0184Y02E60/321
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Quick Facts
Patent No.
US 9,464,761
App. No.
14/361,077
Granted
Oct 11, 2016
Kind
B2
Abstract

A gas-filling device ( 1 ) in which the design pressure of a pressure accumulator can be reduced while downsizing a compressor includes a compressor ( 4 ) and a pressure accumulator ( 5 ). In advance, a relationship between a filling pressure and a target flow rate is determined in accordance with the volume of a tank ( 3 ), the filling pressure is detected, and the target flow rate is determined. A flow rate of a gas to be supplied into the tank ( 3 ) is controlled according to the target flow rate. In a case where the target flow rate is equal to or less than a maximum discharge flow rate of the compressor ( 4 ), the gas is supplied to the tank ( 3 ) only from the compressor ( 4 ). In a case where the target flow rate is greater than the maximum discharge flow rate, the gas is supplied to the tank ( 3 ) from the compressor ( 4 ) and the pressure accumulator ( 5 ).

Claims (29)

1. A gas supply method of supplying a gas to a tank from a compressor and a pressure accumulator, connected in parallel to a gas inlet of the tank, the pressure accumulator being capable of storing the gas compressed by the compressor, comprising:

a flow rate determination step of determining a relationship between a filling pressure that serves as a pressure of the gas to be supplied to the tank and a target flow rate that serves as a target value of a flow rate of the gas to be supplied to the tank before supplying the gas to the tank from the compressor; and

a flow rate control step of detecting the filling pressure, determining the target flow rate, and controlling the flow rate of the gas to be supplied into the tank according to the target flow rate, wherein

in the flow rate control step, the gas is supplied to the tank only from the compressor in a case where the target flow rate is equal to or less than a maximum discharge flow rate of the compressor, and the gas is supplied to the tank from the compressor and the pressure accumulator in a case where the target flow rate is greater than the maximum discharge flow rate.

2. The gas supply method according to claim 1 , wherein

in a case where the target flow rate is greater than the maximum discharge flow rate, a flow rate of the gas to be supplied to the tank from the compressor is fixed and a flow rate of the gas to be supplied to the tank from the pressure accumulator is regulated, so that the total flow rate of the gas to be supplied to the tank matches with the target flow rate.

3. A gas supply apparatus for supplying a gas to a tank, comprising:

a volume-controllable compressor that compresses the gas to be supplied to the tank;

a pressure accumulator connected, in parallel with the compressor, to a gas inlet of the tank, the pressure accumulator being capable of storing the gas compressed by the compressor;

a pressure accumulator control valve that regulates a flow rate of the gas flowing out from the pressure accumulator;

a flowmeter that detects a flow rate of the gas to be supplied to the tank;

a filling pressure meter that detects a pressure of the gas to be supplied to the tank; and

a controller that controls the volume of the compressor and an opening degree of the pressure accumulator control valve, wherein

the controller determines a relationship between a filling pressure that serves as a pressure of the gas to be supplied to the tank and a target flow rate that serves as a target value of a flow rate of the gas to be supplied to the tank before supplying the gas to the tank from the compressor, determines the target flow rate based on the pressure detected by the filling pressure meter, closes the pressure accumulator control valve and supplies the gas to the tank only from the compressor in a case where the target flow rate is equal to or less than a maximum discharge flow rate of the compressor, and opens the pressure accumulator control valve and supplies the gas to the tank from the compressor and the pressure accumulator in a case where the target flow rate is greater than the maximum discharge flow rate.

4. The gas supply apparatus according to claim 3 , wherein

the compressor has a return line that provides communication between the discharge side and the suction side,

a volume regulating valve whose opening degree is regulatable is provided in the return line, and

the target flow rate having reached the maximum discharge flow rate of the compressor is determined by the volume regulating valve being totally closed.

5. The gas supply apparatus according to claim 3 , wherein

the rotation number of the compressor is controllable, and

the fact that the target flow rate reaches the maximum discharge flow rate of the compressor is determined by the fact that the rotation number becomes the maximum rotation number.

6. The gas supply apparatus according to claim 3 , comprising:

a plurality of pressure accumulators that includes the pressure accumulator, wherein

the pressure accumulators are arranged in parallel to each other and store gases at different pressures from each other, and

the controller supplies the gas to the tank from any one of the pressure accumulators in accordance with the pressure detected by the filling pressure meter.

7. The gas supply apparatus according to claim 3 , wherein

the compressor is a reciprocating compressor.

8. The gas supply apparatus according to claim 3 , having:

a nozzle that fits an in-vehicle tank mounted in a fuel cell-powered vehicle.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S ADDRESS PREVIOUSLY RECORDED ON REEL 032975 FRAME 0011. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 9, 2014
From: NAGURA, KENJI; TAKAGI, HITOSHI
To: KABUSHIKI KAISHA KOBE SEIKO SHO (KOBE STEEL, LTD.)
Reel/Frame 033106/0675 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 28, 2014
From: NAGURA, KENJI; TAKAGI, HITOSHI
To: KABUSHIKI KAISHA KOBE SEIKO SHO (KOBE STEEL, LTD.)
Reel/Frame 032975/0011 →
Priority Claims (1)
JP 2011-278635 · Dec 20, 2011 · national
Continuity (1)
Related Publication 20140332114A1 · Nov 13, 2014