IP Library › Granted Patent US 10,367,213
Granted Patent B2
US 10,367,213 · App. 15/662,286 · Granted Jul 30, 2019

Method of controlling fuel cell system

Inventors: Shinya Watanabe (Wako, JP); Nobutaka Nakajima (Wako, JP); Yuji Matsumoto (Wako, JP)
Assignee: HONDA MOTOR CO., LTD.
H01M8/04768H01M8/04014H01M8/04029H01M8/04044H01M8/04067H01M2250/20Y02T90/32
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Quick Facts
Patent No.
US 10,367,213
App. No.
15/662,286
Granted
Jul 30, 2019
Kind
B2
Abstract

A method of controlling a fuel cell system includes circulating a coolant through a fuel cell circulation passage in which a fuel cell and a gas liquid separator are provided. A valve is controlled selectively to connect or disconnect the fuel cell circulation passage and an air conditioning equipment circulation passage in which an air conditioning mechanism is provided. The valve is maintained to connect the fuel cell circulation passage and the air conditioning equipment circulation passage to circulate the coolant through the air conditioning equipment circulation passage when it is determined that the coolant includes air bubbles more than or equal to the threshold amount, when the valve connects the fuel cell circulation passage and the air conditioning equipment circulation passage, and when a temperature of the fuel cell is higher than or equal to a threshold temperature even if the air conditioning mechanism stops.

Claims (27)

1. A method of controlling a fuel cell system including a fuel cell, comprising:

circulating a coolant through a fuel cell circulation passage in which the fuel cell and a gas liquid separator are provided;

controlling a valve selectively to connect or disconnect the fuel cell circulation passage and an air conditioning equipment circulation passage in which an air conditioning mechanism is provided;

determining whether the coolant includes air bubbles more than or equal to a threshold amount; and

maintaining the valve to connect the fuel cell circulation passage and the air conditioning equipment circulation passage to circulate the coolant through the air conditioning equipment circulation passage when it is determined that the coolant includes air bubbles more than or equal to the threshold amount, when the valve connects the fuel cell circulation passage and the air conditioning equipment circulation passage, and when a temperature of the fuel cell is higher than or equal to a threshold temperature even if the air conditioning mechanism stops.

2. The method according to claim 1 , wherein

a coolant pump is provided on the fuel cell circulation passage, and

when the number of revolutions of the coolant pump is larger than or equal to a predetermined value, it is determined that the coolant includes air bubbles more than or equal to the predetermined amount.

3. The method according to claim 1 , wherein

the fuel cell system further includes a coolant reservoir that is provided on the fuel cell circulation passage and used to adjust an amount of the coolant, and

when a liquid level in the coolant reservoir is lower than or equal to a predetermined lower-limit threshold, it is determined that the coolant includes air bubbles more than or equal to the threshold amount.

4. The method according to claim 1 , wherein

a coolant pump is provided on the fuel cell circulation passage, and

when a state in which the number of revolutions of the coolant pump is lower than or equal to a predetermined value continues for predetermined time, it is determined that air bubbles are removed.

5. The method according to claim 1 , wherein

when the air conditioning mechanism is stopped, a command to bring the air conditioning equipment circulation passage and the air conditioning mechanism into a disconnected state is issued.

6. The method according to claim 5 , wherein

when a temperature of the fuel cell falls below a predetermined temperature after it is determined that the coolant includes air bubbles more than or equal to the threshold amount, the command to bring the air conditioning equipment circulation passage and the air conditioning mechanism into the disconnected state by controlling the valve is issued.

7. The method according to claim 6 , wherein

when the command to cause the disconnected state is issued while an air bubble removal operation is being performed, the disconnected state is caused by controlling the valve after the removal operation ends.

8. The method according to claim 1 , wherein

a heat exchanger is provided on the fuel cell circulation passage to cool the coolant.

9. A method of controlling a fuel cell system including a fuel cell, comprising:

circulating a coolant through a fuel cell circulation passage in which the fuel cell and a gas liquid separator are provided;

controlling a valve selectively to connect or disconnect the fuel cell circulation passage and an air conditioning equipment circulation passage in which an air conditioning mechanism is provided;

determining whether the coolant includes air bubbles more than or equal to a threshold amount; and

maintaining the valve to connect the fuel cell circulation passage and the air conditioning equipment circulation passage to circulate the coolant through the air conditioning equipment circulation passage when it is determined that the coolant includes air bubbles more than or equal to the threshold amount, when the valve connects the fuel cell circulation passage and the air conditioning equipment circulation passage, and when a temperature of the fuel cell is higher than or equal to a threshold temperature even if a condition for issuing a command to disconnect the fuel cell circulation passage and the air conditioning equipment circulation passage is satisfied.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2017
From: WATANABE, SHINYA; NAKAJIMA, NOBUTAKA; MATSUMOTO, YUJI
To: HONDA MOTOR CO., LTD.
Reel/Frame 043331/0022 →
Priority Claims (1)
JP 2016-147929 · Jul 28, 2016 · national
Continuity (1)
Related Publication 20180034087A1 · Feb 1, 2018