Overpressure protection device for fuel cell and control method
An overvoltage protection device and fuel cell technology, which is applied in fuel cells, circuits, electrical components, etc., can solve problems such as the inability to meet the coupling of cathode and anode pressure differences, achieve balance between cathode and anode pressure differences, and improve safety and stability , to achieve the effect of overvoltage protection
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Embodiment 1
[0065] like figure 1 As shown, the fuel cell overvoltage protection device of this embodiment includes a normally open first solenoid valve 1 , a first pressure detection module 2 and a control module 3 .
[0066] Both the first electromagnetic valve 1 and the first pressure detection module 2 are arranged on the anode main circuit of the fuel cell;
[0067] The control module 3 is electrically connected with the first solenoid valve 1 and the first pressure detection module 2 respectively.
[0068] Wherein, when the fuel cell is in normal operation, the first solenoid valve is in a closed state;
[0069] The first pressure detection module 2 is used to detect the first pressure value of the anode side of the fuel cell and send it to the control module 3;
[0070] The control module 3 is used to judge whether the first pressure value satisfies the first setting range, and if so, controls the first electromagnetic valve 1 to open intermittently or keep it open; if it exceeds ...
Embodiment 2
[0077] like figure 2 As shown, the fuel cell overvoltage protection device of this embodiment is a further improvement on Embodiment 1, specifically:
[0078] The overvoltage protection device also includes an anode intake control valve 4 and an anode exhaust control valve 5 .
[0079] Among them, the anode intake control valve and the anode exhaust control valve are normally closed electronic control valves;
[0080] The anode intake control valve 4 is set on the inlet branch of the anode main pipeline P1 of the fuel cell stack A, and the anode exhaust control valve 5 is set on the outlet branch of the anode main pipeline P1 of the fuel cell A.
[0081] When the fuel cell stack A is in normal operation, the anode intake control valve 4 is opened, and the anode exhaust control valve 5 is intermittently opened.
[0082] When the first pressure value satisfies the first setting range, the control module 3 is used to control the anode tailing control valve 5 to keep open or op...
Embodiment 3
[0107] The control method for the overvoltage protection of the fuel cell in this embodiment is realized by using the overvoltage protection device for the fuel cell in any one of the embodiments 1 or 2.
[0108] like image 3 As shown, the control method for the overvoltage protection of the fuel cell in this embodiment includes:
[0109] S101. Use the first pressure detection module to detect the first pressure value on the anode side of the fuel cell, and send it to the control module;
[0110] S102. Use the control module to judge whether the first pressure value satisfies the first setting range, and if so, control the first electromagnetic valve to open intermittently or keep it open; if it exceeds the first setting range, control the fuel cell to power off and shut down;
[0111] Wherein, when the fuel cell is powered off and shut down, the first electromagnetic valve is in an open state.
[0112] The control module controls the intermittent opening of the first elect...
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Abstract
Description
Claims
Application Information
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