Fuel cell system, control method, vehicle, and readable storage medium
A technology of a fuel cell system and a control method, which is applied in the fields of readable storage media, vehicles, and fuel cell systems, and can solve problems such as unused residual value of reaction water, and achieve the effect of avoiding duplication
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Embodiment 1
[0057] Such as figure 1 As shown, according to an embodiment of the present invention, a fuel cell system is proposed, including: a fuel cell reaction device 100; a condenser 102, the inlet of the condenser 102 is connected to the exhaust port of the fuel cell reaction device 100; Liquid separator 104, gas-liquid separator 104 comprises inlet 1042, gas outlet 1044 and liquid outlet 1046, and the inlet 1042 of gas-liquid separator 104 is connected with the outlet of condenser 102; Liquid storage part 106, gas-liquid separator 104 The liquid outlet 1046 communicates with the liquid storage element 106 .
[0058] In this embodiment, the fuel cell system includes a fuel cell reaction device 100, a condenser 102, a gas-liquid separator 104, and a liquid storage member 106, wherein the two ends of the condenser 102 are connected to the fuel cell reaction device 100 and the gas-liquid separator respectively. 104 connected. The inlet of the condenser 102 communicates with the exhaus...
Embodiment 2
[0063] Such as figure 1 As shown, according to an embodiment of the present invention, on the basis of the above embodiment, further: the fuel cell system further includes: an exhaust member (not shown in the figure); a three-way valve 108, and the three-way valve 108 includes: The first port 1082 communicates with the inlet of the condenser 102; the second port 1084 communicates with the gas outlet 1044 of the gas-liquid separator; the third port 1086 communicates with the exhaust member.
[0064] In this embodiment, the fuel cell system includes a vent and a three-way valve 108 . The three-way valve 108 includes a first port 1082, a second port 1084 and a third port 1086, wherein the first port 1082 communicates with the inlet of the condenser 102, and the second port 1084 communicates with the gas outlet 1044 of the gas-liquid separator , the third port 1086 communicates with the exhaust.
[0065] Through the above method, after the reaction tail gas generated by the fuel...
Embodiment 3
[0068] Such as figure 1As shown, according to an embodiment of the present invention, on the basis of the above embodiment, further: the fuel cell system further includes: a first valve 110, the two ends of the first valve 110 are respectively connected to the liquid outlet of the gas-liquid separator 1046 is connected with the liquid storage part 106.
[0069] In this embodiment, the fuel cell system includes a first valve 110, the first valve 110 is arranged between the gas-liquid separator 104 and the liquid storage element 106, one end of the first valve 110 is connected to the liquid outlet 1046 of the gas-liquid separator Contiguously, the other end of the first valve 110 is connected to the liquid storage element 106 , wherein the conduction direction of the first valve 110 is from the liquid outlet 1046 of the gas-liquid separator to the liquid storage element 106 .
[0070] Through the above method, the flow direction of water between the gas-liquid separator 104 and...
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