Contacting assembly of a bipolar plate and method for contacting a bipolar plate
US-2024136543-A1 · Apr 25, 2024 · US
US2025253368A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2025253368-A1 |
| Application number | US-202519187148-A |
| Country | US |
| Kind code | A1 |
| Filing date | Apr 23, 2025 |
| Priority date | Nov 21, 2022 |
| Publication date | Aug 7, 2025 |
| Grant date | — |
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A method for controlling a fuel cell device includes receiving a voltage measured at the time of power generation of the fuel cell device and determining whether the degradation level of the fuel cell device is normal based on a comparison of the voltage and a first threshold value that decreases with increasing operational amount of the fuel cell device and that corresponds to the operational amount of the fuel cell device at the measurement time of the voltage.
Opening claim text (preview).
What is claimed is: 1 . A method for controlling a fuel cell device comprising: receiving a voltage measured at a time of power generation of the fuel cell device; and determining whether a degradation level of the fuel cell device is normal based on a comparison of the voltage and a first threshold value that decreases with increasing operational amount of the fuel cell device and that corresponds to the operational amount of the fuel cell device at the measurement time of the voltage. 2 . The method for controlling a fuel cell device according to claim 1 , wherein if the voltage is greater than or equal to the first threshold value, it is determined that the degradation level of the fuel cell device is normal, and the fuel cell device is made to continue power generation, wherein if the voltage is less than the first threshold value and greater than or equal to a second threshold value that is less than the first threshold value, it is determined that the degradation level of the fuel cell device is abnormal, and the fuel cell device is made to continue power generation, and wherein if the voltage is less than the second threshold value, the fuel cell device is made to stop power generation. 3 . The method for controlling a fuel cell device according to claim 2 , wherein the first threshold value corresponding to the operational amount of the fuel cell device that is determined to be a lifetime of the fuel cell device is equal to the second threshold value or greater than the second threshold value. 4 . The method for controlling a fuel cell device according to claim 2 , wherein the second threshold value is constant regardless of the operational amount of the fuel cell device. 5 . The method for controlling a fuel cell device according to claim 2 , wherein if the voltage is less than the first threshold value and greater than or equal to the second threshold value, the fuel cell device is made to generate power under the same operating conditions as when the voltage is greater than or equal to the first threshold value. 6 . The method for controlling a fuel cell device according to claim 2 , wherein if the voltage is less than the first threshold value and greater than or equal to the second threshold value, at least one of a fuel gas utilization rate and an oxidant gas utilization rate is set to be the same as or higher than the utilization rate when the voltage is greater than or equal to the first threshold value, and the fuel cell device is made to generate power. 7 . The method for controlling a fuel cell device according to claim 1 , wherein if the voltage is greater than or equal to the first threshold value, it is determined that the degradation level of the fuel cell device is normal, and wherein if the voltage is less than the first threshold value, it is determined that the degradation level of the fuel cell device is abnormal, and the fuel cell device is made to continue power generation under the same operating conditions as when the voltage is greater than or equal to the first threshold value. 8 . The method for controlling a fuel cell device according to claim 1 , wherein if the voltage is greater than or equal to the first threshold value, it is determined that the degradation level of the fuel cell device is normal, and wherein if the voltage is less than the first threshold value, it is determined that the degradation level of the fuel cell device is abnormal, at least one of a fuel gas utilization rate and an oxidant gas utilization rate is set to be the same as or higher than the utilization rate when the voltage is greater than or equal to the first threshold value, and the fuel cell device is made to continue power generation. 9 . The method for controlling a fuel cell device according to claim 1 , wherein a determination result as to whether the degradation level of the fuel cell device is normal is notified to an external device. 10 . The method for controlling a fuel cell device according to claim 1 , wherein if it is determined that the degradation level of the fuel cell device is abnormal, estimation of a replacement time for the fuel cell device is revised, and the revised replacement time for the fuel cell device is notified to an external device. 11 . The method for controlling a fuel cell device according to claim 1 , wherein if it is determined that the degradation level of the fuel cell device is abnormal, estimation of a maintenance time for the fuel cell device is revised, and the revised maintenance time for the fuel cell device is notified to an external device. 12 . A control device comprising: a receiver that receives a voltage measured at a time of power generation of a fuel cell device; and a controller that determines whether a degradation level of the fuel cell device is normal based on a comparison of the voltage and a first threshold value that decreases with increasing operational amount of the fuel cell device and that corresponds to the operational amount of the fuel cell device at the measurement time of the voltage. 13 . A fuel cell system comprising: a fuel cell device; and the control device according to claim 12 .
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