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Sensorless relative humidity control in a fuel cell application

机译:燃料电池应用中的无传感器相对湿度控制

摘要

A technique for determining the relative humidity of the cathode input airflow to a fuel cell stack that eliminates the need for a dew-point sensor. The cathode input airflow is humidified by a water vapor transfer unit that uses water in the cathode exhaust gas. The technique employs an algorithm that determines the flow of water into the cathode inlet of the stack. In one embodiment, the algorithm determines the volume flow of water through the water vapor transfer unit using the Arrhenius equation, and then converts the water volume flow to a water mole flow. The algorithm then uses the water mole flow through the water vapor transfer unit and the water mole flow of ambient air to determine the water mole flow into the cathode inlet. The algorithm then uses the water mole flow into the cathode inlet to determine the relative humidity of the cathode airflow.
机译:用于确定到燃料电池堆的阴极输入气流的相对湿度的技术消除了对露点传感器的需求。阴极输入气流被水蒸气传输单元加湿,该水蒸气传输单元在阴极废气中使用水。该技术采用一种确定水流入电池堆阴极入口的算法。在一个实施例中,该算法使用阿伦尼乌斯方程确定通过水蒸气传输单元的水的体积流量,然后将水的体积流量转换为水的摩尔流量。然后,该算法使用通过水蒸气传输单元的水摩尔流量和环境空气的水摩尔流量来确定进入阴极入口的水摩尔流量。然后,该算法使用流入阴极入口的水摩尔流量来确定阴极气流的相对湿度。

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