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Two-phase pressure drop response during load transients in a PEMFC

机译:PEMFC负载瞬变期间的两相压降响应

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Transient behavior of PEM fuel cells can be categorized into electrochemical, thermal and two-phase flows. Overshoot/undershoot behavior has been observed in electrochemical cell voltage during transients, and are attributed to the transition time required for saturation conditions to reestablish. Similar behavior has been reported in two-phase flow pressure drop overshoot/undershoot in a previous work by the authors. In this work, three different temperatures, five ramp rates and four amplitudes of load change were used to investigate the transient two-phase pressure drop behavior. The overshoot/undershoot behavior is observed predominantly at the lower temperature of 40 ℃, and is found to decrease at higher cell temperatures. There is a linear increase in the overshoot/undershoot behavior with increase in amplitude of load change. The overshoot/undershoot behavior was found to be independent of the ramp rates used to change the load current. The magnitude of overshoot in pressure drop was always larger than the magnitude of undershoot. The pressure drop required a longer time to return to steady state after an undershoot compared to the time required to return from an overshoot incident.
机译:PEM燃料电池的瞬态行为可以分为电化学,热和两相流。在瞬态期间的电化学电池电压中已观察到过冲/下冲行为,这归因于饱和条件重新建立所需的过渡时间。作者在先前的工作中已经报道了两相流压降过冲/过冲的类似行为。在这项工作中,使用三种不同的温度,五个斜率和四个负载变化幅度来研究瞬态两相压降行为。在40℃的较低温度下主要观察到过冲/下冲行为,而在较高的电池温度下则发现过冲/下冲行为会减小。随着负载变化幅度的增加,过冲/下冲行为呈线性增加。发现过冲/下冲行为与用于改变负载电流的斜坡速率无关。压降的过冲量总是大于下冲量。与从超调事件返回所需的时间相比,在下降后,压降需要更长的时间才能恢复到稳态。

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