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Evidence of a non-dimensional parameter controlling the flooding of PEMFC stack

机译:控制PEMFC堆栈泛洪的无量纲参数的证据

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Water management is a key issue to get satisfactory and stable Polymer exchange membrane fuel cell (PEMFC) performances. The work reported in the present paper focuses on the determination of the operational conditions when using PEMFC stack working with ambient air without extra humidification. The objectives are to reduce as much as possible the auxiliaries consumptions. As far as the reaction air blower is concerned, the specific goal of the present tests is to find the minimum air flow rate to feed the PEMFC stack in order to prevent flooding. Our particular interest concerns the control of a PEMFC stack to power a prototype vehicle for the Shell Eco Marathon race. Tests are then conducted on a wide range of stoichiometry, for different values of current and stack temperature using ambient air. Flooding is shown to depend on all these parameters. A water balance calculation is developed comparing the amount of water produced by the electrochemical reaction to the amount of water transported as vapour in the exit air flow minus the amount of water incoming the stack in the ambient air. A non-dimensional number called the Flooding Number is constructed. This balance is first considered in the ideal case with the theoretical flow rate of reactants and products. It is shown that the stack temperature and the stoichiometry are the main order parameters and that conditions of ambient air have only secondary effects on the water balance. In a second step, the Flooding Number is evaluated for all the experimental tests. A critical Flooding Number appears clearly delimiting the range of operational conditions for which stack flooding appears. This result allows us to control the air blower and the cooling fan during the runs at the Shell Eco Marathon 2007 race in order to reduce hydrogen consumption due to auxiliaries. The non-dimensional number exhibited in the present paper is believed to be relevant to stack flooding. It can be used for any PEMFC stack to make clear the limit of appearance of stack flooding.
机译:水管理是获得令人满意和稳定的聚合物交换膜燃料电池(PEMFC)性能的关键问题。本文报道的工作重点是在使用PEMFC烟囱处理环境空气而无需额外加湿的情况下确定操作条件。目标是尽可能减少辅助剂的消耗。就反应鼓风机而言,当前测试的特定目标是找到最小的空气流量以供PEMFC电池组使用,以防止溢流。我们特别感兴趣的是控制PEMFC电池组为Shell Eco Marathon竞赛提供原型车的动力。然后,使用环境空气,针对不同的电流和烟囱温度值,对各种化学计量比进行测试。已显示泛洪取决于所有这些参数。建立了水平衡计算,将通过电化学反应产生的水量与出口气流中作为蒸气运输的水量减去周围空气中进入烟囱的水量进行比较。构造一个称为“洪水编号”的无量纲编号。在理想情况下,首先应考虑反应物和产物的理论流量,以达到这种平衡。结果表明,烟囱温度和化学计量是主要的顺序参数,周围空气的状况仅对水平衡具有次要影响。在第二步中,将对所有实验测试评估“洪水编号”。出现一个严重的洪水编号,清楚地界定了出现堆叠洪水的操作条件范围。这一结果使我们能够在2007年壳牌生态马拉松比赛中控制鼓风机和冷却风扇,以减少助剂引起的氢气消耗。据信,本文中显示的无量纲数字与烟囱泛滥有关。它可用于任何PEMFC堆栈,以清除堆栈溢出的外观限制。

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