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Distributed parameter model-based control of water activity and concentration of reactants in a polymer electrolyte membrane fuel cell

机译:基于分布参数模型的聚合物电解质膜燃料电池中水活度和反应物浓度的控制

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摘要

Water management is still a key challenge for optimal performance and durability of polymer electrolyte membrane (PEM) fuel cells. Water levels along the channel in a PEM fuel cell present important spatial variations that should be taken into account to avoid both local flooding and local drying. In this work, a decentralised model predictive control scheme is designed to maintain the water activity on both anode and cathode sides of the PEM at appropriate levels. The proposed strategy tackles the accumulation of liquid water on the surface of the catalyst layers, and the possibility of local drying, by controlling observed water activity spatial profiles. Classic PEM fuel cell issues like reactant starvation are also considered. High control performance is achieved. The strategy is applied to a validated distributed parameter PEM fuel cell model. Results show increased cell power density in comparison to non-spatial control strategies.
机译:对于聚合物电解质膜(PEM)燃料电池的最佳性能和耐用性,水管理仍然是关键的挑战。 PEM燃料电池中沿通道的水位存在重要的空间变化,应避免局部泛滥和局部干燥。在这项工作中,设计了一种分散模型预测控制方案,以将PEM阳极和阴极两侧的水活度保持在适当水平。所提出的策略通过控制观察到的水活度空间分布图来解决液态水在催化剂层表面上的积聚以及局部干燥的可能性。还考虑了经典的PEM燃料电池问题,例如反应物饥饿。实现了高控制性能。该策略被应用于经过验证的分布式参数PEM燃料电池模型。结果显示与非空间控制策略相比,细胞功率密度增加。

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