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A multi-timescale modeling methodology for PEMFC performance and durability in a virtual fuel cell car

机译:用于虚拟燃料电池汽车中PEMFC性能和耐久性的多时标建模方法

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The durability of polymer electrolyte membrane fuel cells (PEMFC) is governed by a nonlinear coupling between system demand, component behavior, and physicochemical degradation mechanisms, occurring on timescales from the sub-second to the thousand-hour. We present a simulation methodology for assessing performance and durability of a PEMFC under automotive driving cycles. The simulation framework consists of (a) a fuel cell car model converting velocity to cell power demand, (b) a 2D multiphysics cell model, (c) a flexible degradation library template that can accommodate physically-based component-wise degradation mechanisms, and (d) a time-upscaling methodology for extrapolating degradation during a representative load cycle to multiple cycles. The computational framework describes three different time scales, (1) sub-second timescale of electrochemistry, (2) minute-timescale of driving cycles, and (3) thousand-hour-time-scale of cell ageing. We demonstrate an exemplary PEMFC durability analysis due to membrane degradation under a highly transient loading of the New European Driving Cycle (NEDC). Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:聚合物电解质膜燃料电池(PEMFC)的耐久性受系统需求,组件行为和理化降解机理之间的非线性耦合的影响,时间范围从亚秒到数千小时不等。我们提出了一种模拟方法,用于评估汽车行驶周期下PEMFC的性能和耐久性。该模拟框架包括(a)将速度转换为电池功率需求的燃料电池汽车模型,(b)二维多物理场电池模型,(c)可以容纳基于物理的逐组件退化机制的灵活的退化库模板,以及(d)一种时间放大方法,用于将有代表性的负载循环中的降级推断为多个循环。该计算框架描述了三种不同的时标,(1)电化学的亚秒级时标,(2)行驶周期的分钟级,以及(3)细胞老化的千小时级。我们展示了在新欧洲行驶周期(NEDC)的高瞬态载荷下由于膜降解引起的PEMFC耐久性分析示例。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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