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Steady-state Semi-empirical Model of a Single Proton Exchange Membrane Fuel Cell (PEMFC) at Varying Operating Conditions

机译:不同运行条件下单个质子交换膜燃料电池(PEMFC)的稳态半经验模型

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The purpose of this paper to develop a physically-based macroscopic steady-state model predicting the performances of a polymer electrolyte fuel cell (PEMFC) at various operating conditions. The model is mostly mechanistic: the equation for the V-1 curves holds 7 parameters, 6 of which have a physical significance. This work aims to quantify the main voltage losses (namely activation, ohmic and mass-transport) thanks to their respective sensitivity to the operating variables. The model parameters are here obtained by fitting a set of 16 experimental V-1 curves. First a full factorial plan of experiments is carried out on a single cell to characterize the influence of four factors: temperature, pressure, air relative humidity and stoichiometry. Polarization curves are measured by current steps; at the end of each step, a high-frequency electrochemical impedance spectroscopy (EIS) is achieved in order to extract the ohmic resistance. Cyclic voltammetries are also performed to measure hydrogen crossover. Then the whole experimental database constituted is used to parameterize the theoretical equation of the V-1 curve. The maximal relative error between data and fit is 8.2% and the average relative error is 1%. The prediction capability of the single cell model is finally evaluated on three polarization curves.
机译:本文的目的是开发一种物理基宏观稳态模型,其在各种操作条件下预测聚合物电解质燃料电池(PEMFC)的性能。该模型主要是机械方式:V-1曲线的等式容纳7个参数,其中6个参数具有物理意义。由于它们对操作变量的各自灵敏度,这项工作旨在量化主电压损耗(即激活,欧姆和大规模)。这里通过装配一组16个实验V-1曲线来获得模型参数。首先,在单个细胞上进行完整的实验计划,以表征四种因素的影响:温度,压力,空气相对湿度和化学计量。偏振曲线通过电流步骤测量;在每个步骤结束时,实现了高频电化学阻抗光谱(EIS)以提取欧姆电阻。还进行循环伏叠,以测量氢气交叉。然后,构成的整个实验数据库用于参数化V-1曲线的理论方程。数据和拟合之间的最大相对误差为8.2%,平均相对误差为1%。最终在三个偏振曲线上评估单电池模型的预测能力。

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