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首页> 外文期刊>Journal of power sources >Geometry Optimization For Proton-exchange Membrane Fuel Cells With Sequential Quadratic Programming Method
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Geometry Optimization For Proton-exchange Membrane Fuel Cells With Sequential Quadratic Programming Method

机译:序列二次规划法优化质子交换膜燃料电池的几何

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Integration between COMSOL Multiphysics~(TM) and MATLAB~(TM) offers a useful option for the self-automated geometry optimization in proton-exchange membrane fuel cells (PEMFCS). It overcomes the difficulties of automatically re-generating high-quality computational meshes and subsequently running the simulations to evaluate the objective function values using commercial software in computational fuel cell dynamics-based designs. Geometry optimization studies of an air-breathing PEMFC searching for the optimum channel ratio at the anode and the optimum open ratio at the cathode, are undertaken. A sequential quadratic programming method is selected to deal with the constrained design problems, while the objective functions are evaluated by running the three-dimensional simulation script of COMSOL~(TM) under the MATLAB~(TM) environment. Simulation results show that for the air-breathing PEM fuel cell operated at 353 K and one standard atmosphere pressure, when the anode channel ratio is fixed at 10%, the optimum cathode open ratios are very similar for the cell operated at voltages of 0.7 and 0.4 V, namely, 49.8% for 0.7 V and 49.5% for 0.4 V. When the cathode open ratio is set at 80% with a cell voltage of 0.7 V, the optimum anode channel ratio is found to be 34.7%.
机译:COMSOL MultiphysicsTM和MATLABTM的集成为质子交换膜燃料电池(PEMFCS)中的自动几何优化提供了有用的选项。它克服了自动生成高质量计算网格并随后运行仿真以使用基于计算燃料电池动力学的设计中的商业软件评估目标函数值的困难。进行了空气呼吸型PEMFC的几何优化研究,以寻找阳极处的最佳通道比和阴极处的最佳开口率。选择了一种顺序二次编程方法来处理受约束的设计问题,同时通过在MATLAB〜(TM)环境下运行COMSOL〜(TM)的三维仿真脚本来评估目标函数。仿真结果表明,对于在353 K和一个标准大气压下运行的空气呼吸式PEM燃料电池,当阳极通道比固定为10%时,最佳的阴极开路比与在0.7和70伏电压下运行的电池非常相似。 0.4 V,即0.7 V的49.8%和0.4 V的49.5%。当电池电压为0.7 V时将阴极开路比设置为80%时,发现最佳阳极沟道比为34.7%。

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