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首页> 外文期刊>International Journal of Automotive Technology >Topology optimization of gas flow channel routes in an automotive fuel cell
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Topology optimization of gas flow channel routes in an automotive fuel cell

机译:汽车燃料电池中气流通道路径的拓扑优化

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An efficient topology optimization method for fluid-structure problems was developed in an effort to determine the optimum flow channel route in a fuel cell bipolar plate from first principles. This study describes the derivation and solution of new mathematical equations for topology optimization combining a density-based algorithm, the interpolation method of moving asymptotes (MMA), and the incompressible Navier-Stokes equation with a term representing the chemical reaction between hydrogen and the catalyst. The present method is based on the finite element method with a newly developed reaction rate equation. In this model, a topology variable of 0 represents viscous flow, whereas a value of 1 indicates porous flow. The flow velocity and pressure were obtained from the Navier-Stokes equation and constraints and element matrices for sensitivity analyses during the optimization. MMA was utilized to calculate the optimum flow routes in the design domain. The influence of the key design parameter q and the pressure drop on the optimum topology were also investigated. The channel topology became smoother with decreasing q, and the number of channels increased with increasing pressure drop.
机译:为了从第一原理确定燃料电池双极板中的最佳流动通道路线,开发了一种用于流体结构问题的有效拓扑优化方法。这项研究描述了基于密度的算法,移动渐近线(MMA)的插值方法以及不可压缩的Navier-Stokes方程的拓扑优化新数学方程的推导和求解,其中Navier-Stokes方程的术语表示氢与催化剂之间的化学反应。本方法基于具有新开发的反应速率方程的有限元方法。在此模型中,拓扑变量0表示粘性流,而值1表示多孔流。流速和压力是从Navier-Stokes方程以及约束和元素矩阵获得的,以便在优化过程中进行灵敏度分析。 MMA被用来计算设计领域的最佳流动路线。还研究了关键设计参数q和压降对最佳拓扑的影响。通道拓扑随着q的减小而变得更加平滑,通道的数量随着压降的增加而增加。

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