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首页> 外文期刊>Journal of Computational and Applied Mathematics >hp-FEM electromechanical transduction model of ionic polymer-metal composites
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hp-FEM electromechanical transduction model of ionic polymer-metal composites

机译:离子聚合物-金属复合材料的hp-FEM机电转换模型

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摘要

We propose a mathematically explicit model of ionic polymer-metal composite (IPMC) materials that consist of a coupled system of Poisson-Nernst-Planck-Euler equations, discretized by means of adaptive higher-order finite element methods (hp-FEM). We show that due to the transient character of the problem and different fields in terms of the locations of field gradients in the domain it is efficient to use adaptive algorithms that are capable of changing the mesh dynamically in time. We also show that due to large qualitative and quantitative differences between the four solution components - cation concentration, electric potential, x-directional displacement, and y-directional displacement - it is efficient to approximate them on different meshes using a novel adaptive multi-mesh hp-FEM. The study is accompanied with computations and comparisons of the adaptive multi-mesh hp-FEM with a number of adaptive FEM algorithms.
机译:我们提出了一种数学上显式的离子聚合物-金属复合材料(IPMC)材料模型,该模型由Poisson-Nernst-Planck-Euler方程的耦合系统组成,通过自适应高阶有限元方法(hp-FEM)离散化。我们表明,由于问题的瞬态特征以及根据域中场梯度的位置而不同的场,使用能够及时动态更改网格的自适应算法是有效的。我们还表明,由于四个溶液成分(阳离子浓度,电势,x方向位移和y方向位移)之间在质量和数量上存在很大差异,因此使用新颖的自适应多网格在不同网格上逼近它们是有效的hp-FEM。这项研究伴随着多种自适应FEM算法对自适应多网格hp-FEM的计算和比较。

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