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Numerical modelling of non-linear coupled thermo-electric problems: A comparative study

机译:非线性耦合热电问题的数值模拟:一项比较研究

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摘要

Purpose – The purpose of this paper is to access performance of existing computational techniques to model strongly non-linear coupled thermo-electric problems. Design/methodology/approach – A thermistor is studied as an example of a strongly non-linear diffusion problem. The temperature field and the current flow in the device are mutually coupled via ohmic heating and very rapid variations of electric conductivity with temperature and applied electric field, which makes the problem an ideal test case for the computational techniques. The finite volume fully coupled and fractional steps (splitting) approaches on a fixed computational grid are compared with a fully coupled front-fixing method. The algorithms’ input parameters are verified by comparison with published experiments. Findings – Itwas found that fully coupledmethods aremore effective for non-linear diffusion problems. The front fixing provides additional improvements in terms of accuracy and computational cost. Originality/value – This paper for the first time compares in detail advantages and implementation complications of each method being applied to the coupled thermo-electric problems. Particular attention is paid to conservation properties of the algorithms and accurate solutions in the transition region with rapid changes in material properties.
机译:目的–本文的目的是访问现有计算技术的性能,以对强非线性耦合热电问题进行建模。设计/方法/方法–研究了一个热敏电阻,作为一个强烈的非线性扩散问题的例子。设备中的温度场和电流通过欧姆加热以及电导率随温度和所施加电场的快速变化而相互耦合,这使该问题成为计算技术的理想测试案例。将固定计算网格上的有限体积完全耦合和分数阶(分裂)方法与完全耦合的前固定方法进行了比较。通过与已发布的实验进行比较,验证了算法的输入参数。发现–发现完全耦合的方法对于非线性扩散问题更有效。前端固定在准确性和计算成本方面提供了其他改进。原创性/价值–本文首次详细比较了应用于耦合热电问题的每种方法的优点和实施复杂性。特别注意算法的守恒特性和材料特性快速变化的过渡区域中的精确解。

著录项

  • 作者

    Golosnoy I.O.; Sykulski J.K.;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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