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Modelling transient heat conduction of granular materials by numerical manifold method

机译:用数值流形方法模拟粒状材料的瞬态热传导

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摘要

AbstractModelling heat conduction is of significant importance for evaluating temperature effects of granular materials. Since the randomness of the grain structure and the heat resistance characteristics of grain interfaces, to realistically modelling the heat conduction of granular materials, the heat interactive among these random-shaped grains should be correctly reflected. In this study, the numerical manifold method (NMM) is extended to model the transient heat conduction of granular materials. The random-shaped grain structure of granular materials is represented with Voronoi polygons. The heat interactive among grains is realistically simulated by inserting heat conductive cohesive elements between grain boundaries. Besides, an interfacial heat conductivity is defined for the cohesive element to better represent the heat conduct capacity of grain interfaces. As a result, the temperature jumps at grain interfaces are naturally captured due to the dual cover systems of the NMM, while the heat fluxes across the interfaces are assumed to be continuous. To validate the developed numerical method, a benchmark test is carried out. At last, effects of the grain characteristics and interfacial heat resistance on the temperature field as well as the effective heat conductivity (EHC) of a plane consists of granular material are investigated by the developed NMM.
机译: 摘要 对导热进行建模对于评估颗粒材料的温度效应非常重要。由于晶粒结构的随机性和晶粒界面的耐热特性,为了真实地模拟粒状材料的热传导,应该正确反映这些随机形状的晶粒之间的热相互作用。在这项研究中,扩展了数值流形方法(NMM)以模拟颗粒材料的瞬态热传导。粒状材料的随机形状的晶粒结构用Voronoi多边形表示。通过在晶粒边界之间插入导热内聚元素,现实地模拟了晶粒间的热相互作用。此外,为内聚元素定义了界面导热性,以更好地表示晶粒界面的导热能力。结果,由于NMM的双重覆盖系统,自然可以捕获晶粒界面处的温度跃迁,而跨界面的热通量则被认为是连续的。为了验证开发的数值方法,进行了基准测试。最后,通过开发的NMM研究了晶粒特性和界面耐热性对由粒状材料构成的平面的温度场以及有效导热率(EHC)的影响。

著录项

  • 来源
    《Engineering analysis with boundary elements》 |2018年第1期|45-55|共11页
  • 作者单位

    School of Civil Engineering, Wuhan University,Stake Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University;

    School of Civil Engineering, Wuhan University,Stake Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University;

    School of Civil Engineering, Wuhan University,Stake Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University;

    School of Civil Engineering, Wuhan University,Stake Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Numerical manifold method; Transient heat conduction; Cohesive element method; Granular materials; Effective heat conductivity;

    机译:数值流形方法;瞬态热传导;内聚元法;粒状材料;有效导热率;

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