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A comprehensive analysis of delamination and thermoelectric performance of thermoelectric pn-junctions with temperature-dependent material properties

机译:基于温度特性的热电pn结的分层和热电性能的综合分析

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摘要

Thermoelectric (TE) materials are temperature-sensitive and have great application potential in the field of renewable energy. Considering the TE effects including Joule heating, Thomson effect, Fourier heat conduction, convection and radiation, this paper evaluates the power output, energy conversion efficiency and bending induced delamination of the TE pn-junction. The TE models with temperature-dependent and equivalent (constant) material properties are discussed respectively. The homotopy perturbation method and finite difference scheme are employed to solve the strong nonlinear thermal-electric-stress coupled field. Analytical solutions of temperature fields, power output and energy conversion efficiency are derived. The axial forces, interlaminar stresses and energy release rates are presented in numerical forms. It is found that the power output and energy conversion efficiency are underestimated under equivalent material properties. The figure of merit could not be used as a criterion to assess the TE performance of temperature-dependent TE devices. Taking the temperature dependence of material properties into account, the axial forces and interlaminar stresses in the TE pn-junction are much bigger than the equivalent model. The critical temperature of delamination propagation is greatly overestimated without considering the temperature dependence of material properties.
机译:热电(TE)材料对温度敏感,在可再生能源领域具有巨大的应用潜力。考虑到TE效应,包括焦耳热,Thomson效应,傅立叶导热,对流和辐射,本文评估了TE pn结的功率输出,能量转换效率和弯曲引起的分层。分别讨论了具有温度相关和等效(恒定)材料特性的TE模型。采用同伦摄动法和有限差分法求解强非线性热电应力耦合场。推导了温度场,功率输出和能量转换效率的解析解。轴向力,层间应力和能量释放速率以数值形式表示。发现在等效材料特性下,功率输出和能量转换效率被低估了。品质因数不能用作评估依赖温度的TE器件的TE性能的标准。考虑到材料性能的温度依赖性,TE pn结中的轴向力和层间应力比等效模型大得多。在不考虑材料特性对温度的依赖性的情况下,严重高估了分层传播的临界温度。

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  • 来源
    《Composite Structures》 |2019年第12期|111484.1-111484.12|共12页
  • 作者单位

    Harbin Inst Technol Sch Sci Shenzhen 518055 Guangdong Peoples R China;

    Harbin Inst Technol Sch Sci Shenzhen 518055 Guangdong Peoples R China|Western Sydney Univ Sch Comp Engn & Math Ctr Infrastruct Engn Penrith NSW 2751 Australia;

    Jinling Inst Technol Sch Architectural Engn Nanjing 211169 Jiangsu Peoples R China;

    Guangdong Mao Bridge Design & Res Inst Co Ltd Shenzhen 518110 Guangdong Peoples R China;

  • 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

    Thermoelectric materials; Power output; Energy conversion efficiency; Delamination;

    机译:热电材料;功率输出;能量转换效率;分层;

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