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Elasto-thermoelectric non-linear, fully coupled, and dynamic finite element analysis of pulsed thermoelectrics

机译:脉冲热电材料的弹性 - 热电非线性,全耦合和动态有限元分析

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摘要

This paper presents a numerical study on the influence of pulsed electric signals applied to the overcooling of thermoelectric devices. To this end, an experimental setup taken from the literature and a commercial cell are simulated using a complete, specially developed research finite element code. The electro-thermal coupling is extended to include the elastic field, demonstrating that the increment of cooling can produce mechanical failure. Numerical results are developed and the variation of overcooling versus pulse gain and versus duration is validated towards a new analytical expression and the experimental data. The issue of optimal intensity at steady-state is also newly developed. Thermal and mechanical trends are presented using constant and variable (with temperature) material properties for a single thermoelement. While some of the first trends are similar to those of published works, others are different or directly new, all closer to those of the experiments. The mechanical results have not been thoroughly studied until recently. The three-dimensional finite element mesh includes non-thermoelectric materials that are fundamental for the current study. Distribution of stresses during steady and transient states are shown inside the thermoelement, for five components and for the combined Tresca stress. Concentrations at corners of the lower side appear close to the cold face. Due to these concentrations, 27-node isoparametric, quadratic brick elements are used. It is shown that the mechanical field is an important factor in the design of pulsed thermoelectrics, since for practical applications the stress levels are close or slightly above the admissible limits.
机译:本文提供了一个数值研究,研究了脉冲电信号对热电设备过冷的影响。为此,使用完整的,专门开发的研究有限元代码对取自文献和商业单元的实验装置进行了仿真。电热耦合被扩展为包括弹性场,这表明冷却的增加会产生机械故障。开发了数值结果,并针对新的分析表达式和实验数据验证了过冷对脉冲增益和对持续时间的变化。稳态下最佳强度的问题也得到了新的发展。使用单个热电偶的恒定和可变(随温度变化)材料属性来显示热和机械趋势。虽然一些最初的趋势与已发表的作品相似,但另一些则不同或直接新颖,都更接近于实验。直到最近,才对机械结果进行了彻底的研究。三维有限元网格包含非热电材料,这是当前研究的基础。热电元件内部显示了稳态和瞬态期间的应力分布,其中包括五个分量以及组合的Tresca应力。下侧角落的浓度似乎很靠近冷面。由于这些浓度,使用了27节点等参二次方砖单元。结果表明,机械场是脉冲热电设备设计的重要因素,因为在实际应用中,应力水平接近或略高于允许极限。

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