Transient Behavior Study of Thermoelectric Generators through an Electro-thermal Model Using SPICE

Min Chen, L. Rosendahl, I. Bach, T. Condra, J. Pedersen
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引用次数: 24

Abstract

A thermoelectric generator (TEG) usually works in dynamic operating conditions due to the time change, in real applications, of the electric load and hot or cold temperatures. Thus understanding transient thermal and electrical behavior of the device, besides the steady-state behavior, is important in order to investigate the global device performance. The major objective of this work is to describe the transient behavior of TEG operating in high temperature environments through a SPICE model based on an electrothermal analogy. The SPICE model presented is derived from a one dimensional (1-D) heat transfer differential equation. An important feature of the model is its ability to calculate the temperature profile taking the real temperature dependence of the materials properties into account. This feature is essential in simulating TEG exposed to a large temperature difference. In combination with considering the finite heat transfer rate at the interface between TEG and thermal ambient, the model is able to reflect the thermo-electric coupled multi-field system effect of TEG. A test rig is developed for verifying the proposed model. Commercially available TEG is tested with respect to stabilizing time under sharply changed electric load. The preliminary results of experiments and modeling are analyzed. It is expected that the model presented can assist, not only in the optimal design of TEG itself, but also in the evaluation of the whole energy system
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基于SPICE的电热模型研究热电发电机的瞬态行为
热电发电机(TEG)通常在动态运行条件下工作,由于时间的变化,在实际应用中,电力负荷和热或冷的温度。因此,除了了解器件的稳态行为外,了解器件的瞬态热和电行为对于研究器件的整体性能非常重要。本工作的主要目的是通过基于电热类比的SPICE模型描述高温环境下TEG的瞬态行为。所提出的SPICE模型是由一维(1-D)传热微分方程导出的。该模型的一个重要特征是它能够计算温度分布,同时考虑到材料性能对实际温度的依赖。这个特性对于模拟暴露在大温差下的TEG是必不可少的。该模型考虑了TEG与热环境界面处有限的换热率,能够反映TEG的热电耦合多场系统效应。为了验证所提出的模型,开发了一个试验台。商用TEG在急剧变化的电力负荷下进行了稳定时间测试。对实验和建模的初步结果进行了分析。期望所建立的模型不仅可以为TEG本身的优化设计提供辅助,而且可以为整个能源系统的评价提供辅助
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