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Numerical analysis of the effects of electrical and thermal configurations of thermoelectric modules in large-scale thermoelectric generators

机译:大型热电发电机中热电模块的电气和热配置影响的数值分析

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摘要

The need to reduce both energy consumption and greenhouse gas emissions has boosted the interest in using thermoelectric generators (TEGs) as waste heat energy harvesters. High-power TEGs are usually formed by an array of commercial thermoelectric modules (TEMs). Recent studies have analyzed the effects of using different types of electrical connections between TEMs in TEGs to produce electric power, but the effects of using different thermal configurations between TEMs have not been fully examined. Here, both electrical and thermal effects have been investigated using a numerical model developed with GT-SUITE software, which has been validated with laboratory data. TEGs with a number of TEMs between 1 and 100 distributed in different patterns along the exhaust pipe have been simulated under three engine regimes. For a given TEM geometrical pattern and engine regime, results prove the existence of an optimum number of TEMs, beyond which the total extracted power decreases. A mixed spatial distribution of TEMs generates more power than either the pure series or the pure parallel topologies. Finally, a methodology is proposed to choose an appropriate pattern of TEMs for a TEG installed in a system with variable regimes. This method is applied to a mid-size automotive diesel engine.
机译:减少能源消耗和温室气体排放的需求增加了人们对使用热电发电机(TEG)作为余热能源收集器的兴趣。大功率TEG通常由一系列商用热电模块(TEM)组成。最近的研究已经分析了在TEG中的TEM之间使用不同类型的电连接来产生电力的影响,但是尚未完全研究在TEM之间使用不同的热配置的影响。在这里,已经使用由GT-SUITE软件开发的数值模型研究了电效应和热效应,并已通过实验室数据进行了验证。已经在三种发动机状态下模拟了沿排气管以不同模式分布的许多TEM在1至100之间的TEG。对于给定的TEM几何图案和发动机状态,结果证明存在最佳数量的TEM,超过此数量总提取功率会降低。 TEM的混合空间分布比纯串联或纯并联拓扑产生更多的功率。最后,提出了一种方法来为安装在具有可变方案的系统中的TEG选择合适的TEM模式。该方法适用于中型汽车柴油发动机。

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