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首页> 外文期刊>International Journal of Applied Engineering Research >Optimization of Fin Geometry of An Exhaust Heat Exchanger For Automotive Thermoelectric Generators
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Optimization of Fin Geometry of An Exhaust Heat Exchanger For Automotive Thermoelectric Generators

机译:汽车热电发电机排气热交换器的翅片几何形状优化

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摘要

Thermoelectric generators (TEGs) are the most eminent systems potentially identified to supply the increasing demand of electric power in contemporary passenger vehicles. These generators recover the site heat of exhaust or/and engine coolant into electricity via Seebeck thermoelectric effect. One of the most important challenges in developing efficient TEGs is the design and optimization of the heat exchanger(s). We describe a computational methodology developed to optimize internally-finned tubular exhaust heat exchangers for this purpose. The optimization process is demonstrated through studying a novel heat exchanger concept. The pressure drop, Nusselt Number, and convection heat transfer coefficient were calculated for a geometry matrix representing fin length varying from 0.001 m to 0.02 m, and fin number of 5 to 35 fins. Three different exhaust flow rate, corresponding to engine cruise condition, were used in the analysis. The optimization algorithm and code are explained in details.
机译:热电发电机(TEG)是潜在的最著名的系统,可以满足现代乘用车不断增长的电力需求。这些发电机通过塞贝克热电效应将废气或/和发动机冷却液的现场热量回收为电能。开发高效TEG的最重要挑战之一是热交换器的设计和优化。我们描述了为此目的而优化内部翅片管式排气热交换器的计算方法。通过研究新型换热器概念来演示优化过程。对于表示翅片长度在0.001 m至0.02 m之间变化且翅片数为5到35翅片的几何矩阵,计算了压降,努塞尔数和对流传热系数。分析中使用了三种不同的排气流速,分别对应于发动机巡航状态。详细说明了优化算法和代码。

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