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Numerical simulation,parametric study and optimization of thermoelectric generators for self-cooling of devices

机译:用于设备自冷的热电发电机的数值模拟,参数研究和优化

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Thermoelectric generation is a promising technology which converts waste heat into electricity in an efficient and clean way. Thermoelectric application could utilize the heat from a device to power a thermoelectric generator (TEG) which in turn produces power that could run a cooling system. Such systems would be critical in transportation, remote area or other applications where system reliability is of a paramount importance. Thus, in this paper a detailed parametrical analysis and optimization of the geometrical and system parameters are made so as to provide guidelines for the design of self-cooling devices. A simple and accurate 2D numerical model is developed which facilitates a quick analysis of design variables. Numerical data is within a good agreement (within 6%) with existing experimental data. The effect of extender height (H_(ext)), fin base height (H_(fbase)), number of fins (N_(fin)) ranging from 10 mm to 50 mm, 2 mm to 12 mm, 24 to 64 respectively has been studied. In addition, the feasibility of using double and triple cascaded TEG system is investigated. An optimization algorithm to optimize system paramaters is implemented.
机译:热电发电是一种有前途的技术,可以高效,清洁地将废热转化为电能。热电应用可以利用设备产生的热量为热电发电机(TEG)供电,从而产生可运行冷却系统的电力。这样的系统在交通运输,偏远地区或其他应用中至关重要,在这些应用中,系统可靠性至关重要。因此,本文对几何参数和系统参数进行了详细的参数分析和优化,从而为自冷却装置的设计提供了指导。开发了一个简单而准确的二维数值模型,该模型有助于快速分析设计变量。数值数据与现有实验数据吻合良好(6%以内)。延伸器高度(H_(ext)),散热片基础高度(H_(fbase)),散热片数量(N_(fin))的影响范围分别为10毫米至50毫米,2毫米至12毫米,24到64被研究了。此外,还研究了使用双级联和三级联TEG系统的可行性。实现了优化系统参数的优化算法。

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