基于数值模拟的翅片式热电发电机换热器设计与性能研究

Patrick Cuyubamba, Joel Asto-Evangelista, Jean R. Almerco-Ataucusi, Yadhira S. Valenzuela-Lino, Deyby Huamanchahua, N. Moggiano
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摘要

如今,气候变化是一个潜在的问题,因此ONU建议采用新的替代方案,通过清洁和可再生能源获得能源;这就是为什么TEG(热电发电机)被用于不同的行业和车辆,因为它们是一种回收和利用汽车尾气中的废热进行废热回收的系统;因此,这是一种可以提高能源效率的方法。本研究旨在通过数值模拟设计和研究基于翅片的热电发电机换热器的性能。通过这种方式,使用SolidWorks软件进行几何运算。在ANSYS Fluent中建立网格划分和边界条件,得到初始温度分布。此外,这些初始温度分布作为ANSYS Thermal-Electric的边界条件,可以得到半导体的最终温度分布、电压分布和电流分布。结果表明,在1秒的换热过程中,半导体的温度分布达到了80 mV的电压。液滴鳍基TEG的冷侧平均温度为36.85℃,热侧平均温度为163.3℃。最后得出结论:液滴翅片基TEG的半导体最终冷热侧温度分布比平行板翅片基TEG的均匀性更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Performance Study of the Heat Exchanger of a Fin-Based Thermoelectric Generator via Numerical Simulations
Climate change is a latent concern nowadays, so the ONU proposed to adopt new alternatives for obtaining energy through clean and renewable energies; that is why the TEG (Thermoelectric Generator) have been used in different industries and vehicles as they are a system that recovers and uses the waste heat from automobile exhaust gases for waste heat recovery; therefore, it is a method that allows improving energy efficiency. The present study aims to design and study the performance of the heat exchanger of a fin-based thermoelectric generator via numerical simulations. In this way, the geometry was performed using SolidWorks software. In addition, the meshing and boundary conditions were established in ANSYS Fluent to obtain the initial temperature distributions. Additionally, these initial temperature distributions serve as boundary conditions for ANSYS Thermal-Electric to obtain the semiconductor’s final temperature distributions, voltage distributions, and electric current distributions. It was obtained as a result that the semiconductor’s temperature distributions reached a voltage of 80 mV in 1 second of heat transfer. Also, the droplets fin-base TEG had an average temperature of 36.85 °C on the cold side and 163.3 °C on the hot side. Finally, it was concluded that the semiconductor’s final temperature distributions of the hot and cold side for the droplets fin-base TEG presented higher uniformity than the parallel plate fin-base TEG.
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