Computational fluid dynamics (CFD) analysis of thermoelectric generator for Regenerative Braking of the Hybrid Electric Vehicle

Md. Zilan Uddin Saif, Md Rasel Ahmed, Md. Abu Hanif, Farhan Tasnim, C. A. Hossain
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Abstract

Electric automobiles are a vital, dynamic, and quickly growing issue that touches on a range of topics, including increased energy demand and consumption, reduced environmental emissions, ensuring the use of renewable energy sources, and so more. Electric vehicles are also becoming more affordable. With the rising amount of research and development being done on electric cars on a worldwide basis, regenerative braking is becoming more and more significant. Using the vehicle's waste heat energy, it is hoped to extend the range of the battery, so providing an additional source of benefit. The goal of this publication is to propose of a Thermoelectric Generator (TEG) model based on an analysis of gas velocity pressure and turbulence kinetic energy at peak temperature to increase the operating range of hybrid electrical vehicles (HEVs) by storing the electrical power output in the battery. According to the regenerative braking system concept, kinetic energy from automobiles that was released into the environment as waste heat energy is converted into electricity using this method.
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混合动力汽车蓄热制动用热电发电机的计算流体动力学分析
电动汽车是一个重要的、动态的、快速增长的问题,涉及到一系列的主题,包括增加的能源需求和消耗、减少环境排放、确保使用可再生能源等等。电动汽车也变得越来越便宜。随着世界范围内对电动汽车的研究和开发越来越多,再生制动变得越来越重要。利用车辆的废热能源,希望能延长电池的使用范围,从而提供额外的效益来源。本出版物的目标是提出一种基于峰值温度下气体速度压力和湍流动能分析的热电发电机(TEG)模型,通过将输出的电力存储在电池中来增加混合动力电动汽车(hev)的运行范围。根据再生制动系统的概念,利用这种方法将汽车作为废热释放到环境中的动能转化为电能。
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