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Experimental Investigation of Heat Transfer Characteristics of Battery Management System and Electronic Control Unit of Neighborhood Electric Vehicle

机译:邻域电动汽车电池管理系统和电子控制单元传热特性的实验研究

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The increased need for mobility has necessitated a tremendous growth in transportation industry. The consumption of oil has increased many-fold leading to rapid deterioration of fossil fuel resources and increased greenhouse gas emissions. This has led to the finding alternative source of energy for vehicles in terms of battery based electric vehicles. Although electric vehicles are promising option for transportation, many issues like specific power, cost, vehicle range, battery thermal management etc. needs to be resolved efficiently in order to compete with internal combustion engine based vehicles. In this paper, an experimental study has been carried out to investigate the heat transfer characteristics of battery thermal management system and electronic control unit of neighborhood electric vehicle. The temperatures are measured at critical locations with varying velocity and varying altitude.
机译:对机动性的日益增长的需求使得交通运输行业需要巨大的发展。石油消耗增加了许多倍,导致化石燃料资源迅速恶化,温室气体排放量增加。这导致在基于电池的电动车辆方面寻找用于车辆的替代能源。尽管电动车辆是有前途的运输选择,但仍需要有效解决许多问题,例如比功率,成本,车辆续航里程,电池热管理等,以便与基于内燃机的车辆竞争。本文通过实验研究了邻域电动汽车的电池热管理系统和电子控制单元的传热特性。在关键位置以不同的速度和不同的高度测量温度。

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