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首页> 外文期刊>Journal of Cleaner Production >Cooling performance of nanofluid submerged vs. nanofluid circulated battery thermal management systems
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Cooling performance of nanofluid submerged vs. nanofluid circulated battery thermal management systems

机译:纳米流体浸没式与纳米流体循环电池热管理系统的冷却性能

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For a cleaner environment, the production of fossil fuel propelled transport vehicles need to reduce. Technological advances are aimed to manufacture cost-effective battery electric vehicles compared with the conventional one. An efficient battery cooling system is necessary for safer usage of electric cars during their life cycle. This paper presents two ways of arranging cooling components: liquid filled battery cooling systems (LfBS) and liquid circulated battery cooling systems (LcBS). The air conditioning unit of an electric vehicle has integrated with the battery cooling unit. Cooling performance of LfBS and LcBS arrangements presented for both water and nanofluid as cooling media at 2C and 4C discharge rates. The air required for LfBS cooling or LcBS cooling has supplied at two supply conditions: first, if the ambient temperature is around 35 degrees C and air-conditioning is 'OFF' in an electric vehicle. Second, air-conditioning is 'ON' and recirculated air from car cabin is available at 30 degrees C to supply it to the battery cooling system. The result shows the applicability of such battery systems for the safe operation of electric vehicles. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了更清洁的环境,需要减少化石燃料推动的运输车辆的产量。与传统的电动汽车相比,技术上的进步旨在制造具有成本效益的电池电动汽车。为了在电动汽车的整个生命周期中更安全地使用它们,高效的电池冷却系统必不可少。本文介绍了两种布置冷却组件的方式:液体填充电池冷却系统(LfBS)和液体循环电池冷却系统(LcBS)。电动汽车的空调单元已与电池冷却单元集成在一起。 LfBS和LcBS装置在2C和4C放电速率下对于水和纳米流体作为冷却介质的冷却性能。 LfBS冷却或LcBS冷却所需的空气在两种供应条件下供应:首先,如果环境温度约为35摄氏度,并且电动汽车的空调处于“关闭”状态。其次,空调处于“开启”状态,车厢中的再循环空气可在30摄氏度下提供给电池冷却系统。结果表明,这种电池系统对于电动汽车的安全运行具有适用性。 (C)2019 Elsevier Ltd.保留所有权利。

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