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Electrochemical modeling and performance evaluation of a new ammonia-based battery thermal management system for electric and hybrid electric vehicles

机译:电化学建模与电气和混合动力电动汽车电池热管理系统的电化学建模与性能评价

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The operating temperatures of lithium ion battery packs in electrical vehicles and hybrid electrical vehicles need to be maintained in an optimum range for better performance and longer battery life. This paper proposes a new battery pack cooling system that utilizes the low saturation temperature of the fuel in ammonia based future hybrid electric vehicles. In the proposed cooling system, the batteries are partially submerged in to the liquid ammonia, and the liquid ammonia cools the battery by absorbing the heat and evaporating and the ammonia vapor cools the part of the battery not covered by liquid ammonia. The relationships between the performance of the battery cooling system and the maximum temperature (and the temperature distribution) in the battery are investigated for practical applications. The effect of the length of the battery that is submerged in to the liquid ammonia on the thermal performance of battery is studied and evaluated. The present results show that the proposed ammonia based cooling system offers a unique opportunity to maintain the operating temperature of the battery in an optimum range for consecutive charging and discharging phases at a high rate of 7.5C. (C) 2017 Elsevier Ltd. All rights reserved.
机译:电气车辆和混合动力电动车辆中的锂离子电池组的操作温度需要保持在最佳范围内,以便更好的性能和更长的电池寿命。本文提出了一种新的电池组冷却系统,其利用氨基的未来混合电动车中的燃料的低饱和温度。在所提出的冷却系统中,电池部分地浸没在液氨上,液氨通过吸收热量并蒸发冷却电池,并且氨气蒸汽冷却未被液氨覆盖的电池的一部分。研究了电池的性能与电池中的最高温度(和温度分布)的关系进行了实际应用。研究了浸没在液氨上的电池长度对电池热性能的影响。本结果表明,所提出的基于氨的冷却系统提供了独特的机会,可以在最佳的范围内将电池的工作温度保持在连续的充电和放电相位,以高7.5℃。 (c)2017 Elsevier Ltd.保留所有权利。

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