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首页> 外文期刊>Case Studies in Thermal Engineering >Performance of beeswax phase change material (PCM) and heat pipe as passive battery cooling system for electric vehicles
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Performance of beeswax phase change material (PCM) and heat pipe as passive battery cooling system for electric vehicles

机译:Beeswax相变材料(PCM)和热管作为电动汽车的无源电池冷却系统

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摘要

Increasing greenhouse gas (GHG) emissions in the atmosphere and the scarcity of fossil fuel sources have encouraged car manufacturers to develop more environmentally friendly electric vehicles (EVs). The technology advancements of EVs—those with battery systems in particular—have increased their travel distances. Therefore, increasing and maintaining the battery capacity is a key concern in the development of sustainable EVs. In this study, passive cooling systems were constructed with a heat pipe and phase change material (PCM), and their performances were investigated with battery simulators. The aim was to determine the effectiveness of the cooling system and to identify the optimal PCM (beeswax or Rubitherm RT 44 HC) for a temperature range of 25–55?°C. The use of a heat pipe could decrease the battery temperature by 26.62?°C under a 60?W heat load compared to the case without passive cooling system. Furthermore, the addition of RT 44 to a heat pipe resulted in a maximal temperature decrease of 33.42?°C. Thus, an RT 44 HC is more effective than beeswax because its melting temperature lies within the recommended range of the battery working temperature, and its latent heat allows the absorption of more heat compared to beeswax.
机译:在大气中增加温室气体(GHG)排放和化石燃料源的稀缺鼓励汽车制造商开发更多环保的电动车(EVS)。 EVS-of Tems的技术进步尤其具有电池系统 - 增加了他们的行程距离。因此,增加和维持电池容量是可持续发展系统发展的关键问题。在该研究中,用热管和相变材料(PCM)构造被动冷却系统,并用电池模拟器研究了它们的性能。目的是确定冷却系统的有效性,并鉴定最佳PCM(Beeswax或Rubitherm RT 44 HC),温度范围为25-55°C。与没有被动冷却系统的情况相比,使用热管的使用可以在60°W的热量负荷下将电池温度降低26.62Ω°C。此外,加入RT 44至热管导致最大温度降低33.42℃。因此,RT 44 HC比蜂蜡更有效,因为其熔化温度在于电池工作温度的推荐范围内,并且其潜热允许与Beeswax相比吸收更多的热量。

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