化工进展
化工進展
화공진전
CHEMICAL INDUSTRY AND ENGINEERING PROGRESS
2014年
10期
2608-2612
,共5页
电动汽车%锂离子电池%相变%材料%热管理%滥用条件
電動汽車%鋰離子電池%相變%材料%熱管理%濫用條件
전동기차%리리자전지%상변%재료%열관리%람용조건
electric vehicle%lithium-ion battery%phase change%material%PCM thermal management%abusive condition
针对一种使用相变材料(PCM)的新型电动汽车电池热管理系统,以计算流体动力学(CFD)为基础,研究该系统在正常工况和滥用工况下的冷却性能。以模块的最高温度和最大温差作为监控参数,通过对电池在高温环境及大电流放电等工况的模拟,发现与相同结构的空气冷却条件下的电池组相比,填充PCM能够保证电池组的最大温度不超过安全温度50℃,最大温差在5℃以内,可以明显改善电池组的温度场分布,使电池的容量得到充分的利用。此外,作为一个被动的冷却方式,PCM 热管理系统不需要提供额外的附加功率,能够很好的满足电池的工作要求。
針對一種使用相變材料(PCM)的新型電動汽車電池熱管理繫統,以計算流體動力學(CFD)為基礎,研究該繫統在正常工況和濫用工況下的冷卻性能。以模塊的最高溫度和最大溫差作為鑑控參數,通過對電池在高溫環境及大電流放電等工況的模擬,髮現與相同結構的空氣冷卻條件下的電池組相比,填充PCM能夠保證電池組的最大溫度不超過安全溫度50℃,最大溫差在5℃以內,可以明顯改善電池組的溫度場分佈,使電池的容量得到充分的利用。此外,作為一箇被動的冷卻方式,PCM 熱管理繫統不需要提供額外的附加功率,能夠很好的滿足電池的工作要求。
침대일충사용상변재료(PCM)적신형전동기차전지열관리계통,이계산류체동역학(CFD)위기출,연구해계통재정상공황화람용공황하적냉각성능。이모괴적최고온도화최대온차작위감공삼수,통과대전지재고온배경급대전류방전등공황적모의,발현여상동결구적공기냉각조건하적전지조상비,전충PCM능구보증전지조적최대온도불초과안전온도50℃,최대온차재5℃이내,가이명현개선전지조적온도장분포,사전지적용량득도충분적이용。차외,작위일개피동적냉각방식,PCM 열관리계통불수요제공액외적부가공솔,능구흔호적만족전지적공작요구。
A novel thermal management system for electric vehicle (EV) high-power lithium-ion pack that incorporates phase-change material (PCM) was proposed and investigated under the normal and stressful conditions. Based on ecomputational fluid dynamics (CFD),numerical simulations were perfomed under extreme conditions,such as high ambient temperature and high discharge rate,to analyze the thermal behavior of lithium-ion battery pack with a PCM thermal management system. Contrary to the lithium-ion pack without thermal management system for the same compact module and pack configuration,the temperature profile of the cells using PCM was obviously improved during abusive discharge,with a desired maximum temperature below 50℃ and temperature difference within 5℃ and full capacity utilized. In addition,the passive cooling system was able to meet the operating range requirements under these abusive conditions without additional external power.