新能源进展
新能源進展
신능원진전
Advances in New and Renewable Enengy
2014年
6期
471-475
,共5页
赵佳腾%饶中浩%刘新健%刘臣臻%霍宇涛%王庆超
趙佳騰%饒中浩%劉新健%劉臣臻%霍宇濤%王慶超
조가등%요중호%류신건%류신진%곽우도%왕경초
电池热管理%往复%非均匀产热%局部温差
電池熱管理%往複%非均勻產熱%跼部溫差
전지열관리%왕복%비균균산열%국부온차
battery thermal management%reciprocating flow%uneven heat production%local temperature difference
大功率锂离子动力电池具有较高的功率密度和能量密度,在纯电动汽车和混合动力汽车中具有很大的应用价值。本文采用数值模拟的方法,建立了大功率非均匀产热动力电池组三维模型,模拟分析了基于空气单向流动冷却和往复流动冷却的LiFePO4动力电池组(4×6)的散热性能。结果表明,对于大功率电池正负极产热不均匀的情况,为了降低电池模块的局部温差,电池采用正负极交叉式排列组合是必要的;随着入口风速的增大,角度大小对散热性能的影响增大;周期较长时的往复通风方式不利于减小电池组局部温差,甚至在长时间内会增加局部温差。
大功率鋰離子動力電池具有較高的功率密度和能量密度,在純電動汽車和混閤動力汽車中具有很大的應用價值。本文採用數值模擬的方法,建立瞭大功率非均勻產熱動力電池組三維模型,模擬分析瞭基于空氣單嚮流動冷卻和往複流動冷卻的LiFePO4動力電池組(4×6)的散熱性能。結果錶明,對于大功率電池正負極產熱不均勻的情況,為瞭降低電池模塊的跼部溫差,電池採用正負極交扠式排列組閤是必要的;隨著入口風速的增大,角度大小對散熱性能的影響增大;週期較長時的往複通風方式不利于減小電池組跼部溫差,甚至在長時間內會增加跼部溫差。
대공솔리리자동력전지구유교고적공솔밀도화능량밀도,재순전동기차화혼합동력기차중구유흔대적응용개치。본문채용수치모의적방법,건립료대공솔비균균산열동력전지조삼유모형,모의분석료기우공기단향류동냉각화왕복류동냉각적LiFePO4동력전지조(4×6)적산열성능。결과표명,대우대공솔전지정부겁산열불균균적정황,위료강저전지모괴적국부온차,전지채용정부겁교차식배렬조합시필요적;수착입구풍속적증대,각도대소대산열성능적영향증대;주기교장시적왕복통풍방식불리우감소전지조국부온차,심지재장시간내회증가국부온차。
Lithium ion battery has broad application prospect in EVs (Electric Vehicles) and HEVs (Hybrid Electric Vehicles) because of its high energy density and power density. The heat dissipation performance of high power LiFePO4 battery pack (4 × 6) based on unidirectional/reciprocating air flowing was investigated through 3D numerical simulation methods. The results showed that when the heat generation between the anode and the cathode was inhomogeneous, it was necessary to arrange anodes and cathodes crosswise in order to reduce local temperature difference of the battery pack. With the increase of entrance air speed, the effect of angle size on the heat dissipation performance of battery pack enlarged. When the period was long, reciprocating ventilation was not conducive to reducing the local temperature difference of the battery pack, even increased the local temperature difference to the contrary for a long time.