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Modeling thermal management of lithium-ion PNGV batteries

机译:锂离子PNGV电池的热管理建模

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Batteries were designed with the aid of a computer modeling program to study the requirements of the thermal control system for meeting the goals set by the Partnership for a New Generation of Vehicles(PNGV). The battery designs were based upon the lithium-ion cell composition designated Gen-2 in the US Department of Energy Advanced Technology Development Program. The worst-case cooling requirement that would occur during prolonged aggressive driving was estimated to be 250 W or about 5 W per cell for a 48-cell battery. Rapid heating of the battery from a very low startup temperature is more difficult than cooling during driving. A dielectric transformer fluid is superior to air for both heating and cooling the battery. A dedicated refrigeration system for cooling the battery coolant would be helpful in maintaining low temperature during driving. The use of ample insulation would effectively slow the battery temperature rise when parking the vehicle in warm weather. Operating the battery at 10°C during the first several years when the battery has excess power would extend the battery life.
机译:借助计算机建模程序设计电池,以研究热控制系统的要求,以实现“新一代车辆合作伙伴关系”(PNGV)设定的目标。电池设计基于美国能源部高级技术开发计划中指定为Gen-2的锂离子电池组成。对于48节电池,在长时间的激进驾驶过程中发生的最坏情况下的冷却需求估计为250 W或每节电池约5W。从极低的启动温度快速加热电池比在行驶过程中冷却更困难。介电变压器油在加热和冷却电池方面均优于空气。用于冷却电池冷却液的专用制冷系统将有助于在行驶过程中保持低温。在温暖的天气下停放车辆时,使用足够的绝缘材料可有效减慢电池温度的升高。在电池电量过剩的头几年内,如果在10°C的温度下操作电池,则会延长电池寿命。

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