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Sensitivity analysis of factors influencing a heat pipe-based thermal management system for a battery module with cylindrical cells

机译:影响圆柱形电池电池模块热管热管理系统的因素的敏感性分析

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摘要

Structural parameters have a significant effect on the thermal performance of a battery thermal management system (BTMS). In the present study, a thermal management system based on heat pipes is proposed for a battery module with cylindrical cells. A computational fluid dynamics model is built for the BTMS and validated with experimental results. An orthogonal numerical test is conducted to obtain the sensitivity of various parameters, including the battery spacing, the thickness of conduction element, the circumference angle between battery and conduction element, and the height of conduction element on the thermal performance for the proposed BTMS. Results show that the height of conduction element has the most sensitive effect on the maximum temperature and temperature difference of battery module; the circumference angle between battery and conduction element is the second; the battery spacing and the thickness of conduction element has the minimal effect. The best thermal performance is obtained under the condition of 19 mm battery spacing, 4 mm conduction element thickness, 120 circumference angle and 60 mm conduction element height. Based on the optimal parameters, the maximum temperature and the temperature difference of battery module are 27.62 degrees C and 1.08 degrees C, respectively.
机译:结构参数对电池热管理系统(BTMS)的热性能具有显着影响。在本研究中,针对具有圆柱形电池的电池模块提出了一种基于热管的热管理系统。为BTMS构建了计算流体动力学模型并用实验结果验证。进行正交数值测试以获得各种参数的灵敏度,包括电池间隔,导电元件的厚度,电池之间的圆周角,以及导电元件的圆周角,以及所提出的BTMS的热性能的电阻元件的高度。结果表明,导通元件的高度对电池模块的最高温度和温度差具有最敏感的影响;电池和传导元件之间的圆周角是第二个;电池间隔和导电元件的厚度具有最小的效果。在19mm电池间距,4mm导电元件厚度,120周角和60mm导电元件高度的条件下获得最佳热性能。基于最佳参数,电池模块的最高温度和温度差异分别为27.62摄氏度和1.08摄氏度。

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