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Battery Thermal Characteristics Estimation Using Finite Element Method

机译:有限元法估算电池热特性

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In this study, an investigation of thermal characteristics was carried out at two stages namely, the experimental stage and the simulation and modeling stage. In the experimental stage, the battery consists of 1 cell with a capacity of 14Ah. At the experimental stage, the battery under investigation works at the discharge currents C1, C2, and C4, with natural convection studies in insulation and non-insulation systems. The assumptions used in this study are the battery used have experienced more than 10 cycles, the heat radiation from the battery is ignored, the parameters and thermal constants are considered constant. The ambient temperature range for operation is at 24°C - 28,5°C. Experimental results show that the battery system under insulation conditions has more stable thermal characteristics compared to non-insulation systems. As well as the results of the simulation stage 1 battery cell under conditions of insulation and non-insulation. In addition, estiomation were also made for the 10 battery insulation system. The temperature rise characteristic shows an exponential graph on all simulations performed. By evaluating the measurement values in the experimental and simulation stages, the results of the non-insulation conditions show an error for the C1 discharging current of 1,77%, C2 of 1,97%, and C4 of 0,38%. The results of insulation conditions show an error for the C1 emptying current of 1,10%, C2 of 0,53%, and C4 of 0,05%.
机译:在这项研究中,热特性的研究是在两个阶段进行的,即实验阶段和模拟与建模阶段。在实验阶段,电池由1个容量为14Ah的电池组成。在实验阶段,所研究的电池在放电电流C1,C2和C4下工作,并在绝缘和非绝缘系统中进行自然对流研究。本研究中使用的假设是所使用的电池经历了10个以上的循环,忽略了电池的散热,将参数和热常数视为恒定的。运行的环境温度范围为24°C-28.5°C。实验结果表明,与非绝缘系统相比,绝缘条件下的电池系统具有更稳定的热特性。以及在绝缘和非绝缘条件下模拟第1阶段电池的结果。此外,还对10个电池的绝缘系统进行了估算。温升特性在执行的所有模拟中均显示指数图。通过在实验和仿真阶段评估测量值,非绝缘条件的结果显示出C1放电电流为1.77%,C2为1.97%和C4为0.38%的误差。绝缘条件的结果表明,C1排空电流的误差为1,10%,C2为0.53%,C4为0.05%。

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