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Analysis of Influence Factors of Underwater Motor Temperature Field Based on Magneto-thermal-flux Coupling

机译:基于磁热通量耦合的水下电机温度场影响因素分析

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The computation domain of the temperature field of submersible motor is numerically solved using the finite volume method (FVM). Firstly, the change law of the loss is obtained by loss calculation. The loss heat source analysis result is applied as the boundary condition using the method of magneto-thermal-flux coupling. Then, based on the inlet temperature variation which is obtained according to the temperature drop between inlet and outlet, the influence of inlet temperature and inlet velocity variation on the motor temperature is analyzed. The absolute error between simulation results and test results is 5%. The importance of temperature analysis of the motor considering the change of inlet temperature is explained by experiments. The temperature distribution of the motor is obtained under the condition of local variation of internal flow field based on the above results of analysis and experiments, which show that the motor temperature is obviously reduced by increasing the number of flow paths. The results obtained in this paper can provide support for the optimization of the circulatory system.
机译:潜水电机温度场的计算域是使用有限体积法(FVM)进行数值求解的。首先,通过损失计算获得损失的变化规律。利用磁热通量耦合的方法将损失热源分析结果作为边界条件。然后,基于根据入口和出口之间的温度降获得的入口温度变化,分析入口温度和入口速度变化对电动机温度的影响。仿真结果与测试结果之间的绝对误差为5%。实验说明了考虑入口温度变化的电动机温度分析的重要性。基于上述分析和实验结果,在内部流场局部变化的条件下,获得了电动机的温度分布,表明通过增加流路数可以明显降低电动机的温度。本文获得的结果可为循环系统的优化提供支持。

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