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Computationally Efficient Modeling of Electrical Machines With Cooling Jacket

机译:具有冷却夹套的电机的高效计算建模

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摘要

Modeling of electrical machines is a multiphysics problem. Depending on the phenomena of interest and the computational time constraint, this can be done at different levels of detail. In this article, the main approaches to model the thermal behavior of electrical machines with a liquid cooled casing around the stator (often referred to as cooling jacket) are analyzed and a novel approach is presented. The proposed method aims at creating computationally efficient 3-D multiphysics models of electrical machines with liquid cooled jacket. This model is based on the assumption of a fully developed flow in the cooling jacket which allows to scale the computational fluid dynamics (CFD) simulation to 1-D. The slot with a two layer concentrated winding and potting material is modeled using a composite material comprising of both the conductors and slot filler. Similarly, a unified material is used to model the end-windings. Experimental results on a traction machine for vehicle applications are presented showing good agreement with the simulations. Also, a comparison with a 3-D CFD is presented to verify the pressure drop in the pipe bend. Finally, the model is used to simulate a dynamic load cycle, which would be computationally extremely demanding with combined 3-D CFD and thermal FEA of the machine and its cooling.
机译:电机建模是一个多物理场问题。根据感兴趣的现象和计算时间的限制,可以在不同的细节级别上完成此操作。在本文中,分析了在带有围绕定子(通常称为冷却套)的液冷壳体的电机的热行为建模中的主要方法,并提出了一种新颖的方法。提出的方法旨在创建具有液体冷却套的电机的高效计算的3-D多物理场模型。该模型基于冷却套中充分展开的流动的假设,该流动允许将计算流体动力学(CFD)模拟缩放到1-D。使用包含导体和缝隙填充物的复合材料来模拟具有两层集中绕组和灌封材料的缝隙。同样,使用统一的材料对端部绕组建模。提出了用于车辆的牵引机上的实验结果,与模拟结果吻合良好。此外,与3-D CFD进行了比较,以验证弯管中的压降。最后,该模型用于模拟动态负载循环,在结合了机器的3-D CFD和热FEA以及其冷却后,这在计算上将极为苛刻。

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