Calculation of Roughness Effects in Cooling Channels for Thermal Conduction of an Air Cooled Electrical Excited Synchronous Machine

Hagen Spielmann, Joffre Nasr
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Abstract

The roughness of the laminated iron sheets in the cooling channel has an influence to the thermal conductance between air and iron package. In this paper the thermal behavior of an electrical excited synchronous machine with air cooling was simulated with an CFD program and a lumped parameter model. The results are compared to the measurement of a constructed machine. The machine is also used to get the values of roughness in the application. This measured values are recalculated to the equivalent sand corn roughness used in the simulation. The lumped parameter model is updated with a new simulation module to simulate the roughness of the sheets in the air flow channel. The necessity is shown in the results of a further paper where the correction parameter of the conductivity were to high. With the implemented roughness the lumped parameter model is verified to the measurement and CFD simulation. The results show a reduction of the necessary correction parameter in the lumped parameter model. In consequence the model calculation accuracy is raised.
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风冷电激同步电机热传导冷却通道粗糙度效应的计算
冷却通道内层压铁片的粗糙度对空气与铁包之间的热导率有影响。本文利用CFD程序和集总参数模型对空冷电励磁同步电机的热特性进行了数值模拟。将结果与已构造机器的测量结果进行比较。该机器还用于在应用中获得粗糙度值。将测量值重新计算为模拟中使用的等效砂粒粗糙度。将集总参数模型更新为新的仿真模块,以模拟气流通道中板材的粗糙度。在另一篇论文中,电导率校正参数过高的结果表明了这种必要性。利用实现的粗糙度对集总参数模型进行了实测和CFD仿真验证。结果表明,在集总参数模型中,必要的修正参数减少了。从而提高了模型的计算精度。
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