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Analysis of relevant aspects of thermal and hydraulic modeling of electric machines. Application in an Open Self Ventilated machine

机译:电机热力和水力建模的相关方面的分析。在开放式自通风机中的应用

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Prediction of the thermal behavior of electric motors in the early design stage is crucial in any design process. The most popular prediction methods are analytical, and based on the lumped parameter model approach. These methods require experimental data in order to obtain accurate results, but this data is often not available. This paper deals with the problem of the lack of experimental data for an Open Self-Ventilated (OSV) Induction motor and reviews some of the most controversial parameters in thermal modeling, such as the bearings model and the axial conductivity of the lamination stack. Due to the nature of the OSV machine, through ventilation is also investigated, and a hydraulic model with improvements focused on rotational effects observation is presented. Moreover, the heat transfer in end spaces and ducts is studied, using dimensionless analysis correlations, along with focusing on new hydraulic phenomena, such as the development of the flow and the roughness effect. An implementation of a thermal circuit for an OSV machine that has good agreement with reference results is used to compare heat transfer coefficients used regularly for Totally Enclosed Fan Cooled (TEFC) enclosures. Finally, a sensitivity analysis is carried out on some parameters to determine their importance. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在设计的早期阶段,对电动机的热行为进行预测对于任何设计过程都至关重要。最受欢迎的预测方法是分析方法,并基于集总参数模型方法。这些方法需要实验数据才能获得准确的结果,但是这些数据通常不可用。本文解决了开放式自通风(OSV)感应电动机缺乏实验数据的问题,并回顾了热建模中一些最具争议的参数,例如轴承模型和叠片组的轴向电导率。由于OSV机器的特性,还对通气进行了研究,并提出了以旋转效应观察为重点的改进液压模型。此外,还使用无量纲分析相关性研究末端空间和管道中的传热,并关注新的水力现象,例如流动的发展和粗糙度的影响。 OSV机器的热回路的实现与参考结果具有良好的一致性,用于比较常规用于全封闭风扇冷却(TEFC)机柜的传热系数。最后,对某些参数进行敏感性分析以确定其重要性。 (C)2014 Elsevier Ltd.保留所有权利。

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