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Analysis of Electromagnetic Force Distribution on End Winding of Electrical Submersible Motor During Starting Transient Operation

机译:潜水电机启动瞬态运行时端部绕组上的电磁力分布分析

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摘要

Generally, an electrical submersible motor generates a current with high magnitude and long interval during starting transient operation. This paper aims to analyze the electromagnetic forces on the stator end windings of an electrical submersible motor during the starting transient operation by a 3-D finite element method (FEM). A 3-D model was conducted and some complex support structures in the end regions were simplified. Then we analyzed the electromagnetic field in the end region according to the governing equations and the boundary conditions. The analysis shows that the forces on the outer layer especially in 1st and 5th coil are larger than those on the other parts. Furthermore, the force distributions on the coils in the same phase belt are different and the force distribution in each segment varies with the position and the direction. Finally, the analysis of stresses indicates that the stresses in a coil end are not small but within the yield strength of the copper coils.
机译:通常,潜水式电动机在启动瞬态操作期间会产生高强度和长间隔的电流。本文旨在通过3-D有限元方法(FEM)分析潜水电启动的定子端绕组上的电磁力。进行了3-D模型,并简化了端部区域中的一些复杂支撑结构。然后根据控制方程和边界条件分析了端部区域的电磁场。分析表明,外层上的力,特别是第一和第五线圈中的力要大于其他部分。此外,同一相带中的线圈上的力分布是不同的,并且每个段中的力分布都随位置和方向而变化。最后,应力分析表明,线圈端部的应力不小,但在铜线圈的屈服强度之内。

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