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Calculating the electromagnetic field and losses in the end region of large synchronous generators under different operating conditions with three-dimensional transient finite element analysis

机译:利用三维瞬态有限元分析计算大型同步发电机在不同工况下的端部区域的电磁场和损耗

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The significant losses in the end components due to the leakage magnetic field excited by the armature and field end windings can result in partial overheating and is an important consideration in the design of large synchronous generators. This paper describes an approach based on the three-dimensional (3D) transient finite element analysis (FEA) to determine the fields and losses in the generator end region. Taking the nonlinear/anisotropic properties of the stator core, as well as the slitting and stepping shape of core-end packets into consideration, the electromagnetic field and loss distribution in the end region is calculated. The method is validated by the agreement found between the temperatures predicted by the 3D stationary thermal FEA and the temperatures obtained from a physical measurement at various points in the generator. Then, the field and loss distributions in the end region under the open-circuit test condition, power factor lagging condition and leading condition are analyzed and compared using the proposed transient 3D FEA method.
机译:由于电枢和励磁端绕组激发的泄漏磁场而导致的端部组件的大量损耗会导致部分过热,这是大型同步发电机设计中的重要考虑因素。本文介绍了一种基于三维(3D)瞬态有限元分析(FEA)的方法,用于确定发电机端部区域中的磁场和损耗。考虑到定子铁心的非线性/各向异性特性,以及铁心端部包的纵切和阶梯形状,计算了端部区域的电磁场和损耗分布。该方法通过在3D固定式热FEA预测的温度与从发电机各个点处的物理测量获得的温度之间找到的一致性来验证。然后,使用提出的瞬态3D FEA方法分析并比较了开路测试条件,功率因数滞后条件和超前条件下端部区域的场强和损耗分布。

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