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Analyzing the impact of press plate structure on the flux and loss distributions in the end region of large generators by transient 3-dimensional finite-element method with an improved core loss model

机译:用改进的铁损模型,通过瞬态三维有限元方法分析压板结构对大型发电机端部磁通和损耗分布的影响

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The strong leakage magnetic flux in the end region of large synchronous generators results in significant eddy currents in the end components which can possibly lead to overheating thus threatening the safe operation of large generators and is an essential issue at the design stage. The press plate is a major end component of large generators that fastens the stator end-core packets and shields the stator core back-iron from the intensive leakage flux. This paper describes a transient 3-dimensional (3D) finite-element analysis (FEA) based approach to calculate the magnetic field and loss distributions in the end region of large generators, and incorporates an enhanced laminated core model combining the impacts of anisotropic and nonlinear material properties, hysteresis effects, and the reaction of induced in-plane eddy currents on the magnetic field and loss distributions in the stator core. The method is validated by the agreement between the temperatures predicted by a 3D thermal FEA and the measured results. Then, the influences of different material properties and dimensions of the press plate on the magnetic flux and loss distributions in the end region are evaluated by the proposed 3D FEA.
机译:大型同步发电机端部区域的强漏磁通量会在端部组件中产生明显的涡流,这可能会导致过热,从而威胁到大型发电机的安全运行,并且在设计阶段是一个至关重要的问题。压板是大型发电机的主要端部组件,可固定定子端铁心包并屏蔽定子铁心铁,使其免于强烈的漏磁通。本文介绍了一种基于瞬态3D(3D)有限元分析(FEA)的方法来计算大型发电机端部区域中的磁场和损耗分布,并结合了各向异性和非线性影响的增强型叠层铁心模型材料特性,磁滞效应以及感应的面内涡流对磁场的反应以及定子铁芯中的损耗分布。通过3D热FEA预测的温度与测量结果之间的一致性来验证该方法。然后,通过提出的3D FEA评估了不同材料特性和压板尺寸对端部区域的磁通量和损耗分布的影响。

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