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3D nonlinear transient finite element analysis of eddy currents in the stator clamping system of large hydro generators

机译:大型水轮发电机定子夹紧系统中涡流的3D非线性瞬态有限元分析

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Purpose - An accurate calculation of eddy current losses in the stator clamping parts of large hydro generators is a matter of particular interest with the initial design and the design optimization because they can reach high values and produce local thermal hot-spots due to the non-linear magnetic behaviour of the clamping plate. Design/methodology/approach - With a fully 3D approach of the generator pole pitch, both time-harmonic and non-linear transient finite element analyses are carried out for the eddy currents using a magnetic vector potential formulation. Findings - With the introduction of a novel modelling strategy for the non-linear clamping plate, the total eddy current losses evaluated from both analysis methods show a good agreement. Nevertheless, the time-harmonic solution in comparison with the non-linear transient solution yields different local eddy current distributions in particular with the clamping plate. Research limitations/implications - The presented analyses use only the fundamental harmonic in the end region field. Further research will need to be carried out for the influence of the higher harmonics in the end region field and again the comparison of both analysis methods. Practical implications - With the intention of including the numerical analyses with design review and design optimization of the generators, the results obtained from both analysis methods are compared regarding the total eddy current losses as well as their local distributions. Originality/value - With a fully 3D approach of the generator pole pitch, second order pentahedral and hexahedral edge elements are introduced with both time-harmonic and non-linear transient eddy current finite element analyses.
机译:目的-大型水轮发电机定子夹持部件中涡流损耗的准确计算在初始设计和设计优化中尤为重要,因为它们可能会达到很高的值,并且由于非热源会产生局部热点。夹紧板的线性磁性能。设计/方法/方法-使用发电机极距的全3D方法,使用磁矢量电势公式对涡电流进行时谐波和非线性瞬态有限元分析。研究结果-随着非线性夹紧板新型建模策略的推出,两种分析方法评估的总涡流损耗显示出良好的一致性。然而,与非线性瞬态解相比,时谐解产生了不同的局部涡流分布,特别是在夹板上。研究局限/意义-提出的分析仅在端部区域使用基本谐波。对于端域场中高次谐波的影响,还有两种分析方法的比较,还需要进一步研究。实际意义-为了将数值分析包括在发电机的设计审查和设计优化中,比较了两种分析方法获得的结果,包括总涡流损耗及其局部分布。独创性/价值-通过发电机极距的全3D方法,引入了二阶五面体和六面体边缘元素,并进行了时谐和非线性瞬态涡流有限元分析。

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