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Dynamic deformation analysis of power transformer windings considering the influence of temperature on elasticity characteristics of winding materials under short circuit fault

机译:电力变压器绕组动态变形分析,了解温度对短路故障绕组材料弹性特性的影响

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摘要

The elastic characteristics of transformer winding materials have an important influence on its deformation due to short-circuit (SC) fault. This paper presents an electromagnetic-thermal-fluid-mechanical coupling analysis method for dynamic deformation calculation of power transformer windings under SC fault, considering the influence of temperature on modulus of elasticity of winding materials. The dependence of modulus of elasticity of spacer and copper conductor on temperature in transformer windings are tested by dynamic thermal mechanical analyzer. The transient dynamic response of windings deformation including mechanical stress and displacements, as well as temperature distribution, for an oil-immersed-type 110 kV power transformer due to SC are obtained using the proposed method. The maximum stress and displacement achieved by the proposed method is greater than that calculated neglecting the temperature dependence of elasticity of modulus of winding materials. The upper part of the winding are more susceptible to damage due to SC impact.
机译:由于短路(SC)故障,变压器绕组材料的弹性特性对其变形具有重要影响。本文介绍了SC故障下电力变压器绕组动态变形计算的电磁 - 热流体 - 机械耦合分析方法,考虑到温度对绕组材料弹性模量的影响。间隔物和铜导体弹性模量对变压器绕组温度的依赖性通过动态热机械分析仪测试。使用所提出的方法获得由于SC引起的机械应力和位移包括机械应力和位移的绕组变形的瞬态动力响应,以及温度分布,以及用于浸没式110kV电力变压器。所提出的方法实现的最大应力和位移大于计算忽略绕组材料模量弹性的温度依赖性的最大应力和位移。由于SC撞击,绕组的上部更容易受到损坏。

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