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3-D coupled electromagnetic-fluid-thermal analysis of 220kV three-phase three-limb transformer under DC bias

机译:直流偏置下220kV三相三臂变压器的3D耦合电磁热分析

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This paper take a typical 220kV three-phase three-limb oil-immersed transformer as an example, 3D coupled electromagnetic-fluid-thermal model was built. Using field-circuit coupled finite element method(FEM) to calculated the magnetic flux distribution of core and the current of windings under DC bias. Take the electric power losses of core and windings as heat source, the temperature distribution inside the transformer and the velocity of transformer oil are analyzed by finite volume method (FVM) in fluid-thermal field. In order to improve the accuracy of calculation results, the influence of temperature on the electrical resistivity of windings and the coefficient of viscosity of transformer oil are taken into account in the paper. By iterative computations, the power losses of windings are updated in accordance to the thermal field calculation result until the maximum difference of temperature between two adjacent steps is less than 0.1K.
机译:本文以一个典型的220kV三相三臂油浸式变压器为例,建立了3D耦合电磁流体热模型。采用场-电路耦合有限元法(FEM)计算了直流偏置下铁芯的磁通量分布和绕组电流。以磁芯和绕组的电功率损耗为热源,利用流体热场中的有限体积法(FVM)分析了变压器内部的温度分布和变压器油的速度。为了提高计算结果的准确性,本文考虑了温度对绕组电阻率的影响以及变压器油的粘度系数。通过迭代计算,根据热场计算结果更新绕组的功率损耗,直到两个相邻步骤之间的最大温度差小于0.1K。

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