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Temperature rise of a dry-type transformer with quasi-3D coupled-field method

机译:准3D耦合场法干式变压器的温升

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A quasi-3D coupled-field method is introduced and applied on a ventilated dry-type transformer to study temperature rise of windings in this study. A simplified 3D model was first established to calculate energy loss of core and velocity distribution in a plane above the lower yoke. Then two accurate 2D models were built up to figure out energy losses in the windings. With a combination of indirect and sequential coupling, energy losses of both windings and core were used as heat source, and velocities for both 2D models were applied as boundary condition for analysing fluid-thermal field. Final results of temperature rise were calculated with temperature rise of two 2D models. In the end, numerical results were compared with experimental data to prove the effectiveness of this method.
机译:介绍了一种准3D耦合场方法,并将其应用于通风干式变压器中,以研究绕组的温升。首先建立了简化的3D模型来计算铁心的能量损失和下轭上方平面中的速度分布。然后,建立了两个准确的2D模型来找出绕组中的能量损失。通过间接耦合和顺序耦合相结合,绕组和铁心的能量损失都被用作热源,并且两个二维模型的速度都被用作分析流体-热场的边界条件。通过两个2D模型的温度升高来计算温度升高的最终结果。最后,将数值结果与实验数据进行了比较,证明了该方法的有效性。

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