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CFD Investigation of Temperature Distributions by Non-uniform Heat Losses inside Windings

机译:通过绕组内部非均匀热损失对温度分布进行CFD研究

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this paper shows the application of (Computational Fluid Dynamics) CFD method to predict the hot-spot temperature (HST) at different operating conditions inside the disc-type winding. It is very well-known that electrical heat losses are not distributed uniformly inside windings of power transformers due to the flux leakages in the winding; therefore, the influences of the non-uniform heat losses in the conductors of the winding are investigated and compared with the uniform heat losses distribution at different mass flow rates. Moreover, experimental verifications are provided to support 3D CFD simulations in the oil-directed (OD) cooling modes. The accurate numerical results of CFD simulations include the average temperature in each pass, the hot-spot location (HSL) at different dimensionless eddy losses factor (Qeddy). The presented results give a deep insight into the thermal aspects of the disc-type windings enabling the designer to optimize the cooling conditions of power transformer windings.
机译:本文展示了(计算流体动力学)CFD方法在预测盘形绕组内部不同工作条件下的热点温度(HST)中的应用。众所周知,由于绕组中的磁通泄漏,电热损失在变压器的绕组内部分布不均匀。因此,研究了绕组导体中不均匀热损耗的影响,并将其与不同质量流量下均匀热损耗的分布进行了比较。此外,提供了实验验证以支持在油引导(OD)冷却模式下的3D CFD模拟。 CFD仿真的准确数值结果包括每次通过的平均温度,不同无因次涡流损耗因子(Q 涡流 )。呈现的结果深入了解了盘形绕组的散热方面,使设计人员能够优化电源变压器绕组的冷却条件。

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