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Numerical Study of Electromagnetic Loss and Heat Transfer in an Oil-Immersed Transformer

机译:油浸式变压器电磁损耗与传热的数值研究

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摘要

Transformer is one of the most important pieces of equipment in power system. The insulation aging and lifespan of transformer are significantly affected by hot spot distributions of internal components inside. In the present paper, the electromagnetic losses of different components and heat transfer process in a three-phase forced oil circulation transformer (400 kVA-15 kV/400 V) are numerically studied with finite element method. The leakage magnetic flux and eddy current loss density for metal components and oil tank are carefully analyzed, and the effect of metal components' electromagnetic loss on hot spot temperature of different components and oil flow in transformer is also studied. It is found that the surface current of metal components is generated by leakage magnetic flux, and surface current density is large when leakage magnetic flux concentrates. The effect caused by relative magnetic permeability of metal components is remarkable on electromagnetic loss of metal components and oil tank, while the effect caused by relative magnetic permeability of transformer tank is relatively small. Due to the mixing of metal components on oil flow, the heat transfer of core is enhanced, its hot spot temperature is lowered, and the hot spot locations of coil and core also change. These results are meaningful for further understanding of heat transfer process in transformer and important for the optimal design of transformer.
机译:变压器是电力系统中最重要的设备之一。变压器的绝缘老化和寿命受内部元件热点分布的影响很大。本文采用有限元方法对某三相强制油循环变压器(400 kVA-15 kV/400 V)中不同元件的电磁损耗和换热过程进行了数值研究。仔细分析了金属元件和油箱的漏磁通量和涡流损耗密度,研究了金属元件的电磁损耗对变压器内不同元件热点温度和油流量的影响。研究发现,金属构件的表面电流是由漏磁通量产生的,当漏磁通量集中时,表面电流密度较大。金属元件的相对磁导率对金属元件和油箱的电磁损耗的影响显著,而变压器油箱的相对磁导率引起的影响相对较小。由于金属成分在油流上的混合,铁芯的传热增强,其热点温度降低,线圈和铁芯的热点位置也发生变化。研究结果对进一步了解变压器的传热过程具有重要意义,对变压器的优化设计具有重要意义。

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