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Numerical simulation of temperature field of converter transformer based on electromagnetic-flow-heat coupling field

机译:基于电磁-流-热耦合场的换流变压器温度场数值模拟

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The converter transformer plays a key role in the safe operation of power system. Due its high voltage level and complex heat transfer characteristics, the heating problem becomes the important problem affecting the safe and stable operation of converter transformer. With a 500Kv oil-immersed converter transformer as research object in this study, the distribution of magnetic flux leakage, eddy current loss and temperature field were calculated by three - dimensional electromagnetic-flow-thermal coupling field analysis method, considering the effects of conduction, convection and radiation on the heat transfer of structures. The results showed that the magnetic flux leakage distribution was symmetrical. The transverse distribution was characterized by small leakage magnetic flux in the middle, while large leakage magnetic flux at both ends. The longitudinal distribution was characterized by small leakage magnetic flux at both ends, while large leakage magnetic flux in the middle. The eddy current loss had a great influence on the middle of the winding while little influence on the both ends. For the same position, the temperature of the valve winding was lower than that of the net winding. The position of the highest temperature point inside of iron core was within the range of 70%~90% of the total height. This study provides certain theoretical basis for the study of long-term stable operation of transformer.
机译:换流变压器在电力系统的安全运行中起着关键作用。由于其高电压电平和复杂的传热特性,发热问题成为影响换流变压器安全稳定运行的重要问题。本研究以500Kv油浸换流变压器为研究对象,通过三维电磁流-热耦合场分析方法,考虑了传导的影响,计算了漏磁通量,涡流损耗和温度场的分布。对流和辐射对结构的传热。结果表明,漏磁通量分布是对称的。横向分布的特征是中间的漏磁通量小,而两端的漏磁通量大。纵向分布的特征是两端的漏磁通较小,而中间的漏磁通较大。涡流损耗对绕组的中部影响很大,而对两端的影响很小。对于相同位置,阀绕组的温度低于网状绕组的温度。铁芯内部最高温度点的位置在总高度的70%〜90%范围内。该研究为变压器长期稳定运行的研究提供了一定的理论依据。

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