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A numerical study of the effect of a hybrid cooling system on the cooling performance of a large power transformer

机译:混合冷却系统对大型电力变压器冷却性能影响的数值研究

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摘要

This study analyzed the conjugate heat transfer and fluid flow of radiators used in a power transformer to investigate the cooling performance. The flow and temperature distributions around the radiators were analyzed to investigate the fundamental mechanisms of radiator cooling in the hybrid cooling system. The oil flow rate in the radiators was varied in the range of 44.4 LPM similar to 309.6 LPM. The cooling fan location was also varied along the bottom and right surfaces of the radiators, and their effects on the cooling performance were evaluated. The computational results using the standard k-epsilon turbulence model were compared with the measured data, showing the good agreement between them with the difference which is less than 5%. The cooling fans located at the center of the bottom surface and the bottom of the right surface resulted in the best cooling performance regardless of the insulating oil flow rate due to the positive interaction between the vertical and horizontal air flows induced by fans, giving about 22% higher cooling performance than the worst cooling performance at all flow rate.
机译:该研究分析了电力变压器中使用的散热器的共轭传热和流体流动,以研究冷却性能。分析了辐射器周围的流动和温度分布,研究了混合冷却系统中散热器冷却的基本机制。辐射器中的油流量在44.4Lpm的范围内变化,类似于309.6Lpm。冷却风扇位置也沿辐射器的底部和右表面变化,并评估它们对冷却性能的影响。将使用标准K-epsilon湍流模型的计算结果与测量数据进行比较,显示它们之间的良好一致性,差异小于5%。位于底表面中心和右表面底部的冷却风扇导致最佳的冷却性能,无论由风扇诱导的垂直和水平空气流之间的正相互作用,都是由于垂直和水平空气流动的阳性相互作用,给予约22较高的冷却性能比所有流量最差的冷却性能。

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