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CFD Study on Thermal Performance of Radiators in a Power Transformer: Effect of Blowing Direction and Offset of Fans

机译:电力变压器散热器散热性能的CFD研究:吹气方向和风扇偏移的影响

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摘要

A focus on the present numerical study is on the fan air flow—used in the oil natural air-forced cooling system of a 25-MVA power transformer. An experiment is done to benchmark the present simulation methodology for the fan. Thermal performance of a radiator assembly is studied in two parts: 1) effect of horizontal and vertical blowing direction of two different fans at two speeds and 2) the effect of offset of one of the fans blowing in the horizontal direction. Vertical as compared to horizontal blowing is less efficient in dissipating heat from the radiator assembly considered here, as more air gets wasted from the sides. This is in contrast to the commonly encountered results of a heat exchanger—a cross instead of counter-flow heat exchanger is more efficient. The effect of offset of the top and bottom fan increases the heat dissipation. The factor of merit is proposed as a performance parameter to compare the different cases, considering the benefit in terms of heat transfer and cost incurred in terms of power consumption of the fan. Computational fluid dynamics are used more as an analysis than a design tool and lead to an improvement in the design of the radiator fan assembly.
机译:当前数值研究的重点是风扇气流,该风扇气流用于25-MVA电力变压器的石油天然空气冷却系统。进行了一个实验,以对当前的风扇仿真方法进行基准测试。从两个部分研究散热器组件的热性能:1)两个不同风扇以两种速度水平和垂直吹动方向的影响,以及2)一个水平吹动的风扇的偏移的影响。与水平吹气相比,垂直吹气在散热方面效率较低,因为更多的空气从侧面被浪费掉了。这与换热器的常见结果相反-交叉而不是逆流换热器效率更高。顶部和底部风扇的偏移效果会增加散热量。考虑到在传热方面的好处以及在风扇的功耗方面所产生的成本,建议将品质因数作为比较不同情况的性能参数。计算流体动力学比设计工具更多地用作分析,并且可以改善散热器风扇组件的设计。

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