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首页> 外文期刊>IEEE Transactions on Power Delivery >Oil Cooling for Disk-Type Transformer Windings - Part II: Parametric Studies of Design Parameters
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Oil Cooling for Disk-Type Transformer Windings - Part II: Parametric Studies of Design Parameters

机译:盘式变压器绕组的油冷却-第二部分:设计参数的参数研究

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摘要

Effects of various design and operating parameters on the hot-spot temperature are analyzed in disk-type forced oil-cooled transformer windings. The results indicate that a two-dimensional thermal analysis in the disks is necessary to determine the temperature and location of the hottest spot, and that the cooling oil-flow arrangement has a significant influence on the cooling of disk windings. The maximum disk temperature for each pass is proportional to the oil entrance temperature and, therefore, the heat transfer in the radiator should be improved as much as possible. A larger total oil-flow rate through the pass can increase the cooling capacity and, hence, improve the cooling of the disks, but increases the pressure loss. Although a uniform distribution of cooling oil flow among the various horizontal cooling ducts within a pass is beneficial to decrease the hottest spot temperature, the best cooling results can be obtained when the cooling flow distribution matches the distribution of heat generation in each disk of the pass.
机译:在盘形强制油冷式变压器绕组中分析了各种设计和运行参数对热点温度的影响。结果表明,必须对磁盘进行二维热分析以确定最热点的温度和位置,并且冷却油流的布置对磁盘绕组的冷却有重要影响。每次通过的最高圆盘温度与机油入口温度成正比,因此,应尽可能提高散热器中的热传递。通过通道的较大的总油流量可以提高冷却能力,从而改善圆盘的冷却效果,但会增加压力损失。尽管通道内各个水平冷却通道之间的冷却油流量均匀分布有利于降低最热点温度,但当冷却流量分布与通道内每个圆盘中的热量分布相匹配时,可以获得最佳的冷却效果。

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