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Prediction of Pressure Drop and Flow Distribution in Disc Type Transformer Windings in an OD Cooling Mode

机译:OD冷却模式下盘式变压器绕组压降和流量分布的预测

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摘要

In this paper, a method for predicting pressure drop and flow distribution in disc-type transformer windings in an oil forced and directed (OD) cooling mode is proposed. First, dimensional analyses are conducted to identify the independent dimensionless variables that affect pressure drop over and flow distribution in the winding. Next, parametric sweeps are performed with computational fluid dynamics (CFD) simulations under isothermal flow conditions. Finally, pressure drop and flow distribution results obtained from the simulations are correlated with the previously identified dimensionless variables to derive correlation equations. These equations have been verified over a range of different isothermal and non-isothermal flow cases and applied to identify the criteria for the occurrence of reverse flow resulting from a combination of pass inlet flow rate and winding geometry. In addition, the method provides an insight into the controlling parameters for determining the minimum oil velocity in horizontal cooling ducts.
机译:本文提出了一种在油压和定向(OD)冷却模式下预测盘式变压器绕组中压降和流量分布的方法。首先,进行尺寸分析以识别独立的无量纲变量,这些变量会影响绕组中的压降和流量分布。接下来,在等温流动条件下使用计算流体动力学(CFD)模拟执行参数扫描。最后,将从模拟获得的压降和流量分布结果与先前确定的无量纲变量进行关联,以得出相关方程。这些方程式已在一系列不同的等温和非等温流动情况下得到了验证,并用于确定由于通道入口流速和绕组几何形状的组合而导致发生逆流的标准。另外,该方法提供了对用于确定水平冷却管道中的最小油速的控制参数的了解。

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