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Numerical Study On Effect Of Gap Width Of Narrow Rectangular Channel On Critical Heat Flux Enhancement

机译:窄矩形通道间隙宽度对临界热通量增强影响的数值研究

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摘要

According to the flow passage characteristic of narrow rectangular channel and liquid film dry-out mechanics of annular flow critical heat flux (CHF), an annular flow CHF analytical model for narrow rectangular channel has been achieved. This model may be used to predict the CHF behavior of boiling two-phase flow in narrow rectangular channel with gap width of not being less than 0.0005 m (the equivalent diameter of this channel is 0.001 m). Through analyzing and calculating, when the inlet dimen-sionless gap width of narrow rectangular channel is within 30-85, the enhancement of CHF in channel is obvious. At the same time, according to the characteristic of two-phase flow, the new determinant laws of CHF in boiling two-phase flow system have been derived. Through analyzing and calculating, it is substantial that this determinant laws is appropriate. The best dimensionless gap width of heat flux enhancement has been achieved to be 45-75.
机译:根据窄矩形通道的流路特性和环形流临界热通量(CHF)的液膜变干机理,建立了窄矩形通道的环形流CHF分析模型。该模型可用于预测间隙宽度不小于0.0005 m(该通道的当量直径为0.001 m)的狭窄矩形通道中沸腾两相流的CHF行为。通过分析计算,当窄矩形通道的进口无量纲间隙宽度在30-85之间时,通道中CHF的增强是明显的。同时,根据两相流的特性,推导了沸腾两相流系统中CHF的新决定因素。通过分析和计算,该决定因素定律是适当的。热通量增强的最佳无量纲间隙宽度已达到45-75。

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