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Two-phase pressure drop of R-410A in horizontal smooth minichannels

机译:水平平滑小通道中R-410A的两相压降

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Convective boiling pressure drop experiments were performed in horizontal minichannels with a binary mixture refrigerant, R-410A. The test section was made of stainless steel tubes with inner diameters of 1.5 mm and 3.0 mm and with lengths of 1500 mm and 3000 mm, respectively. This test section was uniformly heated by applying electric current directly to the tubes. Experiments were performed at inlet saturation temperature of 10 ℃, mass flux ranges from 300 to 600 kg m{sup}(-2) s{sup}(-1) and heat flux ranges from 10 to 40 kW m{sup}(-2). The current study showed the significant effect of mass flux and tube diameter on pressure drop. The experimental results were compared against 15 two-phase pressure drop prediction methods. The homogeneous model predicted well the experimental pressure drop, generally. A new pressure drop prediction method based on the Lockhart-Martinelli method was developed with 4.02% mean deviation.
机译:对流沸腾压降实验是在水平小型通道中使用二元混合物制冷剂R-410A进行的。测试部分由不锈钢管制成,其内径分别为1.5 mm和3.0 mm,长度分别为1500 mm和3000 mm。通过将电流直接施加到管上来对该测试部分进行均匀加热。实验在入口饱和温度10℃,质量通量范围从300至600 kg m {sup}(-2)s {sup}(-1)和热通量范围从10至40 kW m {sup}(- 2)。当前的研究表明质量通量和管径对压降的显着影响。将实验结果与15种两相压降预测方法进行了比较。通常,均匀模型可以很好地预测实验压降。提出了一种基于Lockhart-Martinelli方法的平均压降为4.02%的新的压降预测方法。

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