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Influence of oil on R-410A two-phase frictional pressure drop in a small U-type wavy tube

机译:油对小型U型波纹管中R-410A两相摩擦压降的影响

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This study presents single-phase and two-phase pressure drop data with oil concentration C=0, 1, 3 and 5% in a copper wavy tube having an inner diameter of 3.25 mm and a curvature radius of 6.35 mm. The ratio of frictional factor between U-bend in wavy tube and straight tube (f_C/f_S) is about 1.5 to 2.5 for Re=2500~25000. The effect of secondary flow is very crucial in the U-bend that it increases the pressure drop considerably. However, the effect of oil concentration on friction factor is negligible provided the properties are based on mixture. The ratio between two-phase pressure gradients of U-bend and straight tube is about 3. This ratio is increased with oil concentration and vapor quality. The oil effect on two-phase pressure drop is especially pronounced at high vapor quality because the effective oil concentration in liquid mixture is increased with vapor quality. The frictional two-phase multiplier for straight tube can be fairly correlated by using the Chisholm correlation. A modified two-phase friction factor based on the Geary correlation is also utilized to predict the frictional two-phase pressure gradient in U-bend. The predictions give a good agreement to the present oil-refrigerant data with a mean deviation of 12.92%.
机译:这项研究提出了内径为3.25 mm,曲率半径为6.35 mm的铜波纹管中油浓度为C = 0、1、3和5%的单相和两相压降数据。 Re = 2500〜25000时,波浪管与直管之间的U形弯曲摩擦系数之比(f_C / f_S)约为1.5至2.5。二次流的影响在U型弯中非常关键,因为它会大大增加压降。但是,油的浓度对摩擦系数的影响可以忽略不计,只要其性能基于混合物即可。 U型弯管和直管的两相压力梯度之比约为3。该比值随油浓度和蒸气质量而增加。在高蒸气质量下,油对两相压降的影响尤为明显,因为液体混合物中的有效油浓度随蒸气质量而增加。直管的摩擦两相乘数可以通过Chisholm相关系数进行合理关联。基于Geary相关性的修正的两相摩擦系数也可用于预测U型弯中的摩擦两相压力梯度。这些预测与当前的油制冷剂数据吻合良好,平均偏差为12.92%。

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