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Influences of miscible and immiscible oils on flow characteristics through capillary tube - part I: experimental study

机译:可混溶和不可混溶的油对通过毛细管流动特性的影响-第一部分:实验研究

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摘要

A capillary tube is widely used as an expansion device for small refrigeration cycles. In a practical refrigeration cycle, some amount of refrigeration oil is discharged from a compressor and refrigerant/oil mixture flows through the capillary tube. This study investigated experimentally the influence of mixing of the refrigeration oil with the refrigerant on the flow through the capillary tube. The experiments are carried out with not only a miscible combination of refrigerant and oil but also an immiscible combination. In both cases, the mass flow rate through the capillary tube and temperature and pressure distributions along the tube are measured under several conditions of subcooled degree and oil concentration. In the case of miscible combination, the mass flow rate of refrigerant decreases with increasing the oil concentration because the viscosity of liquid phase increases by the mixing of viscous oil. Even in the case of the immiscible combination, the oil droplet is so small that it mixes homogeneously in the liquid phase in the capillary tube and the refrigerant mass flow rate decreases by the mixing of immiscible oil. There is no significant influence of the oil concentration on the underpressure, which means pressure difference between saturation pressure and flash inception pressure, in both miscible and immiscible combinations.
机译:毛细管被广泛用作用于小的制冷循环的膨胀装置。在实际的制冷循环中,一定量的冷冻机油从压缩机中排出,制冷剂/机油混合物流经毛细管。这项研究实验研究了冷冻机油与制冷剂混合对通过毛细管流动的影响。实验不仅使用制冷剂和油的可混溶混合物,而且还使用不可混溶的混合物进行。在这两种情况下,均在过冷度和油浓度的几种条件下测量通过毛细管的质量流量以及沿毛细管的温度和压力分布。在可混溶结合的情况下,制冷剂的质量流率随着油浓度的增加而降低,因为液相的粘度通过粘性油的混合而增加。即使在不混溶的组合的情况下,油滴也是如此之小,以至于它在毛细管中在液相中均匀地混合,并且由于不混溶的油的混合,制冷剂质量流量降低。油的浓度对负压没有显着影响,这意味着在可混溶和不可混溶的组合中,饱和压力和闪蒸起始压力之间的压差。

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