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Experimental study of evaporation pressure drop characteristics of refrigerants R-134a and R-407C in horizontal small tubes

机译:水平小管中制冷剂R-134a和R-407C蒸发压降特性的实验研究

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An experiment is carried out in the present study to investigate the characteristics of the frictional pressure drops for the evaporation of refrigerants R-134a and R-407C in horizontal small tubes having the same inside diameter of 0.83 mm or 2.0 mm. In the experiment for the 2.0-mm tubes, the refrigerant mass flux G is varied from 200 to 400 kg/m~2 s, imposed heat flux q from 5 to 15 kW/m~2, inlet vapor quality x_(in) from 0.2 to 0.8, and refrigerant saturation temperature T_(sat) from 5 to 15 ℃. While for the 0.83-mm tubes, G is varied from 800 to 1500 kg/m~2 s with the other parameters varied in the same ranges as those for A = 2.0 mm. In this study, the effects of the inlet refrigerant vapor quality, mass flux, saturation temperature and imposed heat flux on the measured frictional pressure drops are examined in detail. Our experimental data clearly show that both the R-134a and R-407C frictional pressure drops increase significantly with the inlet vapor quality of the refrigerant, except at low mass flux and high heat flux. Besides, the effect of the imposed heat flux on the frictional pressure drop is rather weak. Moreover, a significant decrease in the frictional pressure drop results for a rise in T_(sat). Furthermore, both the R-134a and R-407C frictional pressure drops increase substantially with the refrigerant mass flux. We also note that under the same x_(in), T_(sat), G, q and D_i, refrigerant R-407C has a lower frictional pressure drop when compared with that for R-134a. For the same refrigerant, a reduction in the duct size from 2.0-mm to 0.83-mm causes a significant increase in ΔP_f. Finally, an empirical correlation for the friction factor for the R-134a and R-407C evaporation in the 0.83-mm and 2.0-mm small tubes is proposed.
机译:在本研究中进行了一个实验,以研究内径为0.83 mm或2.0 mm的水平小管中制冷剂R-134a和R-407C蒸发时的摩擦压降特性。在2.0毫米管的实验中,制冷剂质量通量G从200到400 kg / m〜2 s变化,施加的热通量q从5到15 kW / m〜2,入口蒸汽质量x_(in)从0.2至0.8,制冷剂饱和温度T_(sat)为5至15℃。而对于0.83毫米的灯管,G的变化范围为800至1500 kg / m〜2 s,其他参数在与A = 2.0毫米的范围相同的范围内变化。在这项研究中,详细检查了入口制冷剂蒸汽质量,质量通量,饱和温度和施加的热通量对测得的摩擦压降的影响。我们的实验数据清楚地表明,除了在低质量通量和高热通量的情况下,R-134a和R-407C的摩擦压降均随制冷剂的入口蒸汽质量而显着增加。此外,施加的热通量对摩擦压降的影响相当弱。此外,摩擦压降的显着降低导致T_(sat)的升高。此外,R-134a和R-407C的摩擦压降均随制冷剂质量流量而显着增加。我们还注意到,在相同的x_(in),T_(sat),G,q和D_i下,与R-134a相比,R-407C的摩擦压降更低。对于相同的制冷剂,管道尺寸从2.0毫米减小到0.83毫米会导致ΔP_f显着增加。最后,提出了在0.83毫米和2.0毫米小管中R-134a和R-407C蒸发的摩擦因数的经验相关性。

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