首页> 外文期刊>International Journal of Heat and Mass Transfer >Flow boiling heat transfer of HFO1234yf and R32 refrigerant mixtures in a smooth horizontal tube: Part I. Experimental investigation
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Flow boiling heat transfer of HFO1234yf and R32 refrigerant mixtures in a smooth horizontal tube: Part I. Experimental investigation

机译:HFO1234yf和R32制冷剂混合物在光滑水平管中的流沸腾传热:第一部分。实验研究

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HFO1234yf has been proposed for mobile air-conditioners due to its low global warming potential (GWP) and performance comparable to that of R134a. However, its performance is inferior to that of R410A. This makes it difficult to be applied to residential air-conditioners. In order to apply the low-GWP refrigerant to residential air-conditioners, refrigerant mixtures of HFO1234yf and R32 are proposed, and their flow boiling heat transfer performances were investigated at two mass fractions (80/20 and 50/50 by mass%) in a smooth horizontal tube with an inner diameter of 2 mm. The experiments were conducted under heat fluxes ranging from 6 to 24 kW/m~2 and mass fluxes ranging from 100 to 400 kg/m~2 s at the evaporation temperature of 15 ℃. The measured heat transfer coefficients were compared with those of pure HFO1234yf and R32. The results showed that the heat transfer coefficients of the mixture with an R32 mass fraction of 20% were 10-30% less than those of pure HFO1234yf for various mass and heat fluxes. When the mass fraction of R32 increased to 50%, the heat transfer coefficients of the mixture were 10-20% greater than those of pure HFO1234yf under conditions of large mass and heat fluxes. Moreover, the heat transfer coefficients of the mixtures were about 20-50% less than that of pure R32. The performances of the mixtures were examined at different boiling numbers. For refrigerant mixture HFO1234yf and R32 (80/20 by mass%), the nucleate boiling heat transfer was noticeably suppressed at low vapor quality for small boiling numbers, whereas the forced convective heat transfer was significantly suppressed at high vapor quality for large boiling numbers. This indicates that the heat transfer is greatly influenced by the mass diffusion resistance and temperature glide of the mixture.
机译:HFO1234yf因其较低的全球变暖潜能(GWP)和与R134a相当的性能而被提议用于移动空调。但是,其性能不如R410A。这使得难以应用于家用空调。为了将低全球升温潜能值的制冷剂应用于住宅空调,提出了HFO1234yf和R32的制冷剂混合物,并在两个质量分数(质量百分比为80/20和50/50)下研究了它们的沸腾传热性能。内径2毫米的光滑水平管。在15℃的蒸发温度下,在6〜24 kW / m〜2的热通量和100〜400kg / m〜2 s的质量通量下进行实验。将测得的传热系数与纯HFO1234yf和R32的传热系数进行比较。结果表明,在各种质量和热通量下,R32质量分数为20%的混合物的传热系数比纯HFO1234yf的传热系数小10-30%。当R32的质量分数增加到50%时,在大质量和热通量的条件下,混合物的传热系数比纯HFO1234yf的传热系数大10-20%。而且,混合物的传热系数比纯R32的传热系数小约20-50%。在不同沸点下检查混合物的性能。对于制冷剂混合物HFO1234yf和R32(以质量%计为80/20),在低沸点时,低沸点的蒸汽质量明显抑制了核沸腾传热,而在高沸点时,高蒸气质量的显着抑制了强制对流换热。这表明热传递受混合物的质量扩散阻力和温度滑动的很大影响。

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