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Investigation of flow boiling heat transfer of binary mixtures (HF01234yf/R32) at two concentrations in a smooth horizontal tube

机译:平滑水平管中两种浓度的二元混合物(HF01234YF / R32)的流动沸腾热传递研究

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HFO1234yf is a promising alternative for automobile air conditioners because of its low GWP of 4 and thermophysical properties similar to those of R134a. However, its performance is inferior to R410A. This makes it difficult to be applied to residential air-conditioners. A mixture of HFO1234yf and R32 is expected to balance both the GWP and COP requirement when applied to residential air-conditioning systems. In this study, flow boiling heat transfer coefficients of HFO1234yf and R32 (80:20 and 50:50 by wt%) were measured in a smooth horizontal tube at a saturation temperature of 15°C. The inner diameter (ID) of the test section is 4 mm. The mass flux ranges from 100 to 300 kg/m~2·s, and the heat flux changes from 6 to 24 kW/m~2. Heat transfer coefficients of the mixtures and pure HFO1234yf were summarized at three Bo numbers. The influence of Bo on mass discussion was observed and discussed. It is found that there is notable influence of mass diffusion on heat transfer when Bo is large. When Bo is small, the convective heat transfer at high vapor qualities seems to be suppressed due to the effects of mass diffusion. Results show that the heat transfer coefficient of the 50:50 wt% mixture of HFO1234yf and R32 is higher than that of the 80:20 wt% mixture and is also the same or even higher than that of pure HFO1234yf. A theoretical model was proposed to predict the heat transfer coefficients of the mixtures HFO1234yf and R32 under two concentrations. The prediction model can catch 80% of the data within deviation of ±20%.
机译:HFO1234YF是汽车空调的有希望的替代方案,因为其低GWP为4,热物理性质与R134A类似。但是,其性能不如R410A。这使得难以应用于住宅空调。预计将在应用于住宅空调系统时平衡GWP和COP要求的HFO1234YF和R32的混合物。在该研究中,在平滑的水平管中在15℃的饱和温度下测量HFO1234YF和R32(通过WT%80:20和50:50的流沸热系数。测试部分的内径(ID)为4毫米。质量磁通量范围为100至300kg / m〜2·s,热通量从6到24 kW / m〜2变化。在三个博数中总结了混合物和纯HFO1234YF的热传递系数。观察并讨论了Bo对大规模讨论的影响。结果发现,当BOL大时,质量扩散对热传递的显着影响。当BO小时,由于质量扩散的影响,高蒸汽质量的对流热传递似乎被抑制。结果表明,50:50wt%HFO1234YF和R32混合物的传热系数高于80:20重量%的混合物,也与纯HFO1234YF的相同或甚至高。提出了一种理论模型,以预测两种浓度下的混合物HFO1234YF和R32的传热系数。预测模型可以捕获80%的数据,偏差为±20%。

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