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Characteristics of Two-phase Flow Heat Transfer of R-22 and R-290 in Horizontal Circular Small Tube

机译:R-22和R-290在水平圆形小管中的两相流传热特征

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Hydrocarbon refrigerants have been widely used to replace HFCs. As hydrocarbon, R-290 has no ODP (Ozone Depletion Potential) and negligible GWP (Global Warming Potential). This paper presents flow boiling heat transfer in small tube with R-290 and R-22. The test tube has inner diameter of 7.6 mm and length of 1.07 m. In order to determine the heat transfer coefficient, experiments were carried out for heat fluxes ranging from 10 to 25 kW/m~2, mass fluxes ranging from 204 to 628 kg/m~2s, and saturation temperatures ranging from 1.87 to 11.9°C. The study analyzed the heat transfer through the local heat transfer coefficient along the flow under the variation of these different parameters. In comparison with R-22, R-290 provides higher heat transfer coefficients. In the prediction of the heat transfer coefficients of R-22 and R-290, the correlation of Shah (1982) and Choi et.al. (2009) best fitted the present experimental result, respectively.
机译:烃制冷剂已被广泛用于代替HFC。作为烃,R-290没有ODP(臭氧耗尽电位)和可忽略的GWP(全球变暖潜力)。本文介绍了用R-290和R-22的小管中沸腾的热传递。试管的内径为7.6毫米,长度为1.07米。为了确定传热系数,对从204至628kg / m〜2s的10至25kW / m〜2,质量助熔剂的热通量进行实验,饱和温度范围为1.87至​​11.9°C 。该研究通过沿着这些不同参数的变化的流动分析了通过局部传热系数的热传递。与R-22相比,R-290提供较高的传热系数。在预测R-22和R-290的热传递系数,Shah(1982)和Choi et.al的相关性。 (2009)最能拟合目前的实验结果。

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