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Boiling Heat Transfer of R-1234yf in Horizontal Circular Small Tubes

机译:水平圆形小管中R-1234yf的沸腾传热

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An experimental study for heat transfer coefficient and pressure drop with two-phase flow phase change was conducted with R-1234yf in horizontal circular small tubes. The experimental facilities have been used to take data under various flow conditions with intensive study. The test section is made of stainless steel tubes with inner tube diameters of 1.5 mm and 3.0 mm, the length of 1000 mm and 2000 mm each. The small tubes were uniformly heated by engaging an electric current directly to the single tubes; all components were well insulated to prevent heat losses. Local heat transfer coefficients and pressure drop were obtained for a heat flux of 5 -40 kW m-2, a mass flux of 50-600 kg m-2 s-1, saturation temperatures of 0, 5, and 10°C and quality of up to 1.0. The effects of mass flux, heat flux, saturation temperature, and inner tube diameter on heat transfer coefficient and pressure drop are reported. Nucleate boiling heat transfer contribution was predominant, especially at low quality region, and laminar flow appeared in the evaporative small tubes. A new boiling heat transfer coefficient correlation for R-1234yf was developed.
机译:用R-1234yf在水平圆形小管中进行了两相流相变的传热系数和压降实验研究。实验设备已用于深入研究各种流量条件下的数据。测试部分由不锈钢管制成,内管直径分别为1.5 mm和3.0 mm,长度分别为1000 mm和2000 mm。通过将电流直接作用到单个管子上来均匀加热小管子;所有组件均绝缘良好,可防止热量损失。对于5 -40 kW m-2的热通量,50-600 kg m-2 s-1的质量通量,0、5和10°C的饱和温度和质量,可以获得局部传热系数和压降。最高为1.0。报告了质量通量,热通量,饱和温度和内管直径对传热系数和压降的影响。核沸腾的传热贡献是主要的,尤其是在低质量区域,并且在蒸发的小管中出现层流。开发了一种新的R-1234yf沸腾传热系数相关性。

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