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Experimental Research on Water Boiling Heat Transfer on Horizontal Copper Rod Surface at Sub-Atmospheric Pressure

机译:大气压下水平铜棒表面水沸腾换热的实验研究

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In recent years, water (R718) as a kind of natural refrigerant—which is environmentally-friendly, safe and cheap—has been reconsidered by scholars. The systems of using water as the refrigerant, such as water vapor compression refrigeration and heat pump systems run at sub-atmospheric pressure. So, the research on water boiling heat transfer at sub-atmospheric pressure has been an important issue. There are many research papers on the evaporation of water, but there is a lack of data on the characteristics at sub-atmospheric pressures, especially lower than 3 kPa (the saturation temperature is 24 °C). In this paper, the experimental research on water boiling heat transfer on a horizontal copper rod surface at 1.8–3.3 kPa is presented. Regression equations of the boiling heat transfer coefficient are obtained based on the experimental data, which are convenient for practical application.
机译:近年来,学者们重新考虑了水(R718)作为一种天然的制冷剂,它既环保,安全又便宜。使用水作为制冷剂的系统(例如水蒸气压缩制冷和热泵系统)在低于大气压的条件下运行。因此,对大气压下水沸腾换热的研究一直是重要的课题。关于水的蒸发有很多研究论文,但缺乏有关低于大气压,特别是低于3 kPa(饱和温度为24°C)时的特性数据。本文提出了在水平铜棒表面以1.8–3.3 kPa进行水沸腾传热的实验研究。根据实验数据,得出沸腾传热系数的回归方程,便于实际应用。

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