混相流
Online ISSN : 1881-5790
Print ISSN : 0914-2843
ISSN-L : 0914-2843
論文
垂直細管内気液二相スラグ流におけるスラグ構造への表面張力及び液粘性の影響
坪根 弘明佐田富 道雄川原 顕磨呂
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2010 年 23 巻 5 号 p. 597-604

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In recently years, both the downsizing and the optimization of a heat exchanger with phase change have been requested, and a variety of working fluids have been utilized as refrigerants. Therefore, the clarification of gas-liquid two-phase flow in small diameter pipes is necessary for various liquids other than water. The purpose of this study is to clarify experimentally the effects of surface tension and liquid viscosity on the flow characteristics of two-phase slug flows in vertical small diameter pipes. In the experiment, flow structures such as void fractions in liquid slug and large gas bubble sections, ratio of large gas bubble length to slug unit length, and liquid film thickness around large gas bubbles were measured using 9 and 5 mm i.d. vertical circular pipes. As the test fluids, air and three kinds of test liquids in the property ranges of 0.042-0.071 N/m in surface tension and 0.797-19.6 mPa·s in liquid viscosity. New correlations of the above parameters were obtained from the present data, and compared with correlations in literatures and the present data.

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© 2010 日本混相流学会
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