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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Wettability effect on the flow pattern of air-water two-phase flows in a vertical circular pipe
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Wettability effect on the flow pattern of air-water two-phase flows in a vertical circular pipe

机译:垂直圆管中的空气两相流流动模式的润湿性影响

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摘要

The flow pattern of air water two-phase flows in a vertical, circular pipe was experimentally investigated. The wettability of the pipe was changed by surface treatment. The original acrylic pipe had a contact angleθ{sub}c of 77°, while twopipes after the surface treatment hadθ{sub}c of 36° and 104°, respectively. The flow patterns in the pipes havingθ{sub}c of 36° and 77° were the same and agreed favourably with previously published results for pipes of good wettability(θ{sub}c<90°). On the other hand, different types of bubbly and slug flows appeared in the pipe ofθ{sub}c= 104°, being caused by attachment of bubbles and slugs to the wall of the pipe. The bubbly flows forθ{sub}c of 104° were classified into twocategories and slog flows for the same contact angle were classified into three categories. The boundary between the bubbly and slug flows, however, was hardly dependent on the wettability of the pipe.
机译:实验研究了垂直,圆形管道中的空气水两相流动的流动模式。 通过表面处理改变了管道的润湿性。 原始丙烯酸管具有77°的接触角θ{sub} c,而表面处理后的躯干分别具有36°和104°的θ{sub} c。 具有36°和77°的管道的管道中的流动模式是相同的,并且有利地与先前公布的良好润湿性管道的结果(θ{sub} c <90°)有利。 另一方面,在θ{sub} c = 104°的管道中出现不同类型的气泡和裂缝流,由气泡和块壁连接到管壁上引起的。 将104°的θ{sub} c的气泡流分为双粮食,并且与相同的接触角的漫步流分为三类。 然而,气泡和块状流动之间的边界几乎不依赖于管道的润湿性。

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