圆形降轴内的气-水流动结构

Pub Date : 2013-07-08 DOI:10.1061/9780784412947.180
S. Kumcu, M. Kokpinar
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引用次数: 2

摘要

圆形降轴,通常用于城市雨水系统的能量耗散和流量控制,其特点是显著的流量曝气。在实验室中,采用直径为d=0.12 m的圆形降流轴和直径为d= 0.358 m的圆形降流室进行了一系列的实验,以观察流型和测量气泡夹带流动参数。实验观察表明,在井池、流出通道或对面井壁中,与推覆体冲击相关的不同流动形式。采用双尖端光纤探头对圆形降轴内的空气-水流动进行了详细的测量。在环形流入通道的不同流动条件下,进行了气泡分数、气泡频率和气泡尺寸的测量。在井池中,测量结果显示了不同夹带机制的复杂性。
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Air-Water Flow Structure in a Circular Dropshaft
Circular dropshafts, commonly used in urban storm water systems for energy dissipation and flow control, are characterized by significant flow aeration. In the laboratory, a series of experiments were performed in a circular dropshaft having two identical horizontal inflow and outflow circular channels having diameters of d=0.12 m, and a circular drop chamber having diameter of D=0.358 m for observing flow patterns and measuring air bubble entrainment flow parameters. Experimental observations showed distinct flow regimes associated with nappe impact in the shaft pool, in the outflow channel, or in the opposite shaft wall. New detailed air-water flow measurements were conducted in a circular dropshaft with using double-tip fiber optical probe. Measurements of void fractions, bubble frequencies and bubble sizes were conducted for different flow conditions of the circular inflow channel. In the shaft pool, the results obtained from measurements demonstrated the complexity of different air entrainment mechanisms.
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