Hydraulics of Rectangular Dropshafts

H. Chanson
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引用次数: 41

Abstract

A dropshaft is an energy dissipator connecting two channels with a drop in invert elevation. The hydraulics of vertical rectangular shafts was systematically investigated in seven configurations. A particular emphasis was on the effects of shaft pool, outflow direction, and drop height, while geometrically similar shafts (scale 3.1:1) were studied using a Froude similitude. The results demonstrate that rectangular dropshafts with 90° outflow are the most efficient energy dissipators. The shaft pool and drop height have little effect on the rate of energy dissipation. Recirculation time results exhibited marked differences between flow regimes and the longest dimensionless residence times were observed at low flow rates. Although basic flow characteristics were similar between model and prototype, observations of dimensionless bubble penetration depths and recirculation times showed some discrepancy, highlighting limitations of the Froude similitude for studies of air entrainment and residence times in dropshafts.
矩形降轴液压
降轴是一种能量耗散器,连接两个通道,在倒置高度下降。系统研究了7种竖井矩形轴的水力学特性。特别强调的是竖井池、流出方向和落差高度的影响,而几何上相似的竖井(比例为3.1:1)则使用弗劳德相似度进行研究。结果表明,90°出口的矩形降轴是最有效的耗能体。竖井池和落差高度对消能率影响不大。再循环时间结果在不同流型之间存在显著差异,在低流速下观察到最长的无因次停留时间。虽然模型和原型之间的基本流动特性相似,但对无量纲气泡穿透深度和再循环时间的观察显示出一些差异,这突出了研究液滴轴中空气携带和停留时间的Froude相似性的局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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