雨水滞留池的设计效率

D. C. Curtis, R. McCuen
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引用次数: 13

摘要

除了洪水径流增加外,城市发展还造成了河流中泥沙负荷的显著增加。虽然提出了许多控制泥沙和径流的方法,但雨水滞留已被证明是成本效益较高的方法之一。由于过去没有广泛使用滞洪设施,因此没有数据库来确定设计因素对泥沙收集器效率和径流控制特性的影响。从水力学和经典沉降力学的原理出发,建立了一个包括侵蚀、沉积和拘留设施组成部分的数学模型。利用该模型考察了:(1)滞流池位置的影响;(2)土壤粒度分布;(3)盆地深度;(4)初始储存量,(5)孔口直径。了解这些因素的相对重要性,可能有助于更好地设计雨水滞留设施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DESIGN EFFICIENCY OF STORMWATER DETENTION BASINS
In addition to increased flood runoff, urban development has caused a significant increase in sediment loads in streams. While many means of sediment and runoff control have been proposed, stormwater detention has been shown to be one of the more cost efficient means. Because detention facilities have not been used extensively in the past, a data base is not available for determining the effect of design factors on sediment trap efficiency and runoff control characteristics. A mathematical model, which includes erosion, sedimentation, and detention facility components, was developed from principles of hydraulics and classical settling mechanics. The model was used to examine the effect of: (1)Detention basin location; (2)soil particle size distribution; (3)basin depth; (4)initial storage, and (5)orifice diameter. An understanding of the relative importance of these factors may lead to better design of stormwater detention facilities.
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