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Analytical and Experimental Investigation of a Side-Weir Detention Basin in Flood-Level Reduction in the Main Channel

机译:主渠道侧堰滞洪区减洪分析与实验研究

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摘要

To design the off-stream detention basin by the sides of rivers or channels, flood-level reduction in main channels should be evaluated under unsteady flow. Flow discharge diverted to the side weir from the main stream can be calculated practically by the standard weir or lateral weir equations. In this study, experimental and numerical modeling with a side-weir detention basin was conducted for unsteady flow. The experimental results were compared with the numerical backwater profile calculation considering the water discharge overflowed into the basin from the channel. The overflowed discharge was estimated by the standard weir and lateral weir equations for various flow types at the side weir. The standard weir equation accurately predicted flow discharge diverted to the side weir for free overflow condition. The lateral weir equation calculated a precise flood level and time of peak flow for the condition modeled, especially when the various flows, including free and submerged overflows, were developed at the side weir.
机译:要在河流或河道两旁设计下游滞留盆地,应在非稳定流量下评估主河道的洪水位降低。从主流转向旁堰的流量实际上可以通过标准堰或侧堰方程来计算。在这项研究中,对侧流滞留池进行了非稳态流动的实验和数值模拟。考虑到从河道溢流到盆地的排水量,将实验结果与数值回水曲线计算进行了比较。通过标准堰和侧堰方程对侧堰处的各种流动类型估算溢流。标准堰方程精确预测了在自由溢流条件下转向侧堰的流量。侧围堰方程为模型条件计算了精确的洪水位和峰值水流时间,特别是当侧围堰产生各种水流,包括自由溢流和淹没溢流时。

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