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A procedure for determination of design runoff curve number for Bamhani Watershed

机译:Bamhani流域设计径流曲线数确定程序

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Probalistic estimation of one day maximum runoff is essential for safe and cost effective planning and design of surface runoff storage system. In Present study, One-day maximum and consecutive 2 and 3 day maximum runoff were computed for the Bamhani Watershed. The curve numbers are treated as random variables with the curve numbers associated with antecedent runoff condition II (Normal) representing 50% CN. Those associated with dry and wet are shown to be representative of 10% and 90 % CN value respectively. The design runoff (CN) was estimated for 10-year period by using SCS-CN model. Furthermore, 1, 2, and 3 day maximum runoff was fitted with three probability distribution (Log-normal, Gumble and Log Pearson-III. Of the Three probability distributions employed, Log Pearson type 3 distribution exhibited the best fit for the data. Finally 1, 2, and 3 day maximum runoff was estimated at return periods of 2, 5, 10, 25, 50, 100 and 200 years. The match between the design CN (for dry condition)-generated runoff and the conventional design runoff is found to be satisfactory for all return periods and rain durations for the studied watersheds, indicating the versatility of the proposed approach.
机译:对一天最大径流的概率估计对于安全和成本有效的地表径流存储系统规划和设计至关重要。在本研究中,计算了Bamhani流域的最大一天径流量以及连续2天和3天最大径流量。曲线编号被视为随机变量,其曲线编号与之前的径流条件II(正常)相关,代表50%CN。与干和湿有关的那些分别显示为代表CN值的10%和90%。通过使用SCS-CN模型,估算了10年的设计径流(CN)。此外,在1、2和3天的最大径流量中拟合了三种概率分布(对数正态,Gumble和Log Pearson-III。在采用的三种概率分布中,Log Pearson 3型分布表现出最适合该数据的特征。在2年,5年,10年,25年,50年,100年和200年的回归期中,估计了1天,2天和3天的最大径流量,设计CN(对于干燥条件)生成的径流量与常规设计径流量之间的匹配为结果表明,对于所研究的流域,所有回水期和降雨持续时间都令人满意,这表明该方法具有多功能性。

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