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Estimation of Peak Flood Discharge for an Ungauged River: A Case Study of the Kunur River, West Bengal

机译:疏ga河流的洪峰流量估算:以西孟加拉邦库努尔河为例

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摘要

Due to unavailability of sufficient discharge data for many rivers, hydrologists have used indirect methods for deriving flood discharge amount, that is, application of channel geometry and hydrological models, for the estimation of peak discharge in the selected ungauged river basin(s) in their research/project works. This paper has studied the estimation of peak flood discharge of the Kunur River Basin, a major tributary of the Ajay River in the lower Gangetic plain. To achieve this objective, field measurements, GIS technique, and several channel geometry equations are adopted. Three important geomorphic based hydrological models—manning’sequation, kinematic wave parameter (KWP), and SCS curve number (CN) method—have been used for computing peak discharge during the flood season, based on daily rainfall data of September, 2000. Peak discharges, calculated by different given models, are 239.44 m3/s, 204.08 m3/s, and 146.52 m3/s, respectively. The hydrograph has demonstrated the sudden increase with heavy rainfall from the 18th to the 22nd of September, 2000. As a result, a havoc flood condition was generated in the confluence zone of Ajay and Kunur Rivers. This hydrograph might be not only successful application for flood forecasting but also for management of the lower Ajay River Basin as well as the downstream area of Kunur Basin.
机译:由于许多河流都没有足够的流量数据,水文学家采用间接方法推算洪水流量,即应用河道几何和水文模型估算所选非流域河流盆地的峰值流量。研究/项目工作。本文研究了恒河下游平原阿杰河的主要支流库努尔河流域的洪峰流量估算。为了实现这一目标,采用了现场测量,GIS技术和几个通道几何方程。基于2000年9月的每日降雨量数据,已经使用了三个重要的基于地貌的水文模型—曼宁方程,运动波参数(KWP)和SCS曲线数(CN)方法来计算汛期的高峰流量。通过不同的给定模型计算出的流量分别为239.44 m3 / s,204.08 m3 / s和146.52 m3 / s。从2000年9月18日至22日,水文图显示了降雨的突然增加。结果,在阿杰河和库努尔河的汇合区产生了严重的洪灾条件。该水文图不仅可以成功地用于洪水预报,而且还可以用于下阿杰河流域以及库努尔盆地下游地区的管理。

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