鲍尔大坝决口分析使用各种曼宁的粗糙度值

J. Prasad
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引用次数: 0

摘要

本文阐述了洪水制图在节约下游农业用地方面的重要性。洪水会对附近的农作物产量造成严重影响,从而进一步影响该国的经济。包尔大坝的可耕种指挥面积为314535572公顷。它的重点是描述曼宁的粗糙度值在大坝决口建模中的重要性,并表明它对大坝下游地区的不良影响。本文利用水文工程师中心-河流分析系统(HEC-RAS)对包尔大坝进行了假设决口建模。本文还详细介绍了研究区域、决口参数、建模过程和流出洪水值。在不同的曼宁粗糙度值下绘制了大坝下游两个人口稠密地区的水流图,结果表明,随着粗糙度值的增加,流量减少,这证明了曼宁的理论。最后绘制了具有不同Manning值的淹没面积详细值的淹没图,从而可以数值分析粗糙度对研究区的影响。曼宁粗糙度值为0.030,导致大坝下游淹没面积为37.75km2
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Baur dam breach analysis using various manning’s roughness values
This paper describes the importance of flood mapping in terms of saving downstream agricultural area. Flood can cause high impact on the nearby crops productivity which further affects the country’s economy. The Baur dam has a Culturable Command Area of 31453,6572 hectares. It’s key focus is on describing the importance of Manning’s roughness value in dam breach modelling and shows it’s bad impact on downstream areas of dam. In this work hypothetical breach modelling of Baur dam is performed by using Hydrologic Engineer’s Centre- River Analysis System (HEC-RAS). Details about study area, breach parameters, modelling procedure, and outflow flood values are also described in this paper. Flow hydrographs are plotted at different Manning’s roughness value for the two populated downstream areas of dam and it has been observed from results that as roughness value increases flow decreases which justifies Manning’s theory. As a Final result Inundation maps are plotted with the detail of inundated area values for different Manning’s values so that the effect of roughness can be analysed numerically on study area. The Manning’s roughness value of 0.030 causes 37.75km2 inundated area in the downstream of dam.1
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