Scenarios for design floods computing in Miletin River Basin equipped with hydrotechnical facilities

M. Adler, C. Corbus, C. Dinu
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Abstract

The paper presents few scenarios for determining the design floods in Miletin River Basin equipped with hydraulic structures, using the mathematical model RAZVAN. This model allows automatic tracing the shape of design floods produced on tributaries (components), their composition and routing on different river reaches (branched hydrological network), resulting in the analysed section of the river basin the design flood with maximum discharge having a given probability of exceeding. Also, the model allows determining the flood waves changed due to the influence of the hydro-technical facilities from the analysed river basin. Determination of the components is made by the following composing scenarios: depth of runoff evenly distributed on the basin, depth of runoff unevenly distributed on the basin, concentrated depth of runoff upstream and downstream of the reservoir. The model was applied in the confluence section of the river Miletin with the river Jijia, considering reservoirs Câmpeni and Hălceni, both situated on the river Miletin. The results concerning the composition, routing and attenuation by reservoirs of the components corresponding to design floods having 1% probability of exceeding, in the four composing scenarios considered, are presented both numerically and graphically.
米利丁河流域水工设施设计洪水计算场景
本文介绍了利用RAZVAN数学模型确定米利丹河流域水工构筑物设计洪水的几种情形。该模型允许自动跟踪在支流(组件)上产生的设计洪水的形状,它们在不同河流(分支水文网络)上的组成和路线,从而使流域的分析部分具有最大流量的设计洪水具有给定的超过概率。此外,该模型还可以从分析的流域中确定由于水利技术设施的影响而发生的洪波变化。通过均匀分布在流域的径流深度、不均匀分布在流域的径流深度、水库上下游的径流集中深度三种构成情景确定各分量。将该模型应用于米利丹河与吉家河的汇合处,考虑了位于米利丹河上的水库 mpeni水库和h lceni水库。在考虑的四种构成情景中,具有1%超过概率的设计洪水对应的组成、路径和水库衰减的结果,分别以数值和图形形式给出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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