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不同情景下的溃坝分析与洪水灾害模拟

Dam failure analysis and flood disaster simulation under various scenarios.

作者信息

Paşa Yasin, Peker İsmail Bilal, Hacı Abdülbaki, Gülbaz Sezar

机构信息

Department of Civil Engineering, Istanbul Gelişim University, Avcılar, Istanbul 34310, Türkiye E-mail:

Department of Civil Engineering, Istanbul University-Cerrahpaşa, Avcılar, Istanbul 34320, Türkiye.

出版信息

Water Sci Technol. 2023 Mar;87(5):1214-1231. doi: 10.2166/wst.2023.052.

Abstract

The aim of this study is to analyze the effects of a possible dam failure under various scenarios and to generate a flood hazard map for two consecutive dams located in a study area with a dense-residential region and a heavy-traffic highway. Two consecutive dams consist of Elmalı 2, a concrete-buttress dam and Elmalı 1, an earth-fill gravity dam in the upstream and downstream, respectively. Hydrologic Engineering Center-River Analysis System (HEC-RAS) was used to develop a dam failure model. Dam failure scenarios were examined regarding three main criteria: the Breach Formation Time (BFT), the Number of Failed Buttresses (NFB) of Elmalı 2, and the Reservoir Volume Ratio (RVR) of Elmalı 1. Accordingly, flood peak depth (H), peak flow rate (Q), peak velocity (v), and time to reach the peak (t) are discussed. The results showed that BFT and NFB of Elmalı 2 were highly effective on these values, whereas RVR of Elmalı 1 had no significant effect. Moreover, the total area affected by potential floods was calculated with a comparative areal change analysis using flood inundation and flood hazard maps obtained. Estimated damage costs indicate that in the worst-case scenario, more than 500 buildings will be affected in the region.

摘要

本研究的目的是分析在各种情况下可能发生的大坝溃坝影响,并为位于一个有密集居民区和繁忙交通公路的研究区域内的两座连续大坝绘制洪水风险图。两座连续大坝分别是上游的混凝土支墩坝埃尔马利2号坝和下游的土堤重力坝埃尔马利1号坝。采用水文工程中心-河流分析系统(HEC-RAS)建立了大坝溃坝模型。针对三个主要标准对大坝溃坝情况进行了研究:溃口形成时间(BFT)、埃尔马利2号坝的失效支墩数量(NFB)以及埃尔马利1号坝的库容比(RVR)。据此,讨论了洪峰深度(H)、峰值流量(Q)、峰值流速(v)以及达到峰值的时间(t)。结果表明,埃尔马利2号坝的BFT和NFB对这些值有很大影响,而埃尔马利1号坝的RVR没有显著影响。此外,利用获得的洪水淹没图和洪水风险图,通过比较面积变化分析计算了潜在洪水影响的总面积。估计的损失成本表明,在最坏的情况下,该地区将有500多座建筑物受到影响。

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