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Two-dimensional numerical modeling of flood wave propagation in an urban area due to Ürkmez dam-break, İzmir, Turkey

机译:土耳其伊兹密尔Ürkmez大坝破坏导致市区洪水波传播的二维数值模拟

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摘要

This study investigated flood inundation in an urban area due to a possible failure of Ürkmez Dam in İzmir, Turkey. The estimation of flood hydrograph upon partial failure of the dam and routing of the flood hydrograph along the narrow valley downstream were first performed by the one-dimensional hydraulic routing model HEC-RAS. The two-dimensional hydraulic routing model FLO-2D is then used to simulate the spreading of the dam-break flood after the flood wave exits the valley. Land use and land cover digital maps were utilized to find the spatially varying roughness coefficient for the floodplain. The influence of the buildings on the flood propagation was represented in the numerical model by the area reduction factor as well as the width reduction factor. The peak flow depth, peak flow velocity and time moment of the peak flow depth maps were shown in the GIS environment. The results reveal that flow depths can reach about 3 m in the residential area. In about 40 min after the dam-break, houses in the large section of the town would be under the maximum flow depths. The two-dimensional hydrodynamic model results were tested against experimental dam-break flow data of the distorted physical model of Ürkmez Dam, which is consisted of the reservoir, dam body and downstream area including Ürkmez Town. The model successfully simulated experimental flow depth data measured at different measurement locations.
机译:这项研究调查了由于土耳其伊兹密尔Ürkmez大坝可能发生故障而导致的城市洪水泛滥。首先通过一维水力路径模型HEC-RAS进行大坝局部破坏时洪水水位的估算和下游狭窄山谷的洪水水位的路由。然后使用二维水力路径模型FLO-2D来模拟洪水波离开山谷后溃坝洪水的扩散。利用土地利用和土地覆盖数字地图来查找洪​​泛区的空间变化粗糙度系数。在数值模型中,建筑物对洪水泛滥的影响由面积减小因子和宽度减小因子表示。在GIS环境中显示了峰值流量深度图的峰值流量深度,峰值流量速度和时刻。结果表明,居住区的水深可达到3 m左右。溃坝后约40分钟,该镇大部分地区的房屋将处于最大流量深度之下。将二维水动力模型结果与Ürkmez大坝变形物理模型的实验溃坝流量数据进行了测试,该模型由水库,坝体和包括Ürkmez镇在内的下游地区组成。该模型成功模拟了在不同测量位置测得的实验流量深度数据。

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