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首页> 外文期刊>Advances in Water Resources >Two-dimensional, high-resolution modeling of urban dam-break flooding: A case study of Baldwin Hills, California
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Two-dimensional, high-resolution modeling of urban dam-break flooding: A case study of Baldwin Hills, California

机译:城市大坝溃决洪水的二维高分辨率建模:以加利福尼亚州鲍德温山为例

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摘要

Modeling of dam-break flooding in an urban residential area in southern California is presented. Modeling is performed using BreZo, an unstructured grid, Godunov-type, finite volume model that solves the shallow-water equations. The model uses terrain data from a 1.5 m Light Detection and Ranging (LiDAR) Digital Terrain Model (DTM) and contour data depicting the reservoir and breach geometry. A spatially distributed Manning coefficient based on a landcover classification derived from digital orthophotos and vector data (e.g., parcel outlines) is also used, and the interception of flow by storm drains is modeled with sink terms in the 2D continuity equation. The model is validated with flood extent and stream flow measurements, and a sensitivity analysis is completed to identify the necessary level of data and model complexity for accuracy purposes. Results show street depressions in the land surface should be resolved by the computational mesh for flood extent and stream flow accuracy. A ca. 5 m resolution mesh that spans streets by approximately 3 cells achieves a good balance between accuracy and computational effort. Results also show that heterogeneous resistance is important for stream flow accuracy, and the interception of overland flow by storm sewers is important for flood extent accuracy. The sensitivity of predictions to several additional factors such as the reservoir level, breach geometry and DTM source (LiDAR, National Elevation Data, Shuttle Radar Topography Mission Data) is also reported.
机译:本文介绍了加利福尼亚南部城市居民区的溃坝洪水建模。使用非结构网格Godunov型有限体积模型BreZo进行建模,该模型可以解决浅水方程。该模型使用来自1.5 m的光检测和测距(LiDAR)数字地形模型(DTM)的地形数据以及描述油层和裂缝几何形状的轮廓数据。还使用了基于从数字正射影像和矢量数据(例如宗地轮廓)导出的地被物分类的空间分布曼宁系数,并且在2D连续性方程中使用汇项对暴雨排水沟的截流进行了建模。该模型已通过洪水范围和流量测量进行了验证,并完成了敏感性分析,以识别必要的数据水平和模型复杂性以达到准确性目的。结果表明,应通过计算网格解决陆地表面的街道洼地,以提高洪水泛滥程度和溪流的准确性。大约5 m分辨率的网格跨越街道约3个像元,在精度和计算工作量之间实现了良好的平衡。结果还表明,非均质阻力对于确保水流的准确性很重要,而雨水管道对陆上水流的截留对洪水范围的准确性很重要。还报告了预测对其他几个因素的敏感性,例如储层水位,破坏几何形状和DTM来源(LiDAR,国家海拔数据,穿梭雷达地形任务数据)。

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