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Flood hazards in an urbanizing watershed in Riyadh, Saudi Arabia

机译:沙特阿拉伯利雅得城市化流域的洪水灾害

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Riyadh, the capital of the Kingdom of Saudi Arabia, has experienced unusual levels of urbanization in the past few decades, making it one of the fastest growing cities in the world. This paper examines flood hazards in the rapidly urbanizing catchment of Al-Aysen in Riyadh. Remote sensing and geographic information system techniques were employed to obtain and prepare input data for hydrologic and hydraulic models, with the former based on the very popular curve number approach. Due to the limited nature of the rainfall data, observations from two rain gauges in the vicinity of the catchment were used to estimate design storms. The hydrologic model was run in a semi-distributed mode by dividing the catchment into many sub-catchments. The impact of urbanization on run-off volume and peak discharge resulting from different storms was investigated, with various urbanization scenarios simulated. Flood hazard zones and affected streets were also identified through hydrologic/hydraulic model simulation. The mismatch between administrative and catchment boundaries can create problems in flood risk management for similar cities since hydrologic processes and flood hazards are based on the hydrologic connectivity. Since flooding events impact the road network and create driving hazards, governmental decision-makers must take the necessary precautions to protect drivers in these situations.
机译:利雅得是沙特阿拉伯王国的首都,在过去的几十年中经历了不同寻常的城市化进程,使其成为世界上发展最快的城市之一。本文研究了利雅得Al-Aysen快速城市化集水区的洪水灾害。遥感和地理信息系统技术用于获取和准备水文和水力模型的输入数据,前者基于非常流行的曲线数方法。由于降雨数据的性质有限,因此使用流域附近两个雨量计的观测值来估算设计暴雨。通过将流域划分为许多子流域,以半分布式模式运行水文模型。研究了城市化对不同风暴造成的径流量和高峰流量的影响,并模拟了各种城市化情景。还通过水文/水力模型模拟确定了洪灾危险区和受影响的街道。由于水文过程和洪水灾害是基于水文连通性的,因此行政和流域边界之间的不匹配会在类似城市的洪水风险管理中造成问题。由于洪水事件会影响道路网络并造成行车危险,因此政府决策者必须采取必要的预防措施,以在这种情况下保护驾驶员。

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