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Impact of the Storm Sewer Network Complexity on Flood Simulations According to the Stroke Scaling Method

机译:行程缩放方法的雨水管网复杂度对洪水模拟的影响

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For urban watersheds, the storm sewer network provides indispensable data for flood modeling but often needs to be simplified to balance the conflict between the large amount of data and current computing power. The sensitivity of a flood simulation to the data precision of a storm sewer network needs to be explored to develop reasonable generalization strategies. In this study, the impact of using the stroke scaling method to generalize a storm sewer network on a flood simulation was analyzed in terms of the total inflow of the outfalls and flood results. The results of the three study basins showed that different complexities of a sewer network did not have a significant effect on the outfall’s total inflow for an area with a single drainage system but did for an area with multiple drainage systems. In addition, serious flooding was mainly distributed at the backbone pipes, which can be identified with the simplified sewer network. Several effective generalization strategies were developed for sewer networks that consider the distribution characteristics of the drainage system and application requirements. This study is theoretically important for better understanding the data sensitivity of flood modeling and simulation and practically important for improving the modeling efficiency and the accuracy of urban flood simulation.
机译:对于城市流域,雨水管道网络为洪水建模提供了必不可少的数据,但通常需要简化以平衡大量数据与当前计算能力之间的冲突。为了开发合理的泛化策略,需要探索洪水模拟对下水道网络数据精度的敏感性。在这项研究中,从排污口的总流入量和洪水结果的角度分析了使用行程缩放方法推广雨水排放管网对洪水模拟的影响。这三个研究盆地的结果表明,下水道网络的不同复杂性对具有单个排水系统的区域的排污口总流入量没有显着影响,但对于具有多个排水系统的区域却没有影响。此外,严重的洪水主要分布在骨干管道上,这可以通过简化的下水道网络来识别。为下水道网络开发了几种有效的归纳策略,这些策略考虑了排水系统的分布特征和应用需求。这项研究在理论上对于更好地理解洪水建模和模拟的数据敏感性具有重要的理论意义,对于提高建模效率和城市洪水模拟的准确性也具有实际意义。

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