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首页> 外文期刊>Zeitschrift fur Arznei- und Gewurzpflanzen >Analysis of Effect of Rainfall Patterns on Urban Flood Process by Coupled Hydrological and Hydrodynamic Modeling
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Analysis of Effect of Rainfall Patterns on Urban Flood Process by Coupled Hydrological and Hydrodynamic Modeling

机译:耦合水文和流体动力学建模降雨模式对城市洪水过程的影响分析

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摘要

Urban flooding poses an increasing threat to citizens and property and has become a global challenge. The primary cause of urban flooding is rapid urbanization, which is outpacing infrastructure development and drainage system improvements. This paper utilizes a verified flood model that couples hydrological and hydrodynamic processes to investigate the flood response under rainfall events with different patterns. A sponge city pilot area in China is taken as a case study. Drainage system performance, surface inundation patterns, and relation between them are investigated by carrying out statistical analysis and Pearson correlation analysis, respectively. Results show that with increases in the rainfall recurrence interval (RRI) and peak position ratio (PPR), drainage system performance indicators (DSPIs) generally become worse, and the total inundation area (TIA) and surface inundation areas of larger depths become larger. The response time exhibits varied patterns but generally decreases with increasing recurrence intervals and peak ratios. For surface inundation, the recurrence interval presents an increasingly significant role compared with the peak ratio as rainfall becomes heavier. Compared with other DSPIs, the volume of overflowed manholes (VOMs) shows a delayed response to rainfall and has a stronger relationship with the inundation areas with greater water depths, which indicates a possible solution of utilizing manhole storage for water management and flood control. Analyzing the response of drainage systems and flood patterns to different rainfall events using a model coupling hydrological and hydrodynamic processes comprehensively reveals the specific problems of the study area and possible innovative solutions. The analytical method and knowledge gained can help support urban flood management in China and around the world.
机译:城市洪水对公民和财产的威胁提高了越来越威胁,并成为全球挑战。城市洪水的主要原因是快速城市化,这是超越基础设施开发和排水系统的改进。本文利用验证的洪水模型,耦合水文和流体动力学过程,以研究具有不同模式的降雨事件下的洪水应答。中国海绵城市试点地区是案例研究。通过分别进行统计分析和Pearson相关分析,研究了排水系统性能,表面淹没模式和它们之间的关系。结果表明,随着雨量复发间隔(RRI)和峰值位置比(PPR)的增加,排水系统性能指标(DSPIS)一般变得更糟,并且较大深度的总淹没区域和表面淹没区域变得更大。响应时间表现出变化的模式,但通常随着复发间隔和峰值比率的增加而降低。对于表面淹没,与降雨变得更重的峰值比较,复发间隔具有越来越重要的作用。与其他DSPIS相比,溢出的沙井(VOMS)的体积显示了与降雨的延迟反应,与具有更大水深的淹没区域具有更强的关系,这表明利用人孔储存进行水管理和防洪的可能解决方案。利用模型耦合水文和流体动力过程分析排水系统和洪水模式对不同降雨事件的响应,揭示了研究区的具体问题和可能的创新解决方案。正在进行的分析方法和知识可以帮助支持中国和世界各地的城市洪水管理。

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