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Comparison of urbanization and climate change impacts on urban flood volumes: Importance of urban planning and drainage adaptation

机译:比较城市化和气候变化对城市洪水的影响:城市规划和排水系统适应的重要性

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Understanding the drivers behind urban floods is critical for reducing its devastating impacts to human and society. This study investigates the impacts of recent urban development on hydrological runoff and urban flood volumes in a major city located in northern China, and compares the urbanization impacts with the effects induced by climate change under two representative concentration pathways (RCPs 2.6 and 8.5).We then quantify the role of urban drainage system in mitigating flood volumes to inform future adaptation straiegies. A geospatial database on landuse types, surface imperviousness and drainage systems is developed and used as inputs into the SWMM urban drainage model to estimate the flood volumes and related risks under various urbanization and climate change scenarios. It is found that urbanization has led to an increase in annual surface runoff by 208 to 413%, but the changes in urban flood volumes can vary greatly depending on performance of drainage system along the development. Specifically, changes caused by urbanization in expected annual flood volumes are within a range of 194 to 942%, which are much higher than the effects induced by climate change under the RCP 2.6 scenario (64 to 200%). Through comparing the impacts of urbanization and climate change on urban runoff and flood volumes, this study highlights the importance for re-assessment of current and future urban drainage in coping with the changing urban floods induced by local and large-scale changes. (C) 2018 Elsevier B.V. All rights reserved.
机译:了解城市洪水的驱动因素对于减少其对人类和社会的破坏性影响至关重要。这项研究调查了最近的城市发展对中国北方一个主要城市的水文径流量和城市洪水量的影响,并比较了两种代表性集中路径(RCP 2.6和8.5)下的城市化影响与气候变化所带来的影响。然后量化城市排水系统在减轻洪水量中的作用,为未来的适应策略提供依据。建立了有关土地利用类型,地表不透水和排水系统的地理空间数据库,并将其用作SWMM城市排水模型的输入,以估算各种城市化和气候变化情景下的洪水量和相关风险。人们发现,城市化导致年地表径流量增加了208%,达到413%,但是城市洪水量的变化可能会随着排水系统的发展而变化很大。具体而言,城市化导致的预期年洪水量变化在194%至942%的范围内,远高于RCP 2.6情景下气候变化所引起的影响(64%至200%)。通过比较城市化和气候变化对城市径流量和洪水量的影响,本研究强调了应对当前和未来城市排水问题的重新评估对于应对由局部和大规模变化引起的不断变化的城市洪水的重要性。 (C)2018 Elsevier B.V.保留所有权利。

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