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首页> 外文期刊>Journal of hydrometeorology >Significant Impacts of Rainfall Redistribution through the Roof of Buildings on Urban Hydrology
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Significant Impacts of Rainfall Redistribution through the Roof of Buildings on Urban Hydrology

机译:降雨再分配通过建筑物屋顶对城市水文的屋顶产生重大影响

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Microtopography on a building roof will direct rainfall from roofs to the ground through downspouts and transform the rainfall spatial distribution from plane to points. However, the issues on whether and how the building-induced rainfall redistribution (BIRR) influences hydrologic responses are still not well understood despite the numerous downspouts in the urban area. Hence, this study brings the roof layer into a grid-based urban hydrologic model (gUHM) to quantitatively evaluate the impacts of BIRR, aiming to enhance the understanding of building effects in urban hydrology and subsequently to identify the necessity of incorporating BIRR into flood forecasting. Nine land development strategies and 27 rainfall conditions are considered herein to characterize the changing circumstance. Results indicate that the impacts of BIRR depend on multiple circumstance factors and are nonnegligible in urban hydrology. The BIRR causes not only bidirectional impacts on the hydrologic characteristic values (e.g., peak flow and runoff volume) but also an obvious alteration of the hydrograph. Overall, the BIRR tends to increase the peak flow, and more importantly, the impact will be aggravated by the increase of rainfall intensity with the maximum relative error of peak flow approaching 10%. This study contributes to a better understanding of building effects on urban hydrology and a step forward to reduce the uncertainty in urban flood warnings.
机译:建筑物屋顶上的微地形通过落水管将降雨从屋顶引导到地面,并将降雨空间分布从平面转换为点。然而,尽管城市地区有大量的落水管,但关于建筑物引起的降雨再分配(BIRR)是否以及如何影响水文响应的问题仍然没有得到很好的理解。因此,本研究将屋顶层纳入基于网格的城市水文模型(gUHM),以定量评估BIRR的影响,旨在增强对城市水文中建筑物影响的理解,进而确定将BIRR纳入洪水预测的必要性。本文考虑了九种土地开发策略和27种降雨条件,以描述不断变化的环境。结果表明,BIRR的影响取决于多种环境因素,在城市水文中是不可忽略的。BIRR不仅会对水文特征值(如峰值流量和径流量)产生双向影响,还会对过程线造成明显改变。总的来说,BIRR倾向于增加峰值流量,更重要的是,降雨强度的增加会加剧影响,峰值流量的最大相对误差接近10%。这项研究有助于更好地理解建筑对城市水文的影响,并进一步降低城市洪水警报的不确定性。

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