...
首页> 外文期刊>Journal of Hydrology >Evaluating the importance of catchment hydrological parameters for urban surface water flood modelling using a simple hydro-inundation model
【24h】

Evaluating the importance of catchment hydrological parameters for urban surface water flood modelling using a simple hydro-inundation model

机译:使用简单的水淹模型评估集水区水文参数对于城市地表洪水建模的重要性

获取原文
获取原文并翻译 | 示例
           

摘要

The influence of catchment hydrological processes on urban flooding is often considered through river discharges at a source catchment outlet, negating the role of other upstream areas that may add to the flooding. Therefore, where multiple entry points exist at the urban upstream boundary, e.g. during extreme rainfall events when surface runoff dominates in the catchment, a hydro-inundation model becomes advantageous as it can integrate the hydrological processes with surface flow routing on the urban floodplain. This paper uses a hydro-inundation model (FloodMap-HydroInundation2D) to investigate the role of catchment hydrological parameters in urban surface water flooding. A scenario-based approach was undertaken and the June 2007 event occurred in Kingston upon Hull, UK was used as a baseline simulation, for which a good range of data is available. After model sensitivity analysis and calibration, simulations were designed, considering the improvement of both the urban and rural land drainage and storage capacities. Results suggest the model is sensitive to the key hydrological parameter soil hydraulic conductivity. Sensitivity to mesh resolution and roughness parameterisation also agrees with previous studies on fluvial flood modelling. Furthermore, the improvement of drainage and storage capacity in the upstream rural area is able to alleviate the extent and magnitude of flooding in the downstream urban area. Similarly urban drainage and storage upgrade may also reduce the risks of flooding on site, albeit to a less extent compared to rural improvements. However, none of the improvement scenarios could remove the flow propagation completely. This study highlights that in some settings, urban surface water flood modelling is just as strongly controlled by rural factors (e.g. infiltration rate and water storage) as internal model parameters such as roughness and mesh resolution. It serves as an important reminder to researchers simulating urban flooding that it is not just the internal parameterisation that is important, but also the use of correct inputs from outside the area of study, especially for catchments with a mixture of urban and rural areas. Crown Copyright (C) 2015 Published by Elsevier B.V. All rights reserved.
机译:流域水文过程对城市洪水的影响通常通过在源流域出口处的河流排放来考虑,而忽略了可能增加洪水泛滥的其他上游地区的作用。因此,在城市上游边界存在多个入口点的地方,例如在极端降雨事件中,当集水区中的地表径流占主导地位时,水淹模型变得有利,因为它可以将水文过程与城市洪泛区的地表径流路线整合在一起。本文使用水淹模型(FloodMap-HydroInundation2D)来研究集水区水文参数在城市地表洪水中的作用。采取了基于情景的方法,并将2007年6月在英国赫尔河畔金斯顿发生的事件用作基线模拟,为此可获得大量数据。经过模型敏感性分析和校准,考虑到城乡土地排水和存储能力的提高,设计了模拟程序。结果表明该模型对关键水文参数土壤水力传导率敏感。对网格分辨率和粗糙度参数化的敏感性也与以前关于河流洪水模型的研究一致。此外,上游农村地区排水和蓄水能力的提高能够减轻下游城市地区的洪水泛滥程度。同样,城市排水和存储升级也可以减少现场洪灾的风险,尽管与农村改造相比范围较小。但是,没有任何改进方案可以完全消除流传播。这项研究强调指出,在某些情况下,城市地表水洪水建模与乡村模型参数(例如粗糙度和网格分辨率)一样受到乡村因素(例如渗透率和蓄水量)的强烈控制。这是对模拟城市洪水的研究人员的重要提醒,不仅重要的是内部参数设置,而且重要的是使用研究区域之外的正确输入,特别是对于城市和农村地区混合流域。官方版权(C)2015,Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号