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Effectiveness of low-impact development for urban inundation risk mitigation under different scenarios: a case study in Shenzhen, China

机译:不同情景下城市融资风险减缓的低影响发展的有效性 - 以深圳,中国案例研究

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摘要

The increase in impervious surfaces associated with rapid urbanization is one of the main causes of urban inundation. Low-impact development (LID) practices have been studied for mitigation of urban inundation. This study used a hydrodynamic inundation model, coupling SWMM (Storm Water Management Model) and IFMS-Urban (Integrated Flood Modelling System-Urban), to assess the effectiveness of LID under different scenarios and at different hazard levels. The results showed that LID practices can effectively reduce urban inundation. The maximum inundation depth was reduced by 3 %-29 %, average inundation areas were reduced by 7 %-55 %, and average inundation time was reduced by 0 %-43% under the eight scenarios. The effectiveness of LID practices differed for the three hazard levels, with better mitigation of urban inundation at a low hazard level than at a high hazard level. Permeable pavement (PP) mitigated urban inundation better than green roofs (GRs) under the different scenarios and at different hazard levels. We found that more implementation area with LID was not necessarily more efficient, and the scenario of 10% PP + 10% GR was more efficient for the study area than other scenarios. The results of this study can be used by local governments to provide suggestions for urban inundation control, disaster reduction, and urban renewal.
机译:与快速城市化相关的不透水表面的增加是城市淹没的主要原因之一。已经研究了低影响的发展(盖子)措施来减轻城市淹没。本研究采用了流体动力淹没模型,耦合SWMM(雨水管理模型)和IFMS-城市(综合洪水建模系统 - 城市),以评估盖子下不同情景和不同危害水平的有效性。结果表明,盖子实践可以有效降低城市淹没。最大淹没深度减少3%-29%,平均淹没区域减少7%-55%,八种情况下平均淹没时间减少0%-43%。盖子实践的有效性对于三个危险水平不同,在低危险水平下,对城市淹没的更好地减轻了城市淹没。在不同场景和不同的危险水平下,可渗透的路面(PP)比绿色屋顶(GRS)更好地减少城市淹没。我们发现,具有盖子的更多实施区域不一定更有效,10%PP + 10%GR的场景对于研究区域比其他情况更有效。本研究的结果可由地方政府使用,为城市淹没控制,减灾和城市更新提供建议。

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  • 作者单位

    Peking Univ Shenzhen Grad Sch Key Lab Urban Habitat Environm Sci &

    Technol Shenzhen 518055 Peoples R China;

    Peking Univ Shenzhen Grad Sch Key Lab Urban Habitat Environm Sci &

    Technol Shenzhen 518055 Peoples R China;

    Univ Hong Kong Dept Urban Planning &

    Design Hong Kong Hong Kong Peoples R China;

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  • 正文语种 eng
  • 中图分类 地球物理学;
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