...
首页> 外文期刊>Hydrology and Earth System Sciences >KULTURisk regional risk assessment methodology for water-related natural hazards - Part 2: Application to the Zurich case study
【24h】

KULTURisk regional risk assessment methodology for water-related natural hazards - Part 2: Application to the Zurich case study

机译:与水有关的自然灾害的KULTURisk区域风险评估方法论-第2部分:在苏黎世案例研究中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

The aim of this paper is the application of the KULTURisk regional risk assessment (KR-RRA) methodology, presented in the companion paper (Part 1, Ronco et al., 2014), to the Sihl River basin, in northern Switzerland. Flood-related risks have been assessed for different receptors lying on the Sihl River valley including Zurich, which represents a typical case of river flooding in an urban area, by calibrating the methodology to the site-specific context and features. Risk maps and statistics have been developed using a 300-year return period scenario for six relevant targets exposed to flood risk: people; economic activities: buildings, infrastructure and agriculture; natural and semi-natural systems; and cultural heritage. Finally, the total risk index map has been produced to visualize the spatial pattern of flood risk within the target area and, therefore, to identify and rank areas and hotspots at risk by means of multi-criteria decision analysis (MCDA) tools. Through a tailored participatory approach, risk maps supplement the consideration of technical experts with the (essential) point of view of relevant stakeholders for the appraisal of the specific scores weighting for the different receptor-relative risks. The total risk maps obtained for the Sihl River case study are associated with the lower classes of risk. In general, higher (relative) risk scores are spatially concentrated in the deeply urbanized city centre and areas that lie just above to river course. Here, predicted injuries and potential fatalities are mainly due to high population density and to the presence of vulnerable people; flooded buildings are mainly classified as continuous and discontinuous urban fabric; flooded roads, pathways and railways, most of them in regards to the Zurich central station (Hauptbahnhof) are at high risk of inundation, causing severe indirect damage. Moreover, the risk pattern for agriculture, natural and semi-natural systems and cultural heritage is relatively less important mainly because the scattered presence of these assets. Finally, the application of the KR-RRA methodology to the Sihl River case study, as well as to several other sites across Europe (not presented here), has demonstrated its flexibility and the possible adaptation of it to different geographical and socioeconomic contexts, depending on data availability and particulars of the sites, and for other (hazard) scenarios.
机译:本文的目的是将随同论文(第1部分,Ronco等人,2014年)一起介绍的KULTURisk区域风险评估(KR-RRA)方法应用于瑞士北部的锡尔河流域。通过根据特定地点的环境和特征对方法进行校准,已评估了包括苏黎世在内的锡尔河流域(包括苏黎世)上不同受体的洪水相关风险,这代表了市区河流洪水的典型案例。风险图和统计数据是使用300年的回收期情景绘制的,用于应对洪水风险的六个相关目标:人;经济活动:建筑物,基础设施和农业;自然和半自然系统;和文化遗产。最后,已经绘制了总风险指数图,以可视化目标区域内的洪灾风险的空间格局,因此,可以通过多标准决策分析(MCDA)工具对处于风险中的区域和热点进行识别和排序。通过量身定制的参与方法,风险图以相关利益相关者的(基本)观点补充了技术专家的考虑,以评估针对不同受体相关风险的特定评分权重。 Sihl River案例研究获得的总风险图与较低风险类别相关。一般而言,较高(相对)的风险得分在空间上集中在深度城市化的市中心和河道上方的区域。在这里,预计的伤害和潜在的死亡人数主要是由于人口密度高和弱势群体的存在;被淹建筑物主要分为连续和不连续的城市结构;洪水泛滥的道路,小路和铁路,其中大部分涉及苏黎世中央火车站(Hauptbahnhof),处于淹没的风险很高,会造成严重的间接损失。此外,农业,自然和半自然系统以及文化遗产的风险模式相对而言不太重要,主要是因为这些资产的分散存在。最后,将KR-RRA方法应用于Sihl River案例研究以及整个欧洲的其他多个站点(此处未介绍),证明了它的灵活性以及根据不同的地理和社会经济背景进行调整的可能性。有关数据可用性和站点详细信息以及其他(危险)情况的信息。

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