...
首页> 外文期刊>Natural hazards and earth system sciences >Spatial vulnerability units - expert-based spatial modelling of socio-economic vulnerability in the Salzach catchment, Austria
【24h】

Spatial vulnerability units - expert-based spatial modelling of socio-economic vulnerability in the Salzach catchment, Austria

机译:空间脆弱性单位-基于专家的奥地利萨尔察赫河流域社会经济脆弱性空间模型

获取原文
获取原文并翻译 | 示例
           

摘要

The assessment of vulnerability has moved to centre-stage of the debate between different scientific disciplines related to climate change and disaster risk management. Composed by a combination of social, economical, physical and environmental factors the assessment implies combining different domains as well as quantitative with qualitative data and makes it therefore a challenge to identify an integrated metric for vulnerability. In this paper we define vulnerability in the context of climate change, targeting the hazard 'flood'. The developed methodology is being tested in the Salzach river catchment in Austria, which is largely prone to floods. The proposed methodology allows the spatial quantification of vulnerability and the identification of vulnerability units. These units build upon the geon concept which acts as a framework for the regionalization of continuous spatial information according to defined parameters of homogeneity. Using geons, we are capable of transforming singular domains of information on specific systemic components to policy-relevant, conditioned information. Considering the fact that vulnerability is not directly measurable and due to its complex dimension and social construction an expert-based approach has been chosen. Established methodologies such as Multicriteria Decision Analysis, Delphi exercises and regionalization approaches are being integrated. The method not only enables the assessment of vulnerability independent from administrative boundaries, but also applies an aggregation mode which reflects homogenous vulnerability units. This supports decision makers to reflect on complex issues such as vulnerability. Next to that, the advantage is to decompose the units to their underlying domains. Feedback from disaster management experts indicates that the approach helps to improve the design of measures aimed at strengthening preparedness and mitigation. From this point of view, we reach a step closer towards validation of the proposed method, comprising critical user-oriented aspects like adequateness, practicability and usability of the provided results in general.
机译:对脆弱性的评估已成为与气候变化和灾害风险管理相关的不同科学学科之间辩论的中心。评估由社会,经济,物理和环境因素共同组成,意味着要结合不同领域以及定量和定性数据,因此,确定脆弱性综合指标面临挑战。在本文中,我们针对气候“洪水”危害定义了气候变化背景下的脆弱性。奥地利萨尔察赫河流域正在试验开发的方法,该流域大都容易发生洪水。所提出的方法允许对脆弱性进行空间量化并确定脆弱性单位。这些单元建立在geon概念的基础上,geon概念是根据定义的均匀性参数对连续空间信息进行区域化的框架。使用geons,我们能够将特定系统组件上的单个信息域转换为与政策相关的条件信息。考虑到无法直接测量脆弱性这一事实,并且由于其复杂性和社会结构,我们选择了基于专家的方法。诸如多准则决策分析,Delphi练习和区域化方法等已建立的方法正在被整合。该方法不仅能够评估不受管理边界限制的漏洞,而且可以应用反映同类漏洞单元的聚合模式。这支持决策者对诸如漏洞之类的复杂问题进行反思。紧接着,好处是将单元分解为它们的基础域。灾害管理专家的反馈表明,该方法有助于改进旨在加强备灾和减灾措施的设计。从这个角度来看,我们朝着验证所提出的方法迈出了一步,该方法包括关键的面向用户的方面,例如所提供结果的适当性,实用性和可用性。

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