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The structural vulnerability in the framework of natural hazard risk analyses and the exemplary application for storm loss modelling in Tyrol (Austria)

机译:自然灾害风险分析框架中的结构脆弱性,以及蒂罗尔州(奥地利)的风暴损失建模的示范应用

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In the context of natural hazard-related risk analyses, different concepts and comprehensions of the term risk exist. These differences are mostly subjected to the perceptions and historical backgrounds of the different scientific disciplines and results in a multitude of methodological concepts to analyse risk. The target-oriented selection and application of these concepts depend on the specific research object which is generally closely connected to the stakeholders’ interests. An obvious characteristic of the different conceptualizations is the immanent various comprehensions of vulnerability. As risk analyses from a natural scientific-technical background aim at estimating potential expositions and consequences of natural hazard events, the results can provide an appropriate decision basis for risk management strategies. Thereby, beside the preferably addressed gravitative and hydrological hazards, seismo-tectonical and especially meteorological hazard processes have been rarely considered within multi-risk analyses in an Alpine context. Hence, their comparative grading in an overall context of natural hazard risks is not quantitatively possible. The present paper focuses on both (1) the different concepts of the natural hazard risk and especially their specific expressions in the context of vulnerability and (2) the exemplary application of the natural scientific-technical risk concepts to analyse potential extreme storm losses in the Austrian Province of Tyrol. Following the corresponding general risk concept, the case study first defines the hazard potential, second estimates the exposures and damage potentials on the basis of an existing database of the stock of elements and values, and third analyses the so-called Extreme Scenario Losses (ESL) considering the structural vulnerability of the potentially affected elements at risk. Thereby, it can be shown that extreme storm events can induce losses solely to buildings and inventory in the range of EUR 100–150 million in Tyrol. However, in an overall context of potential extreme natural hazard events, the storm risk can be classified with a moderate risk potential in this province.
机译:在与自然灾害有关的风险分析中,存在不同的概念和对风险一词的理解。这些差异主要受不同科学学科的认识和历史背景的影响,导致产生了用于分析风险的多种方法论概念。这些概念的面向目标的选择和应用取决于特定的研究对象,该研究对象通常与利益相关者的利益紧密相关。不同概念的明显特征是对脆弱性的内在的多种理解。由于来自自然科学技术背景的风险分析旨在估计自然灾害事件的潜在风险和后果,因此,该结果可为风险管理策略提供适当的决策依据。因此,除了优选解决的引力和水文灾害外,在阿尔卑斯山背景下的多风险分析中很少考虑地震构造,尤其是气象灾害过程。因此,在自然灾害风险的总体背景下,它们的比较等级不可能在数量上实现。本文着重于(1)自然灾害风险的不同概念,尤其是在脆弱性背景下的特定表述,以及(2)自然科学技术风险概念的示例性应用,以分析自然灾害风险的潜在极端风暴损失。奥地利蒂罗尔州。遵循相应的一般风险概念,案例研究首先定义潜在危害,其次在现有元素和值库存数据库的基础上估算暴露和破坏可能性,然后分析所谓的极端情景损失(ESL) )考虑可能受到威胁的要素的结构脆弱性。因此,可以证明极端暴风雨事件可能仅在蒂罗尔州造成建筑物和存货损失100-1.5亿欧元。但是,就潜在的极端自然灾害事件的整体情况而言,该省的风暴风险可以划分为中等风险。

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