水安全计划框架内的自然灾害风险分析

Jessica Amadio, Vasilis Kanakoudis, Dejan Dimkić, Branislava Matić, Primoz Banovec, Ivana Boljat, Emanuela Campione, Barbara Čenčur Curk, Andrea Duro, Darko Kovac, Anastasia Papadopoulou, Argiris Papakonstantinou, Jasmina Lukač Reberski, Matjaž Srša, Stavroula Tsitsifli, Emanuele Romano
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引用次数: 0

摘要

查看大尺寸下 载幻灯片查看大尺寸下 载幻灯片 关闭模版尽管自然灾害造成的灾害和对饮用水供应系统的不利影响在数量和严重程度上都显著增加,但现有的以实施水安全计划(WSP)为重点的自然灾害风险分析文献却少得令人吃惊。同时,能够以 "从水源到水龙头 "的综合方法方便地考虑自然灾害的水安全计划仍然很少,因为自然灾害通常发生在更大的空间范围内,而充分的预防、缓解和适应需要高效的机构间合作。本文旨在强调水务公司在制定水资源战略计划时将自然灾害纳入考虑范围的主要瓶颈。研究采用了一种以利益相关者为导向的方法,涉及亚得里亚海-爱奥尼亚海地区的大量水务公司(168 家)、水务部门机构(15 家)和机构(68 家),通过一个循序渐进的过程,进行了联合 SWOT 分析,开发了一个以 WSP 程序和桌面演练为重点的决策支持系统(DSS)。最终成果产生了战略文件(REWAS--亚得里亚海--爱奥尼亚地区抗灾供水路线图),强调了在制定有充分依据和稳健的供水系统战略计划以应对供水系统(DWSS)自然灾害风险分析方面开展高效的跨部门和机构间合作的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Natural hazard risk analysis in the framework of water safety plans
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The available literature on natural hazard risk analysis focused on the implementation of water safety plans (WSPs) is surprisingly quite poor, despite the significant increase in the number and severity of disasters and adverse effects on drinking water supply systems generated by natural hazards. At the same time, WSPs that conveniently account for natural hazards with a comprehensive approach ‘from source to tap’ are still scarce as they typically occur at larger spatial scales and adequate prevention, mitigation and adaptation require efficient inter-institutional collaborations. The aim of this paper is to highlight the main bottlenecks for water utilities to include natural hazards in the development of their WSPs. The research adopted a stakeholders-oriented approach, involving a considerable number of water utilities (168), water sectoral agencies (15) and institutions (68) across the Adriatic-Ionian Region through a stepwise process that generated joint SWOT analysis, the development of a decision support system (DSS) focused on WSPs procedures and tabletop exercises. The final outcomes generated strategic documents (REWAS – Adrion Road map for resilient water supply) that highlighted the necessity for efficient cross-sectoral and inter-institutional cooperation in the development of well-founded and robust WSPs to address natural hazard risk analysis for water supply systems (DWSS).

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