Strengthening resilience: decentralized decision-making and multi-criteria analysis in the energy-water-food nexus systems

Maryam Haji, Sarah Namany, Tareq Al-Ansari
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Abstract

The Energy-Water-Food (EWF) nexus is a complex and multidimensional system, in which the energy, water and food resources are strongly interconnected. EWF nexus systems are seriously threatened by natural hazards (e.g., climate change and extreme weather events) along with other human-driven threats, including rapid population growth, urbanization, terrorism, and geopolitical uncertainty. As such, integrated analysis, as encouraged by the EWF nexus can facilitate the identification of essential connections and potential conflicts that may arise in the planning and operation of resource systems. Moreover, in order to consider immediate shocks and long-term pressures, it is imperative to prioritize the strengthening of EWF system resilience by incorporating robust and efficient resource management strategies, which consider various dimensions of sustainability and security such as technical, environmental, economic, and societal aspects. Decentralization is one concept that has the potential of improving the resilience of nexus systems faced to the multiple risks governing them through reducing single points of failure and enabling swifter responses to sudden shocks and continuous volatilities. However, in order to achieve a holistic system resilience through decentralization, the assessment of the different risks impacting each nexus sector is fundamental, yet it can be particularly challenging. Therefore, the objective of this study is to review the currently available resilience assessment methods for the EWF nexus system. The systematic literature review will connect various assessment methods used within decentralization studies that are applied to improve the resilience performance of the EWF nexus system. A total of 84 journal papers were evaluated. The review demonstrates that the deployment of multi-criteria decision-making framework based on composite indicators can be effective in addressing risks and uncertainties within EWF systems. Furthermore, findings of this review illustrate complementary connections between decentralization and resilience concepts, which when integrated with the EWF nexus approach, can be effectively utilized for integrated sustainable resource management.
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加强复原力:能源-水-粮食关系系统中的分散决策和多重标准分析
能源-水-粮食(EWF)关系是一个复杂的多维系统,其中能源、水和粮食资源紧密相连。能源-水-食物关系系统受到自然灾害(如气候变化和极端天气事件)以及其他人类驱动的威胁的严重威胁,包括人口快速增长、城市化、恐怖主义和地缘政治的不确定性。因此,EWF 关系所鼓励的综合分析有助于确定资源系统规划和运行过程中可能出现的基本联系和潜在冲突。此外,为了考虑当前的冲击和长期的压力,必须优先考虑加强 EWF 系统的复原力,纳入稳健高效的资源管理战略,考虑可持续性和安全性的各个层面,如技术、环境、经济和社会方面。权力下放是一个概念,有可能通过减少单点故障,更迅速地应对突发冲击和持续波动,从而提高面临多重风险的关联系统的复原力。然而,为了通过权力下放实现系统的整体复原力,对影响每个关联部门的不同风险进行评估是至关重要的,但这可能特别具有挑战性。因此,本研究的目标是审查目前可用的 EWF 关联系统复原力评估方法。系统性的文献综述将把分散化研究中使用的各种评估方法联系起来,这些方法可用于提高 EWF 关联系统的复原力。共评估了 84 篇期刊论文。综述表明,采用基于综合指标的多标准决策框架可以有效地应对 EWF 系统中的风险和不确定性。此外,综述结果还说明了权力下放和复原力概念之间的互补联系,当这些概念与环境、生命和粮食关系方法相结合时,可有效用于综合可持续资源管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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