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Low carbon technology performance vs infrastructure vulnerability: Analysis through the local and global properties space

机译:低碳技术性能与基础设施漏洞:通过本地和全球属性空间进行分析

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摘要

Renewable energy technologies, necessary for low-carbon infrastructure networks, are being adopted to help reduce fossil fuel dependence and meet carbon mitigation targets. The evolution of these technologies has progressed based on the enhancement of technology-specific performance criteria, without explicitly considering the wider system (global) impacts. This paper presents a methodology for simultaneously assessing local (technology) and global (infrastructure) performance, allowing key technological interventions to be evaluated with respect to their effect on the vulnerability of wider infrastructure systems. We use exposure of low carbon infrastructure to critical material supply disruption (criticality) to demonstrate the methodology. A series of local performance changes are analyzed; and by extension of this approach, a method for assessing the combined criticality of multiple materials for one specific technology is proposed. Via a case study of wind turbines at both the material (magnets) and technology (turbine generators) levels, we demonstrate that analysis of a given intervention at different levels can lead to differing conclusions regarding the effect on vulnerability. Infrastructure design decisions should take a systemic approach; without these multilevel considerations, strategic goals aimed to help meet low-carbon targets, that is, through long-term infrastructure transitions, could be significantly jeopardized.
机译:低碳基础设施网络所必需的可再生能源技术正在被采用,以帮助减少对化石燃料的依赖并达到减碳目标。这些技术的发展是基于特定于技术的性能标准的增强而没有明确考虑更广泛的系统(全球)影响的。本文提出了一种同时评估本地(技术)和全球(基础设施)性能的方法,从而可以评估关键技术干预措施对更广泛的基础设施系统的脆弱性的影响。我们使用低碳基础设施暴露于关键材料供应中断(临界)的情况来论证该方法。分析了一系列本地性能变化;并且通过扩展这种方法,提出了一种用于评估一种特定技术的多种材料的组合临界度的方法。通过在材料(磁体)和技术(涡轮发电机)级别上的风力涡轮机案例研究,我们证明了对不同级别的给定干预措施的分析可以得出有关对脆弱性影响的不同结论。基础架构设计决策应采用系统方法;如果没有这些多层次的考虑,旨在帮助实现低碳目标(即通过长期基础设施过渡)的战略目标可能会受到严重危害。

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