Characterization of necessary elements for a definition of resilience for the energy system

IF 4.6 3区 工程技术 Q2 ENERGY & FUELS
Bernhard-Johannes Jesse, Gert Jan Kramer, Vinzenz Koning
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Abstract

Background

To reduce the effects of climate change, the current fossil-based energy system must transition to a low-carbon system based largely on renewables. In both academic literature and non-academic discourse concerning the energy transition, resilience is frequently mentioned as an additional objective or requirement. Despite its frequent use, resilience is a very malleable term with different meanings in different contexts.

Main text

This paper seeks to identify how resilience is understood in the field of the energy system and whether there are similar aspects in the different ways the term is understood. To this end, we review more than 130 papers for definitions of energy system resilience. In addition, we use different aspects to categorize and examine these. The results paint a diverse picture in terms of the definition and understanding of resilience in the energy system. However, a few definition archetypes can be identified. The first uses a straightforward approach, in which the energy system has one clearly defined equilibrium state. Here, resilience is defined in relation to the response of the energy system to a disturbance and its ability to quickly return to its equilibrium. The second type of resilience allows for different equilibriums, to which a resilient energy system can move after a disruption. Another type of resilience focuses more on the process and the actions of the system in response to disruption. Here, resilience is defined as the ability of the system to adapt and change. In the papers reviewed, we find that the operational definition of resilience often encompasses aspects of different archetypes. This diversity shows that resilience is a versatile concept with different elements.

Conclusions

With this paper, we aim to provide insight into how the understanding of resilience for the energy system differs depending on which aspect of the energy system is studied, and which elements might be necessary for different understandings of resilience. We conclude by providing information and recommendations on the potential usage of the term energy system resilience based on our lessons learned.

确定能源系统复原力定义所需的要素特征
为了减少气候变化的影响,目前以化石为基础的能源系统必须过渡到主要以可再生能源为基础的低碳系统。在有关能源转型的学术文献和非学术论述中,复原力经常被作为额外目标或要求提及。尽管抗灾能力被频繁使用,但它是一个非常容易变通的术语,在不同的语境下有不同的含义。本文试图确定能源系统领域是如何理解复原力的,以及不同的理解方式是否存在相似之处。为此,我们查阅了 130 多篇关于能源系统复原力定义的论文。此外,我们还从不同方面对这些定义进行了分类和研究。结果显示,能源系统复原力的定义和理解多种多样。不过,我们还是发现了一些定义原型。第一种采用直接的方法,即能源系统有一个明确定义的平衡状态。在这种情况下,复原力的定义与能源系统对干扰的反应及其迅速恢复平衡的能力有关。第二类复原力允许不同的平衡状态,复原力较强的能源系统在受到干扰后可以移动到不同的平衡状态。另一种复原力则更侧重于系统应对干扰的过程和行动。在这里,复原力被定义为系统适应和改变的能力。在所审查的论文中,我们发现复原力的实际定义往往包含不同原型的各个方面。这种多样性表明,抗灾能力是一个包含不同要素的多功能概念。通过本文,我们希望深入了解对能源系统复原力的理解如何因研究能源系统的哪个方面而有所不同,以及对复原力的不同理解可能需要哪些要素。最后,我们将根据我们的经验教训,就能源系统复原力一词的潜在用法提供信息和建议。
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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来源期刊
Energy, Sustainability and Society
Energy, Sustainability and Society Energy-Energy Engineering and Power Technology
CiteScore
9.60
自引率
4.10%
发文量
45
审稿时长
13 weeks
期刊介绍: Energy, Sustainability and Society is a peer-reviewed open access journal published under the brand SpringerOpen. It covers topics ranging from scientific research to innovative approaches for technology implementation to analysis of economic, social and environmental impacts of sustainable energy systems.
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