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Quantifying the daily economic impact of extreme space weather due to failure in electricity transmission infrastructure

机译:量化由于输电基础设施故障导致的极端空间天气的日常经济影响

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摘要

Extreme space weather due to coronal mass ejections has the potential to cause considerable disruption to the global economy by damaging the transformers required to operate electricity transmission infrastructure. However, expert opinion is split between the potential outcome being one of a temporary regional blackout and of a more prolonged event. The temporary blackout scenario proposed by some is expected to last the length of the disturbance, with normal operations resuming after a couple of days. On the other hand, others have predicted widespread equipment damage with blackout scenarios lasting months. In this paper we explore the potential costs associated with failure in the electricity transmission infrastructure in the U.S. due to extreme space weather, focusing on daily economic loss. This provides insight into the direct and indirect economic consequences of how an extreme space weather event may affect domestic production, as well as other nations, via supply chain linkages. By exploring the sensitivity of the blackout zone, we show that on average the direct economic cost incurred from disruption to electricity represents only 49% of the total potential macroeconomic cost. Therefore, if indirect supply chain costs are not considered when undertaking cost-benefit analysis of space weather forecasting and mitigation investment, the total potential macroeconomic cost is not correctly represented. The paper contributes to our understanding of the economic impact of space weather, as well as making a number of key methodological contributions relevant for future work. Further economic impact assessment of this threat must consider multiday, multiregional events
机译:由于日冕物质抛射而导致的极端太空天气可能会损坏运行电力传输基础设施所需的变压器,从而对全球经济造成重大破坏。但是,专家的意见是暂时的区域停电和更长时间的事件之一,其潜在结果存在分歧。某些人提出的临时停电方案预计将持续一段时间,并且将在几天后恢复正常运行。另一方面,其他人则预测,随着停电情况持续数月,设备将遭受广泛破坏。在本文中,我们探讨了由于极端太空天气而导致美国输电基础设施故障的潜在成本,重点是日常经济损失。这提供了对极端空间天气事件可能如何通过供应链链接影响国内生产以及其他国家的直接和间接经济后果的见解。通过研究停电区的敏感性,我们发现,平均而言,因电力中断而造成的直接经济成本仅占潜在宏观经济总成本的49%。因此,如果在进行空间天气预报和减灾投资的成本效益分析时未考虑间接供应链成本,则潜在的宏观经济总成本无法正确表示。本文有助于我们对空间天气的经济影响的理解,并为与未来工作相关的许多关键方法学贡献做出了贡献。对该威胁的进一步经济影响评估必须考虑多日,多区域事件

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