稳健性(进化)
能源安全
弹性(材料科学)
粮食安全
心理弹性
业务
发展经济学
国际贸易
经济
工程类
地理
化学
热力学
农业
心理治疗师
电气工程
基因
可再生能源
物理
生物化学
心理学
考古
作者
Xiyin Zhou,Gang Lü,Zhicheng Xu,Xiaoqing Yan,Soon‐Thiam Khu,Junfeng Yang,Jian Zhao
标识
DOI:10.1016/j.resconrec.2022.106657
摘要
The Russian- Ukraine War has and further influence the global energy and food security. However, the detailed influence degree, key weak points and influence process is still unclear in the current. Therefore, this study established a newly improved under-load cascading failure model with consideration of overload limitation, and used it to evaluate influence of Russian- Ukraine War on the global energy and food security. This study also proposed a method to assess the network structure characteristic including robustness and resilience through model simulation under different scenarios. The main results include: The upper limitation of node load has the dominant function on the global energy and food security, while the influence of lower limitation parameter of node load has limited function. All of the networks have relative consistent recover and anti-damage ability against Russian and Ukraine War and the global panic except barley network. A key phenomenon we should concern is that the largest trade flow amounts are not occurred in the failure nodes. The failure nodes are always the countries with low economic scale and political status. The results tell us that we should further strengthen the importance of enhance production ability and energy types to resist the risk of Russian and Ukraine War. The global international organizations are also required to strengthen the function of balance the global security demand of energy and food between big countries and small countries. We should pay more attention to the little countries in the Africa and Asia to handle the risk.
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