Quantifying the Resilience Performance of Airport Flight Operation to Severe Weather

Wang, Xinglong and Chen, Ziyan and Li, Kenan (2022) Quantifying the Resilience Performance of Airport Flight Operation to Severe Weather. Aerospace, 9 (7). p. 344. ISSN 2226-4310

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Abstract

The increased number of severe weather events caused by global warming in recent years is a major turbulence factor for airport operation and results in more irregular flights. Quantifying the system response status towards turbulence is critical, in order for airports to deal with severe weather. For this reason, we propose a resilience framework that is in compliance with resilience theory to evaluate airport flight operations. In this framework, the departure rate (DPR), normal weather baseline (NWB), and nonnegative general resilience (NGR) were defined and used. Meanwhile, the whole process is divided into five phases before and after disturbance, and the system capacities of susceptibility, absorption, adaptation, and recovery are assessed. In order to clarify the performance of the framework towards various severe weather conditions, an analysis was conducted at Beijing Capital Airport in China based on a dataset that includes both the meteorological terminal aviation weather report (METAR) and flight operations from January to July 2021. The results show that the newly proposed resilience framework can commendably reflect airport flight operation performance. The airport flight operation resilience characteristic is different with severe weather. Compared to sandstorms and snow, airport flight operation with stronger robustness was observed during thunderstorm events. The study also confirms that, as the weather warning level increases, the disruption time increases and response time decreases accordingly. The above results could assist researchers and policy makers in clearly understanding the real-world resilience of airport flight operation, in both theory and practice, and responding to emergent disruptive events effectively.

Item Type: Article
Subjects: Lib Research Guardians > Engineering
Depositing User: Unnamed user with email support@lib.researchguardians.com
Date Deposited: 13 Apr 2023 08:14
Last Modified: 29 Jul 2024 05:44
URI: http://eprints.classicrepository.com/id/eprint/693

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