Monitoring extreme meteo-marine events in the Mediterranean area using the microseism (Medicane Apollo case study)

Author:

Borzì Alfio Marco,Minio Vittorio,Cannavò Flavio,Cavallaro Angelo,D’Amico Sebastiano,Gauci Adam,De Plaen Raphael,Lecocq Thomas,Nardone Gabriele,Orasi Arianna,Picone Marco,Cannata Andrea

Abstract

AbstractMicroseism is the continuous background seismic signal caused by the interaction between the atmosphere, the hydrosphere and the solid Earth. Several studies have dealt with the relationship between microseisms and the tropical cyclones, but none focused on the small-scale tropical cyclones that occur in the Mediterranean Sea, called Medicanes. In this work, we analysed the Medicane Apollo which impacted the eastern part of Sicily during the period 25 October–5 November 2021 causing heavy rainfall, strong wind gusts and violent sea waves. We investigated the microseism accompanying this extreme Mediterranean weather event, and its relationship with the sea state retrieved from hindcast maps and wave buoys. The spectral and amplitude analyses showed the space–time variation of the microseism amplitude. In addition, we tracked the position of Apollo during the time using two different methods: (i) a grid search method; (ii) an array analysis. We obtained a good match between the real position of Apollo and the location constraint by both methods. This work shows that it is possible to extract information on Medicanes from microseisms for both research and monitoring purposes.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Long-term analysis of microseism during extreme weather events: Medicanes and common storms in the Mediterranean Sea;Science of The Total Environment;2024-03

2. Integration of microseism, wavemeter buoy, HF radar and hindcast data to analyze the Mediterranean cyclone Helios;Ocean Science;2024-01-08

3. Characterization of extreme wave fields during Mediterranean tropical-like cyclones;Frontiers in Marine Science;2024-01-08

4. Assessment of Medicane Helios meteo-marine parameters using a machine learning approach;2023 IEEE International Workshop on Metrology for the Sea; Learning to Measure Sea Health Parameters (MetroSea);2023-10-04

5. A new technical approach to automatically detect the thermal drop in seawater associated to the occurrence of Medicane events;2023 IEEE International Workshop on Metrology for the Sea; Learning to Measure Sea Health Parameters (MetroSea);2023-10-04

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