Numerical Simulation and Application of Vortex Field Monitoring near Islands in Straits

Author:

Luo Chuanzeng1,Wang Xianzhong1,Yu Min1,Meng Qingjie2,Liu Hang1ORCID

Affiliation:

1. School of Naval Architecture, Ocean and Energy Power Engineering, Wuhan University of Technology, Wuhan 430063, China

2. Wuhan Second Ship Design and Research Institute, Wuhan 430064, China

Abstract

This study addresses the issue of vortex current fields near the islands and reefs in China’s straits, which pose significant challenges to engineering construction and navigation safety in the surrounding waters. To monitor these vortex fields, the study proposes an innovative method utilizing acoustic signals. The study utilizes the numerical simulation and phase feature extraction of acoustic signals in the vortex current field, based on ray acoustic theory and time-reversal mirror technology. The study successfully monitored the central position of the vortex core and characteristic radius of the vortex current field near Barley Straw Reef using HYCOM data for the first time. Furthermore, the performance of the method was analyzed under different acoustic phase perturbations and signal-to-noise ratios. The numerical simulation results demonstrate that the acoustic method is effective in monitoring near-shore vortex fields, and the time-reversal mirror technique is useful in extracting phase difference information from acoustic signals generated by vortex currents.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Reference27 articles.

1. Small-scale eddy caused by the Damaigan reefs in Zhoushan;Zhao;Mar. Forecast.,2015

2. Liu, F., Liu, Y., Tang, S., and Li, Q. (2022). Oceanic Kármán Vortex Streets in the Luzon Strait in the Lee of Didicas Island from Multiple Satellite Missions. Remote Sens., 14.

3. Impacts of WRF Model Vertical Grid Resolution on Typhoon Numerical Simulation;Li;Ocean Technol.,2013

4. Mesoscale Eddies off Peru in Altimeter Records: Identification Algorithms and Eddy Spatio-Temporal Patterns;Chaigneau;Prog. Oceanogr.,2008

5. Mesoscale Eddies in the South China Sea Observed with Altimeter Data;Wang;Geophys. Res. Lett.,2003

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