Underwater Acoustic Technology-Based Monitoring of Oil Spill: A Review

Author:

Pan Huaxin1,Tang Kangxu1,Zhuo Jia1,Lu Yuming1,Chen Jialong1,Lv Zhichao1ORCID

Affiliation:

1. College of Ocean Science and Engineering, Shandong University of Science and Technology, Qingdao 266590, China

Abstract

Acoustic monitoring is an efficient technique for oil spill detection, and the development of acoustic technology is conducive to achieving real-time monitoring of underwater oil spills, providing data references and guidance for emergency response work. Starting from the research background of oil spills, this review summarizes and evaluates the existing research on acoustic technology for monitoring underwater oil spills. Underwater oil spills are more complex than surface oil spills, and further research is needed to investigate the feasibility of acoustic technology in underwater oil spill monitoring, verify the accuracy of monitoring data, and assess its value. In the future, the impact mechanism and dynamic research of acoustic technology in oil spill monitoring should be explored, and the advantages and differences between acoustic technology and other detection techniques should be compared. The significance of auxiliary mechanisms combined with acoustic technology in oil spill monitoring should be studied. Moreover, acoustic research methods and experimental techniques should be enriched and improved to fully tap into the future value of acoustic technology.

Funder

Shandong Province “Double-Hundred” Talent Plan

Key R&D programs

Open project of the State Key Laboratory of Sound Field Acoustic Information

Publisher

MDPI AG

Subject

Ocean Engineering,Water Science and Technology,Civil and Structural Engineering

Reference100 articles.

1. A study of marine oil spills along the Chinese offshore coast;Chen;Mar. Dev. Manag.,2020

2. Probabilistic risk assessment of oil spill from offshore oil wells in Persian Gulf;Raie;Mar. Pollut. Bull.,2018

3. Deep oil spill hazard assessment based on spatio-temporal met-ocean patterns;Chiri;Mar. Pollut. Bull.,2020

4. Rapid assessment tool for oil spill planning and contingencies;Enriquez;Mar. Pollut. Bull.,2021

5. The formation process and responsive impacts of single oil droplet in submerged process;Li;Mar. Pollut. Bull.,2017

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