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利用电磁数据进行海啸源估计:全面综述

Harnessing electromagnetic data for tsunami source estimation: a comprehensive review.

作者信息

Baba Toshitaka, Lin Zhiheng, Minami Takuto, Toh Hiroaki

机构信息

Graduate School of Technology, Industrial and Social Sciences, Tokushima University, Tokushima, Japan.

Center for Data Assimilation Research and Applications, Joint Support-Center for Data Science Research, Tachikawa, Japan.

出版信息

Philos Trans A Math Phys Eng Sci. 2024 Dec 23;382(2286):20240082. doi: 10.1098/rsta.2024.0082. Epub 2024 Dec 2.

Abstract

Ocean-bottom pressure gauges are widely used for tsunami observations due to their established accuracy and stability. Recent advancements reveal that the magnetic field fluctuates when a large tsunami passes over the ocean, suggesting potential alternatives to pressure gauges in the form of ocean-bottom electromagnetometers (OBEMs). This article offers a comprehensive synthesis of recent findings concerning tsunami magnetic fields and their utility in tsunami source estimation. In addition, we scrutinize the effectiveness of tsunami observations employing OBEMs. Despite the promise of electromagnetometers, it is worth noting that the background noise inherent in electromagnetic observations tends to be approximately 10 times greater than that of pressure observations within the critical tsunami frequency bands. The Earth's magnetic field sporadically disrupts tsunami magnetic fields, presenting a potential limitation to the utility of electromagnetometers in tsunami detection when compared with pressure gauges. Nevertheless, our investigation underscores the potential of electromagnetic observations in detecting tsunamis propagating over the ocean at magnitudes of a few centimetres. An invaluable advantage of electromagnetometers over pressure monitoring lies in their capability to observe tsunami velocity fields, suggesting a promising avenue for further research and development in tsunami observation technology.This article is part of the theme issue 'Magnetometric remote sensing of Earth and planetary oceans'.

摘要

海底压力传感器因其既定的准确性和稳定性而被广泛用于海啸观测。最近的进展表明,当大型海啸越过海洋时,磁场会发生波动,这表明海底电磁仪(OBEM)可能是压力传感器的潜在替代品。本文全面综合了有关海啸磁场及其在海啸源估计中的效用的最新发现。此外,我们还审视了使用OBEM进行海啸观测的有效性。尽管电磁仪前景广阔,但值得注意的是,在关键海啸频段内,电磁观测固有的背景噪声往往比压力观测的背景噪声大约高10倍。地球磁场偶尔会干扰海啸磁场,与压力传感器相比,这对电磁仪在海啸探测中的效用构成了潜在限制。尽管如此,我们的研究强调了电磁观测在探测海洋中传播的几厘米级海啸方面的潜力。电磁仪相对于压力监测的一个宝贵优势在于其能够观测海啸速度场,这为海啸观测技术的进一步研究和开发提供了一条有前景的途径。本文是主题为“地球和行星海洋的磁力遥感”的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b6e/11608826/3000fb4d0922/rsta.2024.0082.f001.jpg

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