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Microseisms and Their Relationship With Solid Earth, Ocean, and Atmospheric Dynamics: Insights From Ocean Bottom Seismometer Observations in the Northern Okinawa Trough-Ryukyu Arc-Trench System

  • Lalit Arya
  • , Shu Huei Hung*
  • , Ramakrushna Reddy
  • , Ban Yuan Kuo
  • , Ching Ren Lin
  • , Pei Ying Patty Lin
  • , Shuichi Kodaira
  • , Yasushi Ishihara
  • *此作品的通信作者

研究成果: 雜誌貢獻期刊論文同行評審

1   連結會在新分頁中打開 引文 斯高帕斯(Scopus)

摘要

This study investigates the characteristics and generation mechanisms of ocean microseisms in the Northern Okinawa Trough-Ryukyu Arc-Trench System, using continuous recordings from in situ ocean-bottom seismometers and nearby land stations, integrated with the ERA5 climate and ocean reanalysis data sets. The power spectral densities (PSDs) of double-frequency microseisms (DFMs) deviate notably from the classical Peterson's model in the 0.8–4 s period range, suggesting regional noise characteristics that may not be fully captured by global reference curves, especially in complex marine environments. Two distinct DFM peaks are identified at 2–6 s (SPDFM) and 6–10 s (LPDFM), both of which intensify during winter monsoons and typhoons as strong seasonal winds generate high-energy waves that couple efficiently with the seafloor, amplifying microseism activity. SPDFM PSDs correlate strongly with significant wave height (SWH) in marginal seas, such as the East China Sea, where local wave conditions and bathymetric barriers predominantly govern asymmetric energy distributions. In contrast, LPDFM exhibits broader, more symmetrical correlations with SWH, extending into the deeper Philippine Sea and Western Pacific. Single-frequency microseisms (SFM, 10–20 s) display similar patterns but weaker correlations, with both LPDFM and SFM linked to distant swells from the North Atlantic and equatorial Indian Oceans. Polarization analysis indicates that Love waves dominate SPDFM, with contributions from S waves, while sediment cover and topographic features introduce complexity in wave separation. These findings emphasize the role of local and distant wave sources, atmospheric conditions, and bathymetric undulations in modulating microseism generation and propagation, providing a framework for studying atmosphere-ocean-solid earth interactions.

原文英語
文章編號e2024JB031060
期刊Journal of Geophysical Research: Solid Earth
130
發行號12
DOIs
出版狀態已發佈 - 2025 12月

UN SDG

此研究成果有助於以下永續發展目標

  1. SDG 13 - 氣候行動
    SDG 13 氣候行動
  2. SDG 14 - 水下生命
    SDG 14 水下生命

ASJC Scopus subject areas

  • 地球物理
  • 地球化學與岩石學
  • 地球與行星科學(雜項)
  • 空間與行星科學

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