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  4. Characteristics of short period secondary microseisms (SPSM) in Taiwan: The influence of shallow ocean strait on SPSM
 
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Characteristics of short period secondary microseisms (SPSM) in Taiwan: The influence of shallow ocean strait on SPSM

Journal
Geophysical Research Letters
Journal Volume
38
Journal Issue
4
Date Issued
2011-02-01
Author(s)
Chen, Ying Nien
YUAN-CHENG GUNG  
You, Shuei Huei
SHU-HUEI HUNG  
LING-YUN CHIAO  
Huang, Tzu Ying
Chen, Yen Ling
Liang, Wen Tzong
SEN JAN  
DOI
10.1029/2010GL046290
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/412280
URL
https://api.elsevier.com/content/abstract/scopus_id/79952127809
Abstract
Taking advantage of a unique opportunity provided by a dense array of coastal short-period seismic stations and the diverse bathymetry around Taiwan, we examine how the long-range coherent ambient noises are influenced by surrounding ocean settings using the cross-correlation functions (CCFs) between pairs of stations. The effective energy of the CCFs derived from three components of short-period seismometer data falls within the frequency range of the short period secondary microseism (SPSM). The spatial variations mapped from the amplitude asymmetry of CCFs and source migration images evidently demonstrate that the SPSM strengths are closely linked to the drastic changes in offshore ocean characteristics and result in much stronger SPSM in the shallow and narrow Taiwan Strait than in deep open seas of eastern Taiwan. The temporal variations of the CCF strengths exhibit very good correlations with the wind speeds and wave heights, explicitly indicating the observed SPSM is dominated by local sources generated from wind-driven ocean waves around offshore Taiwan. Copyright © 2011 by the American Geophysical Union.
SDGs

[SDGs]SDG7

Other Subjects
Oceanography; Water waves; Ambient noise; Cross-correlation function; Dense arrays; Effective energy; Frequency ranges; Good correlations; Local source; Ocean waves; Seismic station; Shallow ocean; Short periods; Spatial variations; Taiwan Straits; Temporal variation; Three component; Wave heights; Wind speed; Seismology; amplitude; array; bathymetry; coastal zone; data set; deep sea; energy efficiency; frequency analysis; seismic anisotropy; seismograph; spatial variation; temporal variation; wave height; wind velocity; Taiwan Strait
Publisher
AMER GEOPHYSICAL UNION
Type
journal article
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