Comparison between staggered grid finite difference method and stochastic method in simulating strong ground motions

Strong ground motion of an earthquake is simulated by using both staggered grid finite difference method (FDM) and stochastic method, respectively. The acceleration time histories obtained from the both ways and their response spectra are compared. The result demonstrates that the former is adequate...

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Published inActa seismologica sinica Vol. 18; no. 5; pp. 582 - 589
Main Authors Wang, Man-sheng, Jiang, Hui, Hu, Yu-xian
Format Journal Article
LanguageChinese
English
Published Beijing Springer Nature B.V 01.09.2005
Civil & Environmental Engineering School, Beijing University of Science and Technology, Beijing 100083, China
Institute of Geophysics, China Earthquake Administration, Beijing 100081, China%Institute of Geophysics, China Earthquake Administration, Beijing 100081, China
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Abstract Strong ground motion of an earthquake is simulated by using both staggered grid finite difference method (FDM) and stochastic method, respectively. The acceleration time histories obtained from the both ways and their response spectra are compared. The result demonstrates that the former is adequate to simulate the low-frequency seismic wave; the latter is adequate to simulate the high-frequency seismic wave. Moreover, the result obtained from FDM can better reflect basin effects.
AbstractList Strong ground motion of an earthquake is simulated by using both staggered grid finite difference method (FDM) and stochastic method, respectively. The acceleration time histories obtained from the both ways and their response spectra are compared. The result demonstrates that the former is adequate to simulate the low-frequency seismic wave; the latter is adequate to simulate the high-frequency seismic wave. Moreover, the result obtained from FDM can better reflect basin effects.
P315.8; Strong ground motion of an earthquake is simulated by using both staggered grid finite difference method (FDM)and stochastic method, respectively. The acceleration time histories obtained from the both ways and their response spectra are compared. The result demonstrates that the former is adequate to simulate the low-frequency seismic wave; the latter is adequate to simulate the high-frequency seismic wave. Moreover, the result obtained from FDM can better reflect basin effects.
Strong ground motion of an earthquake is simulated by using both staggered grid finite difference method (FDM) and stochastic method, respectively. The acceleration time histories obtained from the both ways and their response spectra are compared. The result demonstrates that the former is adequate to simulate the low-frequency seismic wave; the latter is adequate to simulate the high-frequency seismic wave. Moreover, the result obtained from FDM can better reflect basin effects.[PUBLICATION ABSTRACT]
Author Hu, Yu-xian
Wang, Man-sheng
Jiang, Hui
AuthorAffiliation Civil & Environmental Engineering School, Beijing University of Science and Technology, Beijing 100083, China;Institute of Geophysics, China Earthquake Administration, Beijing 100081, China%Institute of Geophysics, China Earthquake Administration, Beijing 100081, China
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10.1785/BSSA0820031511
10.1126/science.270.5242.1628
10.1785/BSSA0890010054
10.1785/BSSA0830041042
10.4294/jpe1952.44.563
10.1190/1.1442147
10.1785/BSSA0860041091
10.1029/JB084iB05p02348
10.1190/1.1442422
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Keywords staggered grid
stochastic
simulating seismic wave
finite difference
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Snippet Strong ground motion of an earthquake is simulated by using both staggered grid finite difference method (FDM) and stochastic method, respectively. The...
P315.8; Strong ground motion of an earthquake is simulated by using both staggered grid finite difference method (FDM)and stochastic method, respectively. The...
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SubjectTerms Earthquakes
Finite difference method
Ground motion
Grounds
Heat transfer
Mathematical analysis
Mathematical models
Seismic activity
Seismic phenomena
Seismic waves
Simulation
Spectra
Stochasticity
Studies
Title Comparison between staggered grid finite difference method and stochastic method in simulating strong ground motions
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