Spectral-element simulations of local seismic wave propagation
This report serves to investigate the relationship between seismic wave propagation among nearby receiver stations via simulations based on the Spectral Element Method. The Spectral Element Method is chosen in favour of the Finite Element Method in these simulations due to a special property of t...
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sg-ntu-dr.10356-790182023-02-28T23:11:44Z Spectral-element simulations of local seismic wave propagation Chey, Chun Fei Tong Ping School of Physical and Mathematical Sciences Science::Mathematics::Applied mathematics::Simulation and modeling This report serves to investigate the relationship between seismic wave propagation among nearby receiver stations via simulations based on the Spectral Element Method. The Spectral Element Method is chosen in favour of the Finite Element Method in these simulations due to a special property of the mass matrix being diagonal. In the Spectral Element Method, the model is decomposed into spectral elements and these spectral elements are used to approximate the integration over the Surface and Volume Elements. The Mesh Design includes the formulation of local mesh and global mesh using Gauss-Lobatto-Legendre points that are computed numerically. Parameters related to the simulation are also modified to observe the arrival times of primary and secondary waves. Specific observations such as the behaviour and arrival times of waves, the similarity between nearby station receivers and wave dispersion at higher wave frequencies with a comparison between different parameters in each simulation is noted in this report. Bachelor of Science in Mathematical Sciences 2019-12-02T01:30:24Z 2019-12-02T01:30:24Z 2019 Final Year Project (FYP) http://hdl.handle.net/10356/79018 en 51 p. application/pdf |
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Science::Mathematics::Applied mathematics::Simulation and modeling Chey, Chun Fei Spectral-element simulations of local seismic wave propagation |
description |
This report serves to investigate the relationship between seismic wave propagation among
nearby receiver stations via simulations based on the Spectral Element Method. The Spectral
Element Method is chosen in favour of the Finite Element Method in these simulations due
to a special property of the mass matrix being diagonal. In the Spectral Element Method,
the model is decomposed into spectral elements and these spectral elements are used to approximate
the integration over the Surface and Volume Elements. The Mesh Design includes
the formulation of local mesh and global mesh using Gauss-Lobatto-Legendre points that are
computed numerically. Parameters related to the simulation are also modified to observe the
arrival times of primary and secondary waves. Specific observations such as the behaviour and
arrival times of waves, the similarity between nearby station receivers and wave dispersion at
higher wave frequencies with a comparison between different parameters in each simulation is
noted in this report. |
author2 |
Tong Ping |
author_facet |
Tong Ping Chey, Chun Fei |
format |
Final Year Project |
author |
Chey, Chun Fei |
author_sort |
Chey, Chun Fei |
title |
Spectral-element simulations of local seismic wave propagation |
title_short |
Spectral-element simulations of local seismic wave propagation |
title_full |
Spectral-element simulations of local seismic wave propagation |
title_fullStr |
Spectral-element simulations of local seismic wave propagation |
title_full_unstemmed |
Spectral-element simulations of local seismic wave propagation |
title_sort |
spectral-element simulations of local seismic wave propagation |
publishDate |
2019 |
url |
http://hdl.handle.net/10356/79018 |
_version_ |
1759853478625148928 |