Semi-exact local absorbing boundary condition for seismic wave simulation
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Published version
Author(s)
Izadian, Saeed
Aghazade, Kamal
Amini, Navid
Wang, Yanghua
Type
Journal Article
Abstract
An absorbing boundary condition is necessary in seismic wave simulation for eliminating the unwanted artificial reflections from model boundaries. Existing boundary condition methods often have a trade-off between numerical accuracy and computational efficiency. We proposed a local absorbing boundary condition for frequency-domain finite-difference modelling. The proposed method benefits from exact local plane-wave solution of the acoustic wave equation along predefined directions that effectively reduces the dispersion in other directions. This method has three features: simplicity, accuracy and efficiency. Numerical simulation demonstrated that the proposed method has higher efficiency than the conventional methods such as the second-order absorbing boundary condition and the perfectly matched layer (PML) method. Meanwhile, the proposed method shared the same low-cost feature as the first-order absorbing boundary condition method.
Date Issued
2021-02-01
Date Acceptance
2020-12-08
Citation
Journal of Geophysics and Engineering, 2021, 18 (1), pp.62-73
ISSN
1742-2132
Publisher
Oxford University Press (OUP)
Start Page
62
End Page
73
Journal / Book Title
Journal of Geophysics and Engineering
Volume
18
Issue
1
Copyright Statement
© The Author(s) 2021. Published by Oxford University Press on behalf of the Sinopec Geophysical Research Institute. This is an Open Access article distributed under the terms of
the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium,
provided the original work is properly cited
the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium,
provided the original work is properly cited
License URL
Identifier
https://academic.oup.com/jge/advance-article/doi/10.1093/jge/gxaa068/6125882
Subjects
Geochemistry & Geophysics
0404 Geophysics
0905 Civil Engineering
Publication Status
Published
Date Publish Online
2021-02-01