PEMODELAN NUMERIK PERAMBATAN GELOMBANG SEISMIK DALAM MEDIUM ANISOTROP MENGGUNAKAN METODE FINITE DIFFERENCE STUDI KASUS : LAPISAN BATUBARA TERSESARKAN DAN DANGKAL-DALAM

The crustal rocks in the earth are mostly anisotropic medium. However, they are usually assumed to be isotropic because isotropy modelling is much simpler than anisotropy. There are different characters on every direction of seismic wave propagation in anisotropic medium. On the other hand, anisotro...

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Main Authors: , AGUSTINA ARIYANTI, , Drs. Waluyo, M.Sc., Ph.D.
Format: Theses and Dissertations NonPeerReviewed
Published: [Yogyakarta] : Universitas Gadjah Mada 2014
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Online Access:https://repository.ugm.ac.id/128927/
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spelling id-ugm-repo.1289272016-03-04T07:51:49Z https://repository.ugm.ac.id/128927/ PEMODELAN NUMERIK PERAMBATAN GELOMBANG SEISMIK DALAM MEDIUM ANISOTROP MENGGUNAKAN METODE FINITE DIFFERENCE STUDI KASUS : LAPISAN BATUBARA TERSESARKAN DAN DANGKAL-DALAM , AGUSTINA ARIYANTI , Drs. Waluyo, M.Sc., Ph.D. ETD The crustal rocks in the earth are mostly anisotropic medium. However, they are usually assumed to be isotropic because isotropy modelling is much simpler than anisotropy. There are different characters on every direction of seismic wave propagation in anisotropic medium. On the other hand, anisotropy modelling requires more parameter and more complicated calculation than isotropy. Nevertheless, anisotropy modelling is needed to produce more realistic seismic data. A computer program of seismic wave propagation in 2D anisotropic medium was carried out using staggered-grid fourth order finite difference method by MATLAB. This program was verified by comparing the seismogram with the analytical result. Then this program was applied in two models of coal bed, which are faulted and shallow-deep coal beds. Both of the models were built to be anisotropic and isotropic medium. Anisotropic coal bed indicated that there are differences between arrival times of seismic wave in both medium. This condition could influence processing and interpretation of seismic data result. Anisotropic medium produced higher AVO and wave dispersion effect than isotropic medium. Keywords: anisotropy, isotropy, finite difference, seismic wave [Yogyakarta] : Universitas Gadjah Mada 2014 Thesis NonPeerReviewed , AGUSTINA ARIYANTI and , Drs. Waluyo, M.Sc., Ph.D. (2014) PEMODELAN NUMERIK PERAMBATAN GELOMBANG SEISMIK DALAM MEDIUM ANISOTROP MENGGUNAKAN METODE FINITE DIFFERENCE STUDI KASUS : LAPISAN BATUBARA TERSESARKAN DAN DANGKAL-DALAM. UNSPECIFIED thesis, UNSPECIFIED. http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=69302
institution Universitas Gadjah Mada
building UGM Library
country Indonesia
collection Repository Civitas UGM
topic ETD
spellingShingle ETD
, AGUSTINA ARIYANTI
, Drs. Waluyo, M.Sc., Ph.D.
PEMODELAN NUMERIK PERAMBATAN GELOMBANG SEISMIK DALAM MEDIUM ANISOTROP MENGGUNAKAN METODE FINITE DIFFERENCE STUDI KASUS : LAPISAN BATUBARA TERSESARKAN DAN DANGKAL-DALAM
description The crustal rocks in the earth are mostly anisotropic medium. However, they are usually assumed to be isotropic because isotropy modelling is much simpler than anisotropy. There are different characters on every direction of seismic wave propagation in anisotropic medium. On the other hand, anisotropy modelling requires more parameter and more complicated calculation than isotropy. Nevertheless, anisotropy modelling is needed to produce more realistic seismic data. A computer program of seismic wave propagation in 2D anisotropic medium was carried out using staggered-grid fourth order finite difference method by MATLAB. This program was verified by comparing the seismogram with the analytical result. Then this program was applied in two models of coal bed, which are faulted and shallow-deep coal beds. Both of the models were built to be anisotropic and isotropic medium. Anisotropic coal bed indicated that there are differences between arrival times of seismic wave in both medium. This condition could influence processing and interpretation of seismic data result. Anisotropic medium produced higher AVO and wave dispersion effect than isotropic medium. Keywords: anisotropy, isotropy, finite difference, seismic wave
format Theses and Dissertations
NonPeerReviewed
author , AGUSTINA ARIYANTI
, Drs. Waluyo, M.Sc., Ph.D.
author_facet , AGUSTINA ARIYANTI
, Drs. Waluyo, M.Sc., Ph.D.
author_sort , AGUSTINA ARIYANTI
title PEMODELAN NUMERIK PERAMBATAN GELOMBANG SEISMIK DALAM MEDIUM ANISOTROP MENGGUNAKAN METODE FINITE DIFFERENCE STUDI KASUS : LAPISAN BATUBARA TERSESARKAN DAN DANGKAL-DALAM
title_short PEMODELAN NUMERIK PERAMBATAN GELOMBANG SEISMIK DALAM MEDIUM ANISOTROP MENGGUNAKAN METODE FINITE DIFFERENCE STUDI KASUS : LAPISAN BATUBARA TERSESARKAN DAN DANGKAL-DALAM
title_full PEMODELAN NUMERIK PERAMBATAN GELOMBANG SEISMIK DALAM MEDIUM ANISOTROP MENGGUNAKAN METODE FINITE DIFFERENCE STUDI KASUS : LAPISAN BATUBARA TERSESARKAN DAN DANGKAL-DALAM
title_fullStr PEMODELAN NUMERIK PERAMBATAN GELOMBANG SEISMIK DALAM MEDIUM ANISOTROP MENGGUNAKAN METODE FINITE DIFFERENCE STUDI KASUS : LAPISAN BATUBARA TERSESARKAN DAN DANGKAL-DALAM
title_full_unstemmed PEMODELAN NUMERIK PERAMBATAN GELOMBANG SEISMIK DALAM MEDIUM ANISOTROP MENGGUNAKAN METODE FINITE DIFFERENCE STUDI KASUS : LAPISAN BATUBARA TERSESARKAN DAN DANGKAL-DALAM
title_sort pemodelan numerik perambatan gelombang seismik dalam medium anisotrop menggunakan metode finite difference studi kasus : lapisan batubara tersesarkan dan dangkal-dalam
publisher [Yogyakarta] : Universitas Gadjah Mada
publishDate 2014
url https://repository.ugm.ac.id/128927/
http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=69302
_version_ 1681232881363451904