Utilization of fuzzy b-pline for three-dimensional tsunami wave reconstruction from quickbird satellite data
Fuzzy B-spline based on frequency domain is utilized to reconstruct three-dimensional (3D) successive tsunami waves from Quickbird satellite data. In doing so, two-dimensional Fourier transform (2DFFT) is used to retrieve characteristics of tsunami wave spectra i.e. frequency, wavelength, direction...
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my.utm.77612017-10-16T08:40:35Z http://eprints.utm.my/id/eprint/7761/ Utilization of fuzzy b-pline for three-dimensional tsunami wave reconstruction from quickbird satellite data Marghany, Maged Hashim, Mazlan T Technology (General) Fuzzy B-spline based on frequency domain is utilized to reconstruct three-dimensional (3D) successive tsunami waves from Quickbird satellite data. In doing so, two-dimensional Fourier transform (2DFFT) is used to retrieve characteristics of tsunami wave spectra i.e. frequency, wavelength, direction and energy. Thus, fuzzy B-spline is implemented to reconstruct a global topographic structure between the data points were used to support an approximation to the real successive tsunami wave propagations and run-up. The result show the 3D visualization of tsunami wave propagation in which to be the most satisfactory. The maximum tsunami wave height is 6 m which is clearly noticed along along Kalutara coastline. 2008-10-13 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/7761/1/UTILIZATION_OF_FUZZY_B-SPLINE_FOR_THREE-DIMENSIONAL_TSUNAMI_WAVE.pdf Marghany, Maged and Hashim, Mazlan (2008) Utilization of fuzzy b-pline for three-dimensional tsunami wave reconstruction from quickbird satellite data. In: 7th International Symposium & Exhibition on Geoinformation (ISG 2008), 13-15 October 2008, Putra World Trade Centre (PWTC), Kuala Lumpur, Malaysia. |
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T Technology (General) Marghany, Maged Hashim, Mazlan Utilization of fuzzy b-pline for three-dimensional tsunami wave reconstruction from quickbird satellite data |
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Fuzzy B-spline based on frequency domain is utilized to reconstruct three-dimensional (3D) successive tsunami waves from Quickbird satellite data. In doing so, two-dimensional Fourier transform (2DFFT) is used to retrieve characteristics of tsunami wave spectra i.e. frequency, wavelength, direction and energy. Thus, fuzzy B-spline is implemented to reconstruct a global topographic structure between the data points were used to support an approximation to the real successive tsunami wave propagations and run-up. The result show the 3D visualization of tsunami wave propagation in which to be the most satisfactory. The maximum tsunami wave height is 6 m which is clearly noticed along along Kalutara coastline. |
format |
Conference or Workshop Item |
author |
Marghany, Maged Hashim, Mazlan |
author_facet |
Marghany, Maged Hashim, Mazlan |
author_sort |
Marghany, Maged |
title |
Utilization of fuzzy b-pline for three-dimensional tsunami wave reconstruction from quickbird satellite data |
title_short |
Utilization of fuzzy b-pline for three-dimensional tsunami wave reconstruction from quickbird satellite data |
title_full |
Utilization of fuzzy b-pline for three-dimensional tsunami wave reconstruction from quickbird satellite data |
title_fullStr |
Utilization of fuzzy b-pline for three-dimensional tsunami wave reconstruction from quickbird satellite data |
title_full_unstemmed |
Utilization of fuzzy b-pline for three-dimensional tsunami wave reconstruction from quickbird satellite data |
title_sort |
utilization of fuzzy b-pline for three-dimensional tsunami wave reconstruction from quickbird satellite data |
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2008 |
url |
http://eprints.utm.my/id/eprint/7761/1/UTILIZATION_OF_FUZZY_B-SPLINE_FOR_THREE-DIMENSIONAL_TSUNAMI_WAVE.pdf http://eprints.utm.my/id/eprint/7761/ |
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13.211869 |