Simulation of Tsunami Wave Spectra on Sri Lanka and Indonesia

This work utilized the Quickbird satellite data to investigate the tsunami spectra run up along the coastal waters of Sri-Lanka and Indonesia. This work emphasized ocean wave propagation model provides with Delft software package to simulate the tsunami wave propagation in Malacca Straits. Edge dete...

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Main Authors: Marghany , Maged, Hashim, Mazlan
Format: Article
Language:English
Published: Asian Association on Remote Sesning 2006
Subjects:
Online Access:http://eprints.utm.my/2164/1/acrs2006_1.pdf
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author Marghany , Maged
Hashim, Mazlan
author_facet Marghany , Maged
Hashim, Mazlan
author_sort Marghany , Maged
collection ePrints
description This work utilized the Quickbird satellite data to investigate the tsunami spectra run up along the coastal waters of Sri-Lanka and Indonesia. This work emphasized ocean wave propagation model provides with Delft software package to simulate the tsunami wave propagation in Malacca Straits. Edge detection algorithms of Soble and Canny used to determine coastal vegetation line changes due to the impact of tsunami event. The study obvious that the coastline of Indonesia exposed to high energy of tsunami wave compared Sri-Lanka coastline. The study shows too Canny algorithm has more precisely implementation in automatic detection of coastal vegetation line than Soble algorithm. It is interesting to predict next tsunami propagation in Malacca Straits. The forecasting model shows that tsunami wave will take 1 hour to reach Singapore coastal water within less than 4 m and takes 30 minutes to reach Penang Island within 15 m. It can be concluded that utilization different source of information and models can be used to draw good exploitation for tsunami mechanism impact and propagation.
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spelling utm.eprints-21642017-09-10T04:53:32Z http://eprints.utm.my/2164/ Simulation of Tsunami Wave Spectra on Sri Lanka and Indonesia Marghany , Maged Hashim, Mazlan QA75 Electronic computers. Computer science GC Oceanography This work utilized the Quickbird satellite data to investigate the tsunami spectra run up along the coastal waters of Sri-Lanka and Indonesia. This work emphasized ocean wave propagation model provides with Delft software package to simulate the tsunami wave propagation in Malacca Straits. Edge detection algorithms of Soble and Canny used to determine coastal vegetation line changes due to the impact of tsunami event. The study obvious that the coastline of Indonesia exposed to high energy of tsunami wave compared Sri-Lanka coastline. The study shows too Canny algorithm has more precisely implementation in automatic detection of coastal vegetation line than Soble algorithm. It is interesting to predict next tsunami propagation in Malacca Straits. The forecasting model shows that tsunami wave will take 1 hour to reach Singapore coastal water within less than 4 m and takes 30 minutes to reach Penang Island within 15 m. It can be concluded that utilization different source of information and models can be used to draw good exploitation for tsunami mechanism impact and propagation. Asian Association on Remote Sesning 2006 Article NonPeerReviewed application/pdf en http://eprints.utm.my/2164/1/acrs2006_1.pdf Marghany , Maged and Hashim, Mazlan (2006) Simulation of Tsunami Wave Spectra on Sri Lanka and Indonesia. Proceedings of Asian Conference on Remote Sensing 2006 .
spellingShingle QA75 Electronic computers. Computer science
GC Oceanography
Marghany , Maged
Hashim, Mazlan
Simulation of Tsunami Wave Spectra on Sri Lanka and Indonesia
title Simulation of Tsunami Wave Spectra on Sri Lanka and Indonesia
title_full Simulation of Tsunami Wave Spectra on Sri Lanka and Indonesia
title_fullStr Simulation of Tsunami Wave Spectra on Sri Lanka and Indonesia
title_full_unstemmed Simulation of Tsunami Wave Spectra on Sri Lanka and Indonesia
title_short Simulation of Tsunami Wave Spectra on Sri Lanka and Indonesia
title_sort simulation of tsunami wave spectra on sri lanka and indonesia
topic QA75 Electronic computers. Computer science
GC Oceanography
url http://eprints.utm.my/2164/1/acrs2006_1.pdf
work_keys_str_mv AT marghanymaged simulationoftsunamiwavespectraonsrilankaandindonesia
AT hashimmazlan simulationoftsunamiwavespectraonsrilankaandindonesia