Computational Aspects of Submarine Slide Generated Tsunami
Submarine landslide is the most serious threat on both local and regional scales. Tsunami phenomenon induced by submarine slide has put us on the challenge in understanding from generation mechanism to propagation and coastal inundation and mitigating the risk from submarine slide generated tsunami...
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my.utp.eprints.116412015-04-28T02:54:07Z Computational Aspects of Submarine Slide Generated Tsunami Vo Nguyen, Phy Huan Harahap, Indra Sati H TA Engineering (General). Civil engineering (General) Submarine landslide is the most serious threat on both local and regional scales. Tsunami phenomenon induced by submarine slide has put us on the challenge in understanding from generation mechanism to propagation and coastal inundation and mitigating the risk from submarine slide generated tsunami. This research presents the numerical simulation methodology by Smooth Particle Hydrodynamics (SPH) to investigate the impact forces of tsunami waves with the aid of physical modeling. By using parallelSPHysics, it is a source code based on the SPH method to model nearly‐incompressible flows, including various physical processes. The conclusions may potentially be taken as guideline of mitigate the risk from tsunami wave. 2014-08 Non-Citation Index Journal PeerReviewed application/pdf http://eprints.utp.edu.my/11641/1/AMM.567.216.pdf Vo Nguyen, Phy Huan and Harahap, Indra Sati H (2014) Computational Aspects of Submarine Slide Generated Tsunami. [Non-Citation Index Journal] http://eprints.utp.edu.my/11641/ |
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TA Engineering (General). Civil engineering (General) Vo Nguyen, Phy Huan Harahap, Indra Sati H Computational Aspects of Submarine Slide Generated Tsunami |
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Submarine landslide is the most serious threat on both local and regional scales. Tsunami phenomenon induced by submarine slide has put us on the challenge in understanding from generation mechanism to propagation and coastal inundation and mitigating the risk from submarine
slide generated tsunami. This research presents the numerical simulation methodology by Smooth Particle Hydrodynamics (SPH) to investigate the impact forces of tsunami waves with the aid of physical modeling. By using parallelSPHysics, it is a source code based on the SPH method to model nearly‐incompressible flows, including various physical processes. The conclusions may potentially be taken as guideline of mitigate the risk from tsunami wave. |
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Non-Citation Index Journal |
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Vo Nguyen, Phy Huan Harahap, Indra Sati H |
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Vo Nguyen, Phy Huan Harahap, Indra Sati H |
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Vo Nguyen, Phy Huan |
title |
Computational Aspects of Submarine Slide Generated Tsunami |
title_short |
Computational Aspects of Submarine Slide Generated Tsunami |
title_full |
Computational Aspects of Submarine Slide Generated Tsunami |
title_fullStr |
Computational Aspects of Submarine Slide Generated Tsunami |
title_full_unstemmed |
Computational Aspects of Submarine Slide Generated Tsunami |
title_sort |
computational aspects of submarine slide generated tsunami |
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2014 |
url |
http://eprints.utp.edu.my/11641/1/AMM.567.216.pdf http://eprints.utp.edu.my/11641/ |
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