Development of jacket platform tsunami risk rating system in waters offshore North Borneo

This work details the simulation of tsunami waves generated by seaquakes in the Manila Trench and their effect on fixed oil and gas jacket platforms in waters offshore North Borneo. For this study, a four-leg living quarter jacket platform located in a water depth of 63m is modelled in SACS v5.3. Ma...

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Main Authors: Lee, H.E., Liew, M.S., Mardi, N.H., Na, K.L., Toloue, I., Wong, S.K.
Format: Article
Language:en_US
Published: 2017
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spelling my.uniten.dspace-59622018-01-26T03:38:47Z Development of jacket platform tsunami risk rating system in waters offshore North Borneo Lee, H.E. Liew, M.S. Mardi, N.H. Na, K.L. Toloue, I. Wong, S.K. This work details the simulation of tsunami waves generated by seaquakes in the Manila Trench and their effect on fixed oil and gas jacket platforms in waters offshore North Borneo. For this study, a four-leg living quarter jacket platform located in a water depth of 63m is modelled in SACS v5.3. Malaysia has traditionally been perceived to be safe from the hazards of earthquakes and tsunamis. Local design practices tend to neglect tsunami waves and include no such provisions. In 2004, a 9.3Mw seaquake occurred off the northwest coast of Aceh, which generated tsunami waves that caused destruction in Malaysia totalling US$ 25 million and 68 deaths. This event prompted an awareness of the need to study the reliability of fixed offshore platforms scattered throughout Malaysian waters. In this paper, we present a review of research on the seismicity of the Manila Trench, which is perceived to be high risk for Southeast Asia. From the tsunami numerical model TUNA-M2, we extract computer-simulated tsunami waves at prescribed grid points in the vicinity of the platforms in the region. Using wave heights as input, we simulate the tsunami using SACS v5.3 structural analysis software of offshore platforms, which is widely accepted by the industry. We employ the nonlinear solitary wave theory in our tsunami loading calculations for the platforms, and formulate a platform-specific risk quantification system. We then perform an intensive structural sensitivity analysis and derive a corresponding platform-specific risk rating model. © 2016, Harbin Engineering University and Springer-Verlag Berlin Heidelberg. 2017-12-08T07:46:46Z 2017-12-08T07:46:46Z 2016 Article 10.1007/s11804-016-1367-5 en_US Development of jacket platform tsunami risk rating system in waters offshore North Borneo. Journal of Marine Science and Application, 15(3), 307-320
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
language en_US
description This work details the simulation of tsunami waves generated by seaquakes in the Manila Trench and their effect on fixed oil and gas jacket platforms in waters offshore North Borneo. For this study, a four-leg living quarter jacket platform located in a water depth of 63m is modelled in SACS v5.3. Malaysia has traditionally been perceived to be safe from the hazards of earthquakes and tsunamis. Local design practices tend to neglect tsunami waves and include no such provisions. In 2004, a 9.3Mw seaquake occurred off the northwest coast of Aceh, which generated tsunami waves that caused destruction in Malaysia totalling US$ 25 million and 68 deaths. This event prompted an awareness of the need to study the reliability of fixed offshore platforms scattered throughout Malaysian waters. In this paper, we present a review of research on the seismicity of the Manila Trench, which is perceived to be high risk for Southeast Asia. From the tsunami numerical model TUNA-M2, we extract computer-simulated tsunami waves at prescribed grid points in the vicinity of the platforms in the region. Using wave heights as input, we simulate the tsunami using SACS v5.3 structural analysis software of offshore platforms, which is widely accepted by the industry. We employ the nonlinear solitary wave theory in our tsunami loading calculations for the platforms, and formulate a platform-specific risk quantification system. We then perform an intensive structural sensitivity analysis and derive a corresponding platform-specific risk rating model. © 2016, Harbin Engineering University and Springer-Verlag Berlin Heidelberg.
format Article
author Lee, H.E.
Liew, M.S.
Mardi, N.H.
Na, K.L.
Toloue, I.
Wong, S.K.
spellingShingle Lee, H.E.
Liew, M.S.
Mardi, N.H.
Na, K.L.
Toloue, I.
Wong, S.K.
Development of jacket platform tsunami risk rating system in waters offshore North Borneo
author_facet Lee, H.E.
Liew, M.S.
Mardi, N.H.
Na, K.L.
Toloue, I.
Wong, S.K.
author_sort Lee, H.E.
title Development of jacket platform tsunami risk rating system in waters offshore North Borneo
title_short Development of jacket platform tsunami risk rating system in waters offshore North Borneo
title_full Development of jacket platform tsunami risk rating system in waters offshore North Borneo
title_fullStr Development of jacket platform tsunami risk rating system in waters offshore North Borneo
title_full_unstemmed Development of jacket platform tsunami risk rating system in waters offshore North Borneo
title_sort development of jacket platform tsunami risk rating system in waters offshore north borneo
publishDate 2017
_version_ 1644493810581897216
score 13.160551