Route Optimization of Offshore Lifelines Taking Into Account Potential Earthquake-Related Geohazards

Offshore lifelines, such as gas pipelines and cables, consist large-scale and very important engineering projects, while their safe operation is undoubtedly a challenging task. Offshore lifelines usually cross submarine areas facing various offshore geohazards, which are very often related (directly...

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Main Authors: Nikolaos Makrakis, Prodromos N. Psarropoulos, Dionysios Chatzidakis, Yiannis Tsompanakis
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-07-01
Series:Frontiers in Built Environment
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fbuil.2020.00112/full
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spelling doaj-c5c1e41a9c5548328bc5a8cb42fa2b992020-11-25T03:48:31ZengFrontiers Media S.A.Frontiers in Built Environment2297-33622020-07-01610.3389/fbuil.2020.00112541002Route Optimization of Offshore Lifelines Taking Into Account Potential Earthquake-Related GeohazardsNikolaos Makrakis0Prodromos N. Psarropoulos1Dionysios Chatzidakis2Yiannis Tsompanakis3School of Rural and Surveying Engineering, National Technical University of Athens, Athens, GreeceSchool of Rural and Surveying Engineering, National Technical University of Athens, Athens, GreeceSchool of Environmental Engineering, Technical University of Crete, Chania, GreeceSchool of Environmental Engineering, Technical University of Crete, Chania, GreeceOffshore lifelines, such as gas pipelines and cables, consist large-scale and very important engineering projects, while their safe operation is undoubtedly a challenging task. Offshore lifelines usually cross submarine areas facing various offshore geohazards, which are very often related (directly or indirectly) with local seismicity. Therefore, in order to avoid severe damages with devastating consequences, it is of paramount importance to optimize their design, taking realistically into account all earthquake-related geohazards and their detrimental effects on the examined lifeline. Since the avoidance of all geohazardous areas is not always feasible, the route optimization of a lifeline at an early stage of the design phase is very crucial for its safety and serviceability. The current study presents a new smart decision-support tool that aims to facilitate route optimization of offshore lifelines through: (a) the qualitative and quantitative assessment of the major earthquake-related geohazards along a possible lifeline routing, (b) the quantitative assessment of their potential impact on the lifeline, and (c) the selection of the optimum lifeline route. The proposed decision-support tool can be very useful for the efficient design of an offshore lifeline, provided that adequate and reliable input data are available. Its efficiency is illustrated with two characteristic case studies in the Mediterranean Sea.https://www.frontiersin.org/article/10.3389/fbuil.2020.00112/fulloffshore lifelinespipelines and cablesroute optimizationgeohazardsfinite element analysisgeographic information system
collection DOAJ
language English
format Article
sources DOAJ
author Nikolaos Makrakis
Prodromos N. Psarropoulos
Dionysios Chatzidakis
Yiannis Tsompanakis
spellingShingle Nikolaos Makrakis
Prodromos N. Psarropoulos
Dionysios Chatzidakis
Yiannis Tsompanakis
Route Optimization of Offshore Lifelines Taking Into Account Potential Earthquake-Related Geohazards
Frontiers in Built Environment
offshore lifelines
pipelines and cables
route optimization
geohazards
finite element analysis
geographic information system
author_facet Nikolaos Makrakis
Prodromos N. Psarropoulos
Dionysios Chatzidakis
Yiannis Tsompanakis
author_sort Nikolaos Makrakis
title Route Optimization of Offshore Lifelines Taking Into Account Potential Earthquake-Related Geohazards
title_short Route Optimization of Offshore Lifelines Taking Into Account Potential Earthquake-Related Geohazards
title_full Route Optimization of Offshore Lifelines Taking Into Account Potential Earthquake-Related Geohazards
title_fullStr Route Optimization of Offshore Lifelines Taking Into Account Potential Earthquake-Related Geohazards
title_full_unstemmed Route Optimization of Offshore Lifelines Taking Into Account Potential Earthquake-Related Geohazards
title_sort route optimization of offshore lifelines taking into account potential earthquake-related geohazards
publisher Frontiers Media S.A.
series Frontiers in Built Environment
issn 2297-3362
publishDate 2020-07-01
description Offshore lifelines, such as gas pipelines and cables, consist large-scale and very important engineering projects, while their safe operation is undoubtedly a challenging task. Offshore lifelines usually cross submarine areas facing various offshore geohazards, which are very often related (directly or indirectly) with local seismicity. Therefore, in order to avoid severe damages with devastating consequences, it is of paramount importance to optimize their design, taking realistically into account all earthquake-related geohazards and their detrimental effects on the examined lifeline. Since the avoidance of all geohazardous areas is not always feasible, the route optimization of a lifeline at an early stage of the design phase is very crucial for its safety and serviceability. The current study presents a new smart decision-support tool that aims to facilitate route optimization of offshore lifelines through: (a) the qualitative and quantitative assessment of the major earthquake-related geohazards along a possible lifeline routing, (b) the quantitative assessment of their potential impact on the lifeline, and (c) the selection of the optimum lifeline route. The proposed decision-support tool can be very useful for the efficient design of an offshore lifeline, provided that adequate and reliable input data are available. Its efficiency is illustrated with two characteristic case studies in the Mediterranean Sea.
topic offshore lifelines
pipelines and cables
route optimization
geohazards
finite element analysis
geographic information system
url https://www.frontiersin.org/article/10.3389/fbuil.2020.00112/full
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