The trade-off analysis for the mitigation of underwater noise pollution from commercial vessels: case study – Trans Mountain project, Port of Vancouver, Canada

Although shipping has significant positive effect on human civilization, it introduced negative environmental impacts such as oil, air, and plastic pollutions. Many negative externalities through international and local regulations have been in place, and preventive actions have been taken to monito...

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Published in:Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment
Main Authors: Vakili, Seyedvahid, Ölcer, Aykut I., Ballini, Fabio
Format: Article in Journal/Newspaper
Language:English
Published: 2020
Subjects:
Online Access:https://eprints.soton.ac.uk/478474/
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spelling ftsouthampton:oai:eprints.soton.ac.uk:478474 2023-07-30T04:04:39+02:00 The trade-off analysis for the mitigation of underwater noise pollution from commercial vessels: case study – Trans Mountain project, Port of Vancouver, Canada Vakili, Seyedvahid Ölcer, Aykut I. Ballini, Fabio 2020-05-06 https://eprints.soton.ac.uk/478474/ English eng Vakili, Seyedvahid, Ölcer, Aykut I. and Ballini, Fabio (2020) The trade-off analysis for the mitigation of underwater noise pollution from commercial vessels: case study – Trans Mountain project, Port of Vancouver, Canada. Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment, 234 (2), 599 - 617. (doi:10.1177/1475090219886397 <http://dx.doi.org/10.1177/1475090219886397>). Article PeerReviewed 2020 ftsouthampton https://doi.org/10.1177/1475090219886397 2023-07-09T23:00:56Z Although shipping has significant positive effect on human civilization, it introduced negative environmental impacts such as oil, air, and plastic pollutions. Many negative externalities through international and local regulations have been in place, and preventive actions have been taken to monitor and control. However, underwater noise pollution as an emerging negative shipping impact has not been well introduced to society nor appropriately regulated in international scale. Because of traffic density and the presence of sensitive marine species in some parts of the world, the negative social and environmental impacts of underwater noise pollution become more critical. Haro Strait due to high shipping traffic and presence of vulnerable marine species such as Southern Resident Killer Whale is a good example. The majority of ocean-going vessels transiting to Vancouver and vice versa pass through the corridor which includes Haro Strait. Tankers currently represent about 2% of total ship traffic visiting the Port of Vancouver; however, regarding the Trans Mountain Pipeline Expansion Project, the traffic density will grow by 11%, which will enhance the adverse impacts of underwater noise pollution on marine mammals. This study, by considering the features and characteristics of the area and the project, proposed four scenarios and modelling. The article by developing simulations and utilizing the Multiple Criteria Decision Making (Multiple Attribute Decision Making) algorithms and Technique for Order of Preference by Similarity to Ideal Solution techniques strives to trade-off between the environmental (noise and CO2 emission) and economical (fuel cost) aspects of the project to enhance the Decision Support System to promote sustainable development. This will help the decision makers to have a multi-dimensional thinking instead of the single-dimensional thinking in addressing and tackling the negative externalities of the Trans Mountain project in the area. Moreover, at the end of each scenario, a sensitivity ... Article in Journal/Newspaper Killer Whale Killer whale University of Southampton: e-Prints Soton Canada The Corridor ENVELOPE(78.139,78.139,-68.582,-68.582) Haro ENVELOPE(-59.783,-59.783,-62.533,-62.533) Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment 234 2 599 617
institution Open Polar
collection University of Southampton: e-Prints Soton
op_collection_id ftsouthampton
language English
description Although shipping has significant positive effect on human civilization, it introduced negative environmental impacts such as oil, air, and plastic pollutions. Many negative externalities through international and local regulations have been in place, and preventive actions have been taken to monitor and control. However, underwater noise pollution as an emerging negative shipping impact has not been well introduced to society nor appropriately regulated in international scale. Because of traffic density and the presence of sensitive marine species in some parts of the world, the negative social and environmental impacts of underwater noise pollution become more critical. Haro Strait due to high shipping traffic and presence of vulnerable marine species such as Southern Resident Killer Whale is a good example. The majority of ocean-going vessels transiting to Vancouver and vice versa pass through the corridor which includes Haro Strait. Tankers currently represent about 2% of total ship traffic visiting the Port of Vancouver; however, regarding the Trans Mountain Pipeline Expansion Project, the traffic density will grow by 11%, which will enhance the adverse impacts of underwater noise pollution on marine mammals. This study, by considering the features and characteristics of the area and the project, proposed four scenarios and modelling. The article by developing simulations and utilizing the Multiple Criteria Decision Making (Multiple Attribute Decision Making) algorithms and Technique for Order of Preference by Similarity to Ideal Solution techniques strives to trade-off between the environmental (noise and CO2 emission) and economical (fuel cost) aspects of the project to enhance the Decision Support System to promote sustainable development. This will help the decision makers to have a multi-dimensional thinking instead of the single-dimensional thinking in addressing and tackling the negative externalities of the Trans Mountain project in the area. Moreover, at the end of each scenario, a sensitivity ...
format Article in Journal/Newspaper
author Vakili, Seyedvahid
Ölcer, Aykut I.
Ballini, Fabio
spellingShingle Vakili, Seyedvahid
Ölcer, Aykut I.
Ballini, Fabio
The trade-off analysis for the mitigation of underwater noise pollution from commercial vessels: case study – Trans Mountain project, Port of Vancouver, Canada
author_facet Vakili, Seyedvahid
Ölcer, Aykut I.
Ballini, Fabio
author_sort Vakili, Seyedvahid
title The trade-off analysis for the mitigation of underwater noise pollution from commercial vessels: case study – Trans Mountain project, Port of Vancouver, Canada
title_short The trade-off analysis for the mitigation of underwater noise pollution from commercial vessels: case study – Trans Mountain project, Port of Vancouver, Canada
title_full The trade-off analysis for the mitigation of underwater noise pollution from commercial vessels: case study – Trans Mountain project, Port of Vancouver, Canada
title_fullStr The trade-off analysis for the mitigation of underwater noise pollution from commercial vessels: case study – Trans Mountain project, Port of Vancouver, Canada
title_full_unstemmed The trade-off analysis for the mitigation of underwater noise pollution from commercial vessels: case study – Trans Mountain project, Port of Vancouver, Canada
title_sort trade-off analysis for the mitigation of underwater noise pollution from commercial vessels: case study – trans mountain project, port of vancouver, canada
publishDate 2020
url https://eprints.soton.ac.uk/478474/
long_lat ENVELOPE(78.139,78.139,-68.582,-68.582)
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geographic Canada
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geographic_facet Canada
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genre Killer Whale
Killer whale
genre_facet Killer Whale
Killer whale
op_relation Vakili, Seyedvahid, Ölcer, Aykut I. and Ballini, Fabio (2020) The trade-off analysis for the mitigation of underwater noise pollution from commercial vessels: case study – Trans Mountain project, Port of Vancouver, Canada. Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment, 234 (2), 599 - 617. (doi:10.1177/1475090219886397 <http://dx.doi.org/10.1177/1475090219886397>).
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container_title Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment
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