Approaches for refining pack ice driving force estimates for the Beaufort Sea

There are large oil and gas resources in the shear zone region of the Beaufort Sea. Development of these resources would entail many factors for consideration. One of the most important is the ice load on drilling and production platforms. However, there is very large uncertainty on the ice loads in...

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Published in:All Days
Main Authors: Barker, Anne, Timco, Garry
Format: Article in Journal/Newspaper
Language:English
Published: The Offshore Technology Conference 2012
Subjects:
Online Access:https://doi.org/10.4043/23761-MS
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spelling ftnrccanada:oai:cisti-icist.nrc-cnrc.ca:cistinparc:21268709 2023-05-15T14:20:28+02:00 Approaches for refining pack ice driving force estimates for the Beaufort Sea Barker, Anne Timco, Garry 2012-12-03 text https://doi.org/10.4043/23761-MS https://nrc-publications.canada.ca/eng/view/object/?id=b91ef653-adbf-4c42-a545-a86691c67a7b https://nrc-publications.canada.ca/fra/voir/objet/?id=b91ef653-adbf-4c42-a545-a86691c67a7b eng eng The Offshore Technology Conference Proceedings of OTC Arctic Technology Conference, OTC Arctic Technology Conference, December 3-5, 2012, Houston, Texas, ISBN: 9781613992869, Publication date: 2012-12-03 doi:10.4043/23761-MS article 2012 ftnrccanada https://doi.org/10.4043/23761-MS 2021-09-01T06:36:40Z There are large oil and gas resources in the shear zone region of the Beaufort Sea. Development of these resources would entail many factors for consideration. One of the most important is the ice load on drilling and production platforms. However, there is very large uncertainty on the ice loads in this region due to a clear lack of knowledge of the pack ice driving forces. This pack ice driving force is one of the primary mechanisms that dictate how much force the ice can exert on an offshore platform, even if large multi-year ice floes are present. Improved knowledge of this force would significantly reduce uncertainty in the design ice loads, provide essential baseline engineering knowledge and a more reliable structure, leading to greater regulatory certainty and safer and more economical offshore operations. The pack ice driving force, as a function of width, can be calculated through an equation in the ISO Arctic Offshore Structures Standard. However, a relevant parameter is still poorly defined for this equation and spans a large range. As a result, calculations of driving forces are very uncertain, yet it is the key limiting force mechanism for the Beaufort Sea. This paper presents the results of a study that investigated means of refining uncertainty when calculating pack ice driving forces. An overview of the standard method of determining these forces is given, as well as a discussion of the historical development of, and implications of uncertainty in, calculating the pack ice force. Methods for refining the uncertainty are presented and comparisons are discussed. Numerical modelling studies offer the greatest potential for refining the uncertainty based on cost, usefulness, confidence in the results and study opportunities. The information provided in this paper has applications for refinement of pack ice driving force calculations in current engineering standards. A clear understanding of the magnitude of pack ice driving forces would help to reduce the risk of failure of engineering structures and improve their safety, by enabling a significantly better definition of the anticipated ice loads and the upper limit of the loads for the Beaufort Sea. Peer reviewed: Yes NRC publication: Yes Article in Journal/Newspaper Arctic Arctic Beaufort Sea National Research Council Canada: NRC Publications Archive Arctic All Days
institution Open Polar
collection National Research Council Canada: NRC Publications Archive
op_collection_id ftnrccanada
language English
description There are large oil and gas resources in the shear zone region of the Beaufort Sea. Development of these resources would entail many factors for consideration. One of the most important is the ice load on drilling and production platforms. However, there is very large uncertainty on the ice loads in this region due to a clear lack of knowledge of the pack ice driving forces. This pack ice driving force is one of the primary mechanisms that dictate how much force the ice can exert on an offshore platform, even if large multi-year ice floes are present. Improved knowledge of this force would significantly reduce uncertainty in the design ice loads, provide essential baseline engineering knowledge and a more reliable structure, leading to greater regulatory certainty and safer and more economical offshore operations. The pack ice driving force, as a function of width, can be calculated through an equation in the ISO Arctic Offshore Structures Standard. However, a relevant parameter is still poorly defined for this equation and spans a large range. As a result, calculations of driving forces are very uncertain, yet it is the key limiting force mechanism for the Beaufort Sea. This paper presents the results of a study that investigated means of refining uncertainty when calculating pack ice driving forces. An overview of the standard method of determining these forces is given, as well as a discussion of the historical development of, and implications of uncertainty in, calculating the pack ice force. Methods for refining the uncertainty are presented and comparisons are discussed. Numerical modelling studies offer the greatest potential for refining the uncertainty based on cost, usefulness, confidence in the results and study opportunities. The information provided in this paper has applications for refinement of pack ice driving force calculations in current engineering standards. A clear understanding of the magnitude of pack ice driving forces would help to reduce the risk of failure of engineering structures and improve their safety, by enabling a significantly better definition of the anticipated ice loads and the upper limit of the loads for the Beaufort Sea. Peer reviewed: Yes NRC publication: Yes
format Article in Journal/Newspaper
author Barker, Anne
Timco, Garry
spellingShingle Barker, Anne
Timco, Garry
Approaches for refining pack ice driving force estimates for the Beaufort Sea
author_facet Barker, Anne
Timco, Garry
author_sort Barker, Anne
title Approaches for refining pack ice driving force estimates for the Beaufort Sea
title_short Approaches for refining pack ice driving force estimates for the Beaufort Sea
title_full Approaches for refining pack ice driving force estimates for the Beaufort Sea
title_fullStr Approaches for refining pack ice driving force estimates for the Beaufort Sea
title_full_unstemmed Approaches for refining pack ice driving force estimates for the Beaufort Sea
title_sort approaches for refining pack ice driving force estimates for the beaufort sea
publisher The Offshore Technology Conference
publishDate 2012
url https://doi.org/10.4043/23761-MS
https://nrc-publications.canada.ca/eng/view/object/?id=b91ef653-adbf-4c42-a545-a86691c67a7b
https://nrc-publications.canada.ca/fra/voir/objet/?id=b91ef653-adbf-4c42-a545-a86691c67a7b
geographic Arctic
geographic_facet Arctic
genre Arctic
Arctic
Beaufort Sea
genre_facet Arctic
Arctic
Beaufort Sea
op_relation Proceedings of OTC Arctic Technology Conference, OTC Arctic Technology Conference, December 3-5, 2012, Houston, Texas, ISBN: 9781613992869, Publication date: 2012-12-03
doi:10.4043/23761-MS
op_doi https://doi.org/10.4043/23761-MS
container_title All Days
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