Mosideo/cirfa tank experiments on behavior and detection of oil in ice
In the Arctic, presence of sea ice presents a challenge to safe and sustainable operations. To optimize planning and minimize impact of inadvertent oil spills, oil-in-ice experiments were performed at the HSVA Arctic Environmental Test Basin (AETB) from 14 March to 4 April 2017. Following an under-i...
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ftsintef:oai:sintef.brage.unit.no:11250/2640284 2023-05-15T14:22:09+02:00 Mosideo/cirfa tank experiments on behavior and detection of oil in ice Petrich, Christian O'Sadnick, Megan Eileen Brekke, Camilla Myrnes, Marianne Maus, Sønke Salomon, Martina Lan Woelk, Sofie Grydeland, Tom Jenssen, Rolf-Ole Rydeng Eicken, Hajo Oggier, Marc Ferro-Famil, Laurent Harkati, Lekhmissi Rebane, Ott Reimer, Nils 2019 application/pdf http://hdl.handle.net/11250/2640284 eng eng Norges forskningsråd: 243812 Norges forskningsråd: 237906 Proceedings - International Conference on Port and Ocean Engineering under Arctic Conditions. 2019, 2019-June 1-11. urn:issn:0376-6756 http://hdl.handle.net/11250/2640284 cristin:1722834 1-11 2019-June Proceedings - International Conference on Port and Ocean Engineering under Arctic Conditions Mikrostruktur Microstructure Olje i is Oil in ice Tank experiment Fjernmåling Remote sensing VDP::Miljøteknologi: 610 VDP::Environmental engineering: 610 Peer reviewed Journal article 2019 ftsintef 2021-08-04T12:00:17Z In the Arctic, presence of sea ice presents a challenge to safe and sustainable operations. To optimize planning and minimize impact of inadvertent oil spills, oil-in-ice experiments were performed at the HSVA Arctic Environmental Test Basin (AETB) from 14 March to 4 April 2017. Following an under-ice spill and simulated springtime warming, the microscopic movement and distribution of oil in the sea ice pore space as well as the detectability of oil as it approaches the surface were investigated. Two ice types were studied simultaneously, i.e., columnar ice with and without a granular ice surface layer. Among the detection techniques were electromagnetic (radar, tomographic SAR) and optical (fluorescent, hyperspectral, thermal) sensors, and microscopic distribution of oil in sea ice were determined through X-ray computed tomography (CT). This paper presents the setup of the experiment and general ice properties. It was found that the movement of oil differed considerably between the investigated ice types. Predicting the behavior of oil in ice based on environmental conditions will help optimize the approaches used in spill detection and response. publishedVersion Article in Journal/Newspaper Arctic Arctic Sea ice SINTEF Open (Brage) Arctic |
institution |
Open Polar |
collection |
SINTEF Open (Brage) |
op_collection_id |
ftsintef |
language |
English |
topic |
Mikrostruktur Microstructure Olje i is Oil in ice Tank experiment Fjernmåling Remote sensing VDP::Miljøteknologi: 610 VDP::Environmental engineering: 610 |
spellingShingle |
Mikrostruktur Microstructure Olje i is Oil in ice Tank experiment Fjernmåling Remote sensing VDP::Miljøteknologi: 610 VDP::Environmental engineering: 610 Petrich, Christian O'Sadnick, Megan Eileen Brekke, Camilla Myrnes, Marianne Maus, Sønke Salomon, Martina Lan Woelk, Sofie Grydeland, Tom Jenssen, Rolf-Ole Rydeng Eicken, Hajo Oggier, Marc Ferro-Famil, Laurent Harkati, Lekhmissi Rebane, Ott Reimer, Nils Mosideo/cirfa tank experiments on behavior and detection of oil in ice |
topic_facet |
Mikrostruktur Microstructure Olje i is Oil in ice Tank experiment Fjernmåling Remote sensing VDP::Miljøteknologi: 610 VDP::Environmental engineering: 610 |
description |
In the Arctic, presence of sea ice presents a challenge to safe and sustainable operations. To optimize planning and minimize impact of inadvertent oil spills, oil-in-ice experiments were performed at the HSVA Arctic Environmental Test Basin (AETB) from 14 March to 4 April 2017. Following an under-ice spill and simulated springtime warming, the microscopic movement and distribution of oil in the sea ice pore space as well as the detectability of oil as it approaches the surface were investigated. Two ice types were studied simultaneously, i.e., columnar ice with and without a granular ice surface layer. Among the detection techniques were electromagnetic (radar, tomographic SAR) and optical (fluorescent, hyperspectral, thermal) sensors, and microscopic distribution of oil in sea ice were determined through X-ray computed tomography (CT). This paper presents the setup of the experiment and general ice properties. It was found that the movement of oil differed considerably between the investigated ice types. Predicting the behavior of oil in ice based on environmental conditions will help optimize the approaches used in spill detection and response. publishedVersion |
format |
Article in Journal/Newspaper |
author |
Petrich, Christian O'Sadnick, Megan Eileen Brekke, Camilla Myrnes, Marianne Maus, Sønke Salomon, Martina Lan Woelk, Sofie Grydeland, Tom Jenssen, Rolf-Ole Rydeng Eicken, Hajo Oggier, Marc Ferro-Famil, Laurent Harkati, Lekhmissi Rebane, Ott Reimer, Nils |
author_facet |
Petrich, Christian O'Sadnick, Megan Eileen Brekke, Camilla Myrnes, Marianne Maus, Sønke Salomon, Martina Lan Woelk, Sofie Grydeland, Tom Jenssen, Rolf-Ole Rydeng Eicken, Hajo Oggier, Marc Ferro-Famil, Laurent Harkati, Lekhmissi Rebane, Ott Reimer, Nils |
author_sort |
Petrich, Christian |
title |
Mosideo/cirfa tank experiments on behavior and detection of oil in ice |
title_short |
Mosideo/cirfa tank experiments on behavior and detection of oil in ice |
title_full |
Mosideo/cirfa tank experiments on behavior and detection of oil in ice |
title_fullStr |
Mosideo/cirfa tank experiments on behavior and detection of oil in ice |
title_full_unstemmed |
Mosideo/cirfa tank experiments on behavior and detection of oil in ice |
title_sort |
mosideo/cirfa tank experiments on behavior and detection of oil in ice |
publishDate |
2019 |
url |
http://hdl.handle.net/11250/2640284 |
geographic |
Arctic |
geographic_facet |
Arctic |
genre |
Arctic Arctic Sea ice |
genre_facet |
Arctic Arctic Sea ice |
op_source |
1-11 2019-June Proceedings - International Conference on Port and Ocean Engineering under Arctic Conditions |
op_relation |
Norges forskningsråd: 243812 Norges forskningsråd: 237906 Proceedings - International Conference on Port and Ocean Engineering under Arctic Conditions. 2019, 2019-June 1-11. urn:issn:0376-6756 http://hdl.handle.net/11250/2640284 cristin:1722834 |
_version_ |
1766294808447418368 |