A contour plot showing how exploitation rate of the stock would need to be altered to condition advice for Gulf of St Lawrence Greenland halibut to changes in median bottom water temperature at 150 m depth.
The climate impact is mediated through the relationship between the temperature and Greenland halibut production rate observed in the past. The contours represent the risk expressed as the probability of not achieving the target biomass objective (mean biomass from 1995–2000) after 10 years for diff...
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ftsmithonian:oai:figshare.com:article/14065382 2023-05-15T16:26:13+02:00 A contour plot showing how exploitation rate of the stock would need to be altered to condition advice for Gulf of St Lawrence Greenland halibut to changes in median bottom water temperature at 150 m depth. Daniel E. Duplisea (7418849) Marie-Julie Roux (10170128) Karen L. Hunter (8379057) Jake Rice (10170131) 2021-02-19T19:03:16Z https://doi.org/10.1371/journal.pone.0239503.g008 unknown https://figshare.com/articles/figure/A_contour_plot_showing_how_exploitation_rate_of_the_stock_would_need_to_be_altered_to_condition_advice_for_Gulf_of_St_Lawrence_Greenland_halibut_to_changes_in_median_bottom_water_temperature_at_150_m_depth_/14065382 doi:10.1371/journal.pone.0239503.g008 CC BY 4.0 CC-BY Genetics Ecology Inorganic Chemistry Science Policy Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified Mathematical Sciences not elsewhere classified climate change fish harvesting advice approach fishing strategies strategy CC risk equivalent fishery exploitatio. fishery exploitation rates Greenland halibut Reinhardtius hipp. Image Figure 2021 ftsmithonian https://doi.org/10.1371/journal.pone.0239503.g008 2021-02-26T10:57:24Z The climate impact is mediated through the relationship between the temperature and Greenland halibut production rate observed in the past. The contours represent the risk expressed as the probability of not achieving the target biomass objective (mean biomass from 1995–2000) after 10 years for different fishing and climate scenarios. For risk levels 50% and lower (shaded green), risk equivalent strategies are possible to compensate for CC by adjusting relative exploitation rate. The actual exploitation rate and temperature scenario is overlaid on the contours. Still Image Greenland Unknown Greenland |
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Open Polar |
collection |
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op_collection_id |
ftsmithonian |
language |
unknown |
topic |
Genetics Ecology Inorganic Chemistry Science Policy Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified Mathematical Sciences not elsewhere classified climate change fish harvesting advice approach fishing strategies strategy CC risk equivalent fishery exploitatio. fishery exploitation rates Greenland halibut Reinhardtius hipp. |
spellingShingle |
Genetics Ecology Inorganic Chemistry Science Policy Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified Mathematical Sciences not elsewhere classified climate change fish harvesting advice approach fishing strategies strategy CC risk equivalent fishery exploitatio. fishery exploitation rates Greenland halibut Reinhardtius hipp. Daniel E. Duplisea (7418849) Marie-Julie Roux (10170128) Karen L. Hunter (8379057) Jake Rice (10170131) A contour plot showing how exploitation rate of the stock would need to be altered to condition advice for Gulf of St Lawrence Greenland halibut to changes in median bottom water temperature at 150 m depth. |
topic_facet |
Genetics Ecology Inorganic Chemistry Science Policy Environmental Sciences not elsewhere classified Biological Sciences not elsewhere classified Mathematical Sciences not elsewhere classified climate change fish harvesting advice approach fishing strategies strategy CC risk equivalent fishery exploitatio. fishery exploitation rates Greenland halibut Reinhardtius hipp. |
description |
The climate impact is mediated through the relationship between the temperature and Greenland halibut production rate observed in the past. The contours represent the risk expressed as the probability of not achieving the target biomass objective (mean biomass from 1995–2000) after 10 years for different fishing and climate scenarios. For risk levels 50% and lower (shaded green), risk equivalent strategies are possible to compensate for CC by adjusting relative exploitation rate. The actual exploitation rate and temperature scenario is overlaid on the contours. |
format |
Still Image |
author |
Daniel E. Duplisea (7418849) Marie-Julie Roux (10170128) Karen L. Hunter (8379057) Jake Rice (10170131) |
author_facet |
Daniel E. Duplisea (7418849) Marie-Julie Roux (10170128) Karen L. Hunter (8379057) Jake Rice (10170131) |
author_sort |
Daniel E. Duplisea (7418849) |
title |
A contour plot showing how exploitation rate of the stock would need to be altered to condition advice for Gulf of St Lawrence Greenland halibut to changes in median bottom water temperature at 150 m depth. |
title_short |
A contour plot showing how exploitation rate of the stock would need to be altered to condition advice for Gulf of St Lawrence Greenland halibut to changes in median bottom water temperature at 150 m depth. |
title_full |
A contour plot showing how exploitation rate of the stock would need to be altered to condition advice for Gulf of St Lawrence Greenland halibut to changes in median bottom water temperature at 150 m depth. |
title_fullStr |
A contour plot showing how exploitation rate of the stock would need to be altered to condition advice for Gulf of St Lawrence Greenland halibut to changes in median bottom water temperature at 150 m depth. |
title_full_unstemmed |
A contour plot showing how exploitation rate of the stock would need to be altered to condition advice for Gulf of St Lawrence Greenland halibut to changes in median bottom water temperature at 150 m depth. |
title_sort |
contour plot showing how exploitation rate of the stock would need to be altered to condition advice for gulf of st lawrence greenland halibut to changes in median bottom water temperature at 150 m depth. |
publishDate |
2021 |
url |
https://doi.org/10.1371/journal.pone.0239503.g008 |
geographic |
Greenland |
geographic_facet |
Greenland |
genre |
Greenland |
genre_facet |
Greenland |
op_relation |
https://figshare.com/articles/figure/A_contour_plot_showing_how_exploitation_rate_of_the_stock_would_need_to_be_altered_to_condition_advice_for_Gulf_of_St_Lawrence_Greenland_halibut_to_changes_in_median_bottom_water_temperature_at_150_m_depth_/14065382 doi:10.1371/journal.pone.0239503.g008 |
op_rights |
CC BY 4.0 |
op_rightsnorm |
CC-BY |
op_doi |
https://doi.org/10.1371/journal.pone.0239503.g008 |
_version_ |
1766015101929783296 |