Detecting an external influence on recent changes in oceanic oxygen using an optimal fingerprinting method

Ocean deoxygenation has been observed in all major ocean basins over the past 50 yr. Although this signal is largely consistent with oxygen changes expected from anthropogenic climate change, the contribution of external forcing to recent deoxygenation trends relative to natural internal variability...

Full description

Bibliographic Details
Main Authors: O. D. Andrews, N. L. Bindoff, P. R. Halloran, T. Ilyina, C. Le Quéré
Format: Article
Language:English
Published: Copernicus Publications 2013-03-01
Series:Biogeosciences
Online Access:http://www.biogeosciences.net/10/1799/2013/bg-10-1799-2013.pdf
id doaj-3fc663d088594e3d9865ccfe9e8b9dd0
record_format Article
spelling doaj-3fc663d088594e3d9865ccfe9e8b9dd02020-11-25T01:50:50ZengCopernicus PublicationsBiogeosciences1726-41701726-41892013-03-011031799181310.5194/bg-10-1799-2013Detecting an external influence on recent changes in oceanic oxygen using an optimal fingerprinting methodO. D. AndrewsN. L. BindoffP. R. HalloranT. IlyinaC. Le QuéréOcean deoxygenation has been observed in all major ocean basins over the past 50 yr. Although this signal is largely consistent with oxygen changes expected from anthropogenic climate change, the contribution of external forcing to recent deoxygenation trends relative to natural internal variability is yet to be established. Here we conduct a formal optimal fingerprinting analysis to investigate if external forcing has had a detectable influence on observed dissolved oxygen concentration ([O<sub>2</sub>]) changes between &sim;1970 and &sim;1992 using simulations from two Earth System Models (MPI-ESM-LR and HadGEM2-ES). We detect a response to external forcing at a 90% confidence level and find that observed [O<sub>2</sub>] changes are inconsistent with internal variability as simulated by models. This result is robust in the global ocean for depth-averaged (1-D) zonal mean patterns of [O<sub>2</sub>] change in both models. Further analysis with the MPI-ESM-LR model shows similar positive detection results for depth-resolved (2-D) zonal mean [O<sub>2</sub>] changes globally and for the Pacific Ocean individually. Observed oxygen changes in the Atlantic Ocean are indistinguishable from natural internal variability. Simulations from both models consistently underestimate the amplitude of historical [O<sub>2</sub>] changes in response to external forcing, suggesting that model projections for future ocean deoxygenation may also be underestimated.http://www.biogeosciences.net/10/1799/2013/bg-10-1799-2013.pdf
collection DOAJ
language English
format Article
sources DOAJ
author O. D. Andrews
N. L. Bindoff
P. R. Halloran
T. Ilyina
C. Le Quéré
spellingShingle O. D. Andrews
N. L. Bindoff
P. R. Halloran
T. Ilyina
C. Le Quéré
Detecting an external influence on recent changes in oceanic oxygen using an optimal fingerprinting method
Biogeosciences
author_facet O. D. Andrews
N. L. Bindoff
P. R. Halloran
T. Ilyina
C. Le Quéré
author_sort O. D. Andrews
title Detecting an external influence on recent changes in oceanic oxygen using an optimal fingerprinting method
title_short Detecting an external influence on recent changes in oceanic oxygen using an optimal fingerprinting method
title_full Detecting an external influence on recent changes in oceanic oxygen using an optimal fingerprinting method
title_fullStr Detecting an external influence on recent changes in oceanic oxygen using an optimal fingerprinting method
title_full_unstemmed Detecting an external influence on recent changes in oceanic oxygen using an optimal fingerprinting method
title_sort detecting an external influence on recent changes in oceanic oxygen using an optimal fingerprinting method
publisher Copernicus Publications
series Biogeosciences
issn 1726-4170
1726-4189
publishDate 2013-03-01
description Ocean deoxygenation has been observed in all major ocean basins over the past 50 yr. Although this signal is largely consistent with oxygen changes expected from anthropogenic climate change, the contribution of external forcing to recent deoxygenation trends relative to natural internal variability is yet to be established. Here we conduct a formal optimal fingerprinting analysis to investigate if external forcing has had a detectable influence on observed dissolved oxygen concentration ([O<sub>2</sub>]) changes between &sim;1970 and &sim;1992 using simulations from two Earth System Models (MPI-ESM-LR and HadGEM2-ES). We detect a response to external forcing at a 90% confidence level and find that observed [O<sub>2</sub>] changes are inconsistent with internal variability as simulated by models. This result is robust in the global ocean for depth-averaged (1-D) zonal mean patterns of [O<sub>2</sub>] change in both models. Further analysis with the MPI-ESM-LR model shows similar positive detection results for depth-resolved (2-D) zonal mean [O<sub>2</sub>] changes globally and for the Pacific Ocean individually. Observed oxygen changes in the Atlantic Ocean are indistinguishable from natural internal variability. Simulations from both models consistently underestimate the amplitude of historical [O<sub>2</sub>] changes in response to external forcing, suggesting that model projections for future ocean deoxygenation may also be underestimated.
url http://www.biogeosciences.net/10/1799/2013/bg-10-1799-2013.pdf
work_keys_str_mv AT odandrews detectinganexternalinfluenceonrecentchangesinoceanicoxygenusinganoptimalfingerprintingmethod
AT nlbindoff detectinganexternalinfluenceonrecentchangesinoceanicoxygenusinganoptimalfingerprintingmethod
AT prhalloran detectinganexternalinfluenceonrecentchangesinoceanicoxygenusinganoptimalfingerprintingmethod
AT tilyina detectinganexternalinfluenceonrecentchangesinoceanicoxygenusinganoptimalfingerprintingmethod
AT clequere detectinganexternalinfluenceonrecentchangesinoceanicoxygenusinganoptimalfingerprintingmethod
_version_ 1725000300812566528