An assessment of phytoplankton primary productivity in the Arctic Ocean from satellite ocean color/in situ chlorophyll-a based models

We investigated 32 net primary productivity (NPP) models by assessing skills to reproduce integrated NPP in the Arctic Ocean. The models were provided with two sources each of surface chlorophyll-a concentration (chlorophyll), photosynthetically available radiation (PAR), sea surface temperature (SS...

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Main Authors: Lee, Y., Matrai, P., Friedrichs, M., Saba, V., Antoine, David, Ardyna, M., Asanuma, I., Babin, M., Belanger, S., Benoit-Gagne, M., Devred, E., Fernandez-Mendez, M., Gentili, B., Hirawake, T., Kang, S., Kameda, T., Katlein, C., Lee, S., Lee, Z., Melin, F., Scardi, M., Smyth, T., Tang, S., Turpie, K., Waters, K., Westberry, T.
Format: Journal Article
Published: Wiley-Blackwell Publishing 2015
Online Access:http://hdl.handle.net/20.500.11937/41645
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author Lee, Y.
Matrai, P.
Friedrichs, M.
Saba, V.
Antoine, David
Ardyna, M.
Asanuma, I.
Babin, M.
Belanger, S.
Benoit-Gagne, M.
Devred, E.
Fernandez-Mendez, M.
Gentili, B.
Hirawake, T.
Kang, S.
Kameda, T.
Katlein, C.
Lee, S.
Lee, Z.
Melin, F.
Scardi, M.
Smyth, T.
Tang, S.
Turpie, K.
Waters, K.
Westberry, T.
author_facet Lee, Y.
Matrai, P.
Friedrichs, M.
Saba, V.
Antoine, David
Ardyna, M.
Asanuma, I.
Babin, M.
Belanger, S.
Benoit-Gagne, M.
Devred, E.
Fernandez-Mendez, M.
Gentili, B.
Hirawake, T.
Kang, S.
Kameda, T.
Katlein, C.
Lee, S.
Lee, Z.
Melin, F.
Scardi, M.
Smyth, T.
Tang, S.
Turpie, K.
Waters, K.
Westberry, T.
author_sort Lee, Y.
building Curtin Institutional Repository
collection Online Access
description We investigated 32 net primary productivity (NPP) models by assessing skills to reproduce integrated NPP in the Arctic Ocean. The models were provided with two sources each of surface chlorophyll-a concentration (chlorophyll), photosynthetically available radiation (PAR), sea surface temperature (SST), and mixed-layer depth (MLD). The models were most sensitive to uncertainties in surface chlorophyll, generally performing better with in situ chlorophyll than with satellite-derived values. They were much less sensitive to uncertainties in PAR, SST, and MLD, possibly due to relatively narrow ranges of input data and/or relatively little difference between input data sources. Regardless of type or complexity, most of the models were not able to fully reproduce the variability of in situ NPP, whereas some of them exhibited almost no bias (i.e., reproduced the mean of in situ NPP). The models performed relatively well in low-productivity seasons as well as in sea ice-covered/deep-water regions. Depth-resolved models correlated more with in situ NPP than other model types, but had a greater tendency to overestimate mean NPP whereas absorption-based models exhibited the lowest bias associated with weaker correlation. The models performed better when a subsurface chlorophyll-a maximum (SCM) was absent. As a group, the models overestimated mean NPP, however this was partly offset by some models underestimating NPP when a SCM was present. Our study suggests that NPP models need to be carefully tuned for the Arctic Ocean because most of the models performing relatively well were those that used Arctic-relevant parameters.
first_indexed 2025-11-14T09:08:28Z
format Journal Article
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T09:08:28Z
publishDate 2015
publisher Wiley-Blackwell Publishing
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-416452023-06-13T02:58:34Z An assessment of phytoplankton primary productivity in the Arctic Ocean from satellite ocean color/in situ chlorophyll-a based models Lee, Y. Matrai, P. Friedrichs, M. Saba, V. Antoine, David Ardyna, M. Asanuma, I. Babin, M. Belanger, S. Benoit-Gagne, M. Devred, E. Fernandez-Mendez, M. Gentili, B. Hirawake, T. Kang, S. Kameda, T. Katlein, C. Lee, S. Lee, Z. Melin, F. Scardi, M. Smyth, T. Tang, S. Turpie, K. Waters, K. Westberry, T. We investigated 32 net primary productivity (NPP) models by assessing skills to reproduce integrated NPP in the Arctic Ocean. The models were provided with two sources each of surface chlorophyll-a concentration (chlorophyll), photosynthetically available radiation (PAR), sea surface temperature (SST), and mixed-layer depth (MLD). The models were most sensitive to uncertainties in surface chlorophyll, generally performing better with in situ chlorophyll than with satellite-derived values. They were much less sensitive to uncertainties in PAR, SST, and MLD, possibly due to relatively narrow ranges of input data and/or relatively little difference between input data sources. Regardless of type or complexity, most of the models were not able to fully reproduce the variability of in situ NPP, whereas some of them exhibited almost no bias (i.e., reproduced the mean of in situ NPP). The models performed relatively well in low-productivity seasons as well as in sea ice-covered/deep-water regions. Depth-resolved models correlated more with in situ NPP than other model types, but had a greater tendency to overestimate mean NPP whereas absorption-based models exhibited the lowest bias associated with weaker correlation. The models performed better when a subsurface chlorophyll-a maximum (SCM) was absent. As a group, the models overestimated mean NPP, however this was partly offset by some models underestimating NPP when a SCM was present. Our study suggests that NPP models need to be carefully tuned for the Arctic Ocean because most of the models performing relatively well were those that used Arctic-relevant parameters. 2015 Journal Article http://hdl.handle.net/20.500.11937/41645 10.1002/2015JC011018 Wiley-Blackwell Publishing fulltext
spellingShingle Lee, Y.
Matrai, P.
Friedrichs, M.
Saba, V.
Antoine, David
Ardyna, M.
Asanuma, I.
Babin, M.
Belanger, S.
Benoit-Gagne, M.
Devred, E.
Fernandez-Mendez, M.
Gentili, B.
Hirawake, T.
Kang, S.
Kameda, T.
Katlein, C.
Lee, S.
Lee, Z.
Melin, F.
Scardi, M.
Smyth, T.
Tang, S.
Turpie, K.
Waters, K.
Westberry, T.
An assessment of phytoplankton primary productivity in the Arctic Ocean from satellite ocean color/in situ chlorophyll-a based models
title An assessment of phytoplankton primary productivity in the Arctic Ocean from satellite ocean color/in situ chlorophyll-a based models
title_full An assessment of phytoplankton primary productivity in the Arctic Ocean from satellite ocean color/in situ chlorophyll-a based models
title_fullStr An assessment of phytoplankton primary productivity in the Arctic Ocean from satellite ocean color/in situ chlorophyll-a based models
title_full_unstemmed An assessment of phytoplankton primary productivity in the Arctic Ocean from satellite ocean color/in situ chlorophyll-a based models
title_short An assessment of phytoplankton primary productivity in the Arctic Ocean from satellite ocean color/in situ chlorophyll-a based models
title_sort assessment of phytoplankton primary productivity in the arctic ocean from satellite ocean color/in situ chlorophyll-a based models
url http://hdl.handle.net/20.500.11937/41645