Records |
Author |
Morey, S. L. |
Title |
Spatial variability of upwelling on a continental shelf inferred from satellite scatterometry |
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$loc['typeConference Article'] |
Year |
2012 |
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IEEE International Symposium on Geoscience and Remote Sensing IGARSS |
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7094-7097 |
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IEEE International Geoscience and Remote Sensing Symposium (IGARSS), Munich, Germany |
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$loc['no'] |
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COAPS @ mfield @ |
Serial |
256 |
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Author |
Weihs, R.; Bourassa, MA |
Title |
A comparison of modeled diurnally varying sea surface temperatures to geostationary satellite data |
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$loc['typeConference Article'] |
Year |
2012 |
Publication |
IEEE International Symposium on Geoscience and Remote Sensing IGARSS |
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5764-5766 |
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IEEE International Geoscience and Remote Sensing Symposium (IGARSS), Munich, Germany |
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$loc['no'] |
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COAPS @ mfield @ |
Serial |
255 |
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Author |
Ali, M.M.; Bhat, G.S.; Long, D.G.; Bharadwaj, S.; Bourassa, M.A. |
Title |
Estimating Wind Stress at the Ocean Surface From Scatterometer Observations |
Type |
$loc['typeJournal Article'] |
Year |
2013 |
Publication |
IEEE Geoscience and Remote Sensing Letters |
Abbreviated Journal |
IEEE Geosci. Remote Sensing Lett. |
Volume |
10 |
Issue |
5 |
Pages |
1129-1132 |
Keywords |
Atmospheric stability; neutral stability; scatterometer; wind stress |
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1545-598X |
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NASA, OVWST |
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$loc['no'] |
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COAPS @ mfield @ |
Serial |
184 |
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Author |
Ali, M.M.; Bourassa, M.A.; Bhowmick, S.A.; Sharma, R.; Niharika, K. |
Title |
Retrieval of Wind Stress at the Ocean Surface From AltiKa Measurements |
Type |
$loc['typeJournal Article'] |
Year |
2016 |
Publication |
IEEE Geoscience and Remote Sensing Letters |
Abbreviated Journal |
IEEE Geosci. Remote Sensing Lett. |
Volume |
13 |
Issue |
6 |
Pages |
821-825 |
Keywords |
AltiKa; artificial neural networks (ANNs); wind stress |
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1545-598X |
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$loc['no'] |
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COAPS @ mfield @ |
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29 |
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Nyadjro, E.S.; Jensen, T.G.; Richman, J.G.; Shriver, J.F. |
Title |
On the Relationship Between Wind, SST, and the Thermocline in the Seychelles-Chagos Thermocline Ridge |
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$loc['typeJournal Article'] |
Year |
2017 |
Publication |
IEEE Geoscience and Remote Sensing Letters |
Abbreviated Journal |
IEEE Geosci. Remote Sensing Lett. |
Volume |
14 |
Issue |
12 |
Pages |
2315-2319 |
Keywords |
Altimetry; HYbrid Coordinate Ocean Model (HYCOM); Indian Ocean Dipole (IOD); ocean-atmosphere coupling; Rossby waves; sea surface temperature (SST); thermocline depth; winds |
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1545-598X |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
465 |
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Author |
Bourassa, MA; Weissman, DE |
Title |
The development and application of a sea surface stress model function for the QuikSCAT and ADEOS-II SeaWinds scatterometers |
Type |
$loc['typeConference Article'] |
Year |
2003 |
Publication |
IEEE International Symposium on Geoscience and Remote Sensing (IGARSS) |
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Pages |
239-241 |
Keywords |
component; surface stress; SeaWinds; scatterometer; validation |
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23rd International Geoscience and Remote Sensing Symposium (IGARSS 2003) |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
485 |
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Author |
Singh, K.; Jardak, M.; Sandu, A.; Bowman, K.; Lee, M.; Jones, D. |
Title |
Construction of non-diagonal background error covariance matrices for global chemical data assimilation |
Type |
$loc['typeJournal Article'] |
Year |
2011 |
Publication |
Geoscientific Model Development |
Abbreviated Journal |
Geosci. Model Dev. |
Volume |
4 |
Issue |
2 |
Pages |
299-316 |
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1991-9603 |
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$loc['no'] |
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COAPS @ mfield @ |
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377 |
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Author |
Griffies, S.M.; Danabasoglu, G.; Durack, P.J.; Adcroft, A.J.; Balaji, V.; Böning, C.W.; Chassignet, E.P.; Curchitser, E.; Deshayes, J.; Drange, H.; Fox-Kemper, B.; Gleckler, P.J.; Gregory, J.M.; Haak, H.; Hallberg, R.W.; Heimbach, P.; Hewitt, H.T.; Holland, D.M.; Ilyina, T.; Jungclaus, J.H.; Komuro, Y.; Krasting, J.P.; Large, W.G.; Marsland, S.J.; Masina, S.; McDougall, T.J.; Nurser, A.J.G.; Orr, J.C.; Pirani, A.; Qiao, F.; Stouffer, R.J.; Taylor, K.E.; Treguier, A.M.; Tsujino, H.; Uotila, P.; Valdivieso, M.; Wang, Q.; Winton, M.; Yeager, S.G. |
Title |
OMIP contribution to CMIP6: experimental and diagnostic protocol for the physical component of the Ocean Model Intercomparison Project |
Type |
$loc['typeJournal Article'] |
Year |
2016 |
Publication |
Geoscientific Model Development |
Abbreviated Journal |
Geosci. Model Dev. |
Volume |
9 |
Issue |
9 |
Pages |
3231-3296 |
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1991-9603 |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
77 |
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Author |
Yin, J.; Schlesinger, M.E.; Stouffer, R.J. |
Title |
Model projections of rapid sea-level rise on the northeast coast of the United States |
Type |
$loc['typeJournal Article'] |
Year |
2009 |
Publication |
Nature Geoscience |
Abbreviated Journal |
Nature Geosci |
Volume |
2 |
Issue |
4 |
Pages |
262-266 |
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1752-0894 |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
394 |
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Author |
Wang, S.; Kranz, S.A.; Kelly, T.B.; Song, H.; Stukel, M.R.; Cassar, N. |
Title |
Lagrangian Studies of Net Community Production: The Effect of Diel and Multiday Nonsteady State Factors and Vertical Fluxes on O2/Ar in a Dynamic Upwelling Region |
Type |
$loc['typeJournal Article'] |
Year |
2020 |
Publication |
Journal of Geophysical Research: Biogeosciences |
Abbreviated Journal |
J. Geophys. Res. Biogeosci. |
Volume |
125 |
Issue |
6 |
Pages |
e2019JG005569 |
Keywords |
net community production; O2/Ar; California Current Ecosystem; Lagrangian measurements; vertical fluxes; nonsteady state |
Abstract |
The ratio of dissolved oxygen to argon in seawater is frequently employed to estimate rates of net community production (NCP) in the oceanic mixed layer. The in situ O2/Ar‐based method accounts for many physical factors that influence oxygen concentrations, permitting isolation of the biological oxygen signal produced by the balance of photosynthesis and respiration. However, this technique traditionally relies upon several assumptions when calculating the mixed‐layer O2/Ar budget, most notably the absence of vertical fluxes of O2/Ar and the principle that the air‐sea gas exchange of biological oxygen closely approximates net productivity rates. Employing a Lagrangian study design and leveraging data outputs from a regional physical oceanographic model, we conducted in situ measurements of O2/Ar in the California Current Ecosystem in spring 2016 and summer 2017 to evaluate these assumptions within a �worst‐case� field environment. Quantifying vertical fluxes, incorporating nonsteady state changes in O2/Ar, and comparing NCP estimates evaluated over several day versus longer timescales, we find differences in NCP metrics calculated over different time intervals to be considerable, also observing significant potential effects from vertical fluxes, particularly advection. Additionally, we observe strong diel variability in O2/Ar and NCP rates at multiple stations. Our results reemphasize the importance of accounting for vertical fluxes when interpreting O2/Ar‐derived NCP data and the potentially large effect of nonsteady state conditions on NCP evaluated over shorter timescales. In addition, diel cycles in surface O2/Ar can also bias interpretation of NCP data based on local productivity and the time of day when measurements were made. |
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2169-8953 |
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$loc['no'] |
Call Number |
COAPS @ user @ |
Serial |
1114 |
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