Records |
Author |
Misra, V.; Chan, S.; Wu, R.; Chassignet, E. |
Title |
Air-sea interaction over the Atlantic warm pool in the NCEP CFS |
Type |
$loc['typeJournal Article'] |
Year |
2009 |
Publication |
Geophysical Research Letters |
Abbreviated Journal |
Geophys. Res. Lett. |
Volume |
36 |
Issue |
15 |
Pages |
n/a-n/a |
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ISSN |
0094-8276 |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
388 |
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Author |
Misra, V.; Dirmeyer, P.A. |
Title |
Air, Sea, and Land Interactions of the Continental U.S. Hydroclimate |
Type |
$loc['typeJournal Article'] |
Year |
2009 |
Publication |
Journal of Hydrometeorology |
Abbreviated Journal |
J. Hydrometeor |
Volume |
10 |
Issue |
2 |
Pages |
353-373 |
Keywords |
Atmosphere-land interaction; Hydrometeorology; Climatology; Air-sea interaction; Multidecadal variability; Coupled models |
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ISSN |
1525-755X |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
664 |
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Author |
Misra, V.; Marx, L. |
Title |
The coupled seasonal hindcasts of the South American monsoon |
Type |
$loc['typeJournal Article'] |
Year |
2009 |
Publication |
International Journal of Climatology |
Abbreviated Journal |
Int. J. Climatol. |
Volume |
29 |
Issue |
8 |
Pages |
1101-1115 |
Keywords |
South American monsoon; ENSO; prediction |
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ISSN |
0899-8418 |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
654 |
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Author |
Misra, V.; Mishra, A.; Bhardwaj, A. |
Title |
A coupled ocean-atmosphere downscaled climate projection for the peninsular Florida region |
Type |
$loc['typeJournal Article'] |
Year |
2019 |
Publication |
Journal of Marine Systems |
Abbreviated Journal |
Journal of Marine Systems |
Volume |
194 |
Issue |
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Pages |
25-40 |
Keywords |
Climate projection; Peninsular Florida; bathymetry; climate simulation; future |
Abstract |
A downscaled projection over the Peninsular Florida (PF) region is conducted with a Regional Climate Model (RCM) at 10 km grid spacing that incorporates interactive coupling between the atmosphere and ocean components of the climate system. This is first such application of a coupled ocean-atmosphere model for climate projection over the PF region. The RCM is shown to display reasonable fidelity in simulating the mean current climate and exhibits higher variability both in the ocean and in the atmosphere than the large-scale global model (Community Climate System Model version 4 [CCSM4]), which is used to drive the RCM. There are several features of the regional climate that RCM displays as an improvement over CCSM4: upper ocean thermal stratification, surface eddy kinetic energy of the ocean, volume flux through the Yucatan Channel, and terrestrial rainfall over PF. The projected mean hydroclimatic change over the period 2041�2060 relative to 1986�2005 over PF shows significant difference between RCM and CCSM4, with the RCM becoming significantly drier and CCSM4 moderately wetter. Furthermore, over the ocean surface, especially over the West Florida Shelf (WFS), RCM displays a wetter and a warmer surface climate compared to the CCSM4 simulation.
Our analysis of the model output indicates that improved resolution of ocean bathymetry in the RCM plays a significant role in the response of the projected changes in surface heat flux, clouds, upper ocean circulations and upper ocean stratification, which manifests with some of the largest differences from the CCSM4 projections, especially over the shallower parts of the ocean around PF. This contrast is most apparent between WFS and PF in the RCM simulation, which suggests that a future warm climate would likely produce more rain over WFS at the expense of corresponding reduction over PF, contrary to the absence of any such gradient in the CCSM4 simulation. Furthermore, in the RCM simulation, the warming of the sub-surface ocean in the future climate is owed to the combined influence of excess atmospheric heat flux directed towards the ocean from the atmosphere and the advective heat flux convergence with the relative slowing of the Loop Current in the future climate. The study demonstrates that such RCMs with coupled ocean-atmosphere interactions are necessary to downscale the global climate models to project the surface hydro-climate over regions like PF that have mesoscale features in the ocean, which can influence the terrestrial climate. |
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0924-7963 |
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$loc['no'] |
Call Number |
COAPS @ user @ |
Serial |
1003 |
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Author |
Misra, V.; Mishra, A.; Bhardwaj, A. |
Title |
Simulation of the Intraseasonal Variations of the Indian Summer Monsoon in a Regional Coupled Ocean-Atmosphere Model |
Type |
$loc['typeJournal Article'] |
Year |
2018 |
Publication |
Journal of Climate |
Abbreviated Journal |
J. Climate |
Volume |
31 |
Issue |
8 |
Pages |
3167-3185 |
Keywords |
Asia; Indian Ocean; Mixed layer; Monsoons; Atmosphere-ocean interaction; Regional models |
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0894-8755 |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
557 |
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Author |
Misra, V.; Mishra, A.; Bhardwaj, A.; Viswanthan, K.; Schmutz, D. |
Title |
The potential role of land cover on secular changes of the hydroclimate of Peninsular Florida |
Type |
$loc['typeJournal Article'] |
Year |
2018 |
Publication |
Climate and Atmospheric Science |
Abbreviated Journal |
Clim Atmos Sci |
Volume |
1 |
Issue |
1 |
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ISSN |
2397-3722 |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
833 |
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Author |
Misra, V.; Selman, C.; Waite, A. J.; Bastola, S.; Mishra, A. |
Title |
Terrestrial and Ocean Climate of the 20th Century |
Type |
$loc['typeBook Chapter'] |
Year |
2017 |
Publication |
Florida's climate: Changes, variations, & impacts |
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Volume |
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Issue |
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Pages |
485-509 |
Keywords |
Seasonal cycle; Diurnal variations; Sea breeze; ENSO; Tropical cyclones; Hurricanes; AWP; AMO; PDO; PIZA |
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Publisher |
Florida Climate Institute |
Place of Publication |
Gainesville, FL |
Editor |
Chassignet, E. P.; Jones, J. W.; Misra, V.; Obeysekera, J. |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
849 |
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Author |
Misra, V; Bhardwaj, A; Mishra, A |
Title |
Characterizing the rainy season of Peninsular Florida |
Type |
$loc['typeJournal Article'] |
Year |
2018 |
Publication |
Climate Dynamics |
Abbreviated Journal |
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Volume |
51 |
Issue |
5-6 |
Pages |
2157-2167 |
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Abstract |
Peninsular Florida (PF) has a very distinct wet season that can be objectively defined with onset and demise dates based on daily rainfall. The dramatic onset of rains and its retreat coincides with the seasonal cycle of the regional scale atmospheric and upper ocean circulations and upper ocean heat content of the immediate surrounding ocean. The gradual warming of the Intra-Americas Seas (IAS; includes Gulf of Mexico, Caribbean Sea and parts of northwestern subtropical Atlantic Ocean) with the seasonal evolution of the Loop Current and increased atmospheric heat flux in to the ocean eventually enhance the moisture flux into terrestrial PF around the time of the onset of the Rainy Season of PF (RSPF). Similarly, the RSPF retreats with the cooling of the IAS that coincides with the weakening of the Loop Current and reduction of the upper ocean heat content of the IAS. It is also shown that anomalous onset and demise dates of the RSPF have implications on its seasonal rainfall anomalies. |
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$loc['no'] |
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COAPS @ mfield @ |
Serial |
556 |
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Author |
Mizoguchi, K |
Title |
Quasi-decadal variations in the North Atlantic |
Type |
$loc['typeManuscript'] |
Year |
2001 |
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Department of Oceanography |
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$loc['Ph.D. thesis'] |
Publisher |
Florida State University |
Place of Publication |
Tallahassee, FL |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
596 |
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Author |
Mizoguchi, K. |
Title |
Quasi-decadal variations in the North Atlantic |
Type |
$loc['typeReport'] |
Year |
2002 |
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Issue |
02-1 |
Pages |
78 |
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Center for Ocean-Atmospheric Prediction Studies, Florida State University |
Place of Publication |
Tallahassee, FL |
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COAPS Technical Report Series |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
855 |
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