Records |
Author |
Sullivan, D.; Rosenfeld, L.; Smith, S.; Murphree, T. |
Title |
Oceanographic instrumentation technician, Knowledge and Skill Guidelines for Marine Science and Technology |
Type |
$loc['typeMiscellaneous'] |
Year |
2010 |
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Issue |
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Pages |
1-20 |
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Marine Advanced Technology Education Center |
Place of Publication |
Monterey, CA |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
378 |
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Author |
Sullivan, D; Murphree, T; Rosenfeld, L; Sullivan, D; Smith, S |
Title |
Knowledge and Skill Guidelines for Marine Science and Technology: Operational Marine Forecasters |
Type |
$loc['typeMiscellaneous'] |
Year |
2011 |
Publication |
Marine Advanced Technology Education Center |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
330 |
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Author |
Sun, J.; Wu, Z. |
Title |
Isolating spatiotemporally local mixed Rossby-gravity waves using multi-dimensional ensemble empirical mode decomposition |
Type |
$loc['typeJournal Article'] |
Year |
2019 |
Publication |
Climate Dynamics |
Abbreviated Journal |
Clim Dyn |
Volume |
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Issue |
3-4 |
Pages |
1383-1405 |
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Abstract |
Tropical waves have relatively large amplitudes in and near convective systems, attenuating as they propagate away from the area where they are generated due to the dissipative nature of the atmosphere. Traditionally, nonlocal analysis methods, such as those based on the Fourier transform, are applied to identify tropical waves. However, these methods have the potential to lead to the misidentification of local wavenumbers and spatial locations of local wave activities. To address this problem, we propose a new method for analyzing tropical waves, with particular focus placed on equatorial mixed Rossby-gravity (MRG) waves. The new tropical wave analysis method is based on the multi-dimensional ensemble empirical mode decomposition and a novel spectral representation based on spatiotemporally local wavenumber, frequency, and amplitude of waves. We first apply this new method to synthetic data to demonstrate the advantages of the method in revealing characteristics of MRG waves. We further apply the method to reanalysis data (1) to identify and isolate the spatiotemporally heterogeneous MRG waves event by event, and (2) to quantify the spatial inhomogeneity of these waves in a wavenumber-frequency-energy diagram. In this way, we reveal the climatology of spatiotemporal inhomogeneity of MRG waves and summarize it in wavenumber-frequency domain: The Indian Ocean is dominated by MRG waves in the period range of 8–12 days; the western Pacific Ocean consists of almost equal energy distribution of MRG waves in the period ranges of 3–6 and 8–12 days, respectively; and the eastern tropical Pacific Ocean and the tropical Atlantic Ocean are dominated by MRG waves in the period range of 3–6 days. The zonal wavenumbers mostly fall within the band of 4–15, with Indian Ocean has larger portion of higher wavenumber (smaller wavelength components) MRG waves. |
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0930-7575 |
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$loc['no'] |
Call Number |
COAPS @ user @ |
Serial |
1093 |
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Author |
Sun, S. |
Title |
Dynamics-based analysis of tropical waves |
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$loc['typeManuscript'] |
Year |
2017 |
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$loc['Ph.D. thesis'] |
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Florida State University |
Place of Publication |
Tallahassee, FL |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
549 |
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Author |
Sura, P. |
Title |
A general perspective of extreme events in weather and climate |
Type |
$loc['typeJournal Article'] |
Year |
2011 |
Publication |
Atmospheric Research |
Abbreviated Journal |
Atmospheric Research |
Volume |
101 |
Issue |
1-2 |
Pages |
1-21 |
Keywords |
Weather and climate extremes; Stochastic modeling; Weather and climate statistics |
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0169-8095 |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
302 |
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Author |
Sura, P.; Hannachi, A. |
Title |
Perspectives of Non-Gaussianity in Atmospheric Synoptic and Low-Frequency Variability |
Type |
$loc['typeJournal Article'] |
Year |
2015 |
Publication |
Journal of Climate |
Abbreviated Journal |
J. Climate |
Volume |
28 |
Issue |
13 |
Pages |
5091-5114 |
Keywords |
Atmospheric circulation; Nonlinear dynamics; Statistics; Climate variability |
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0894-8755 |
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$loc['no'] |
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COAPS @ mfield @ |
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114 |
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Author |
Swearingen, A. D. |
Title |
Examining Shifts in Warm-Season Near-Surface Moisture Trends in Florida |
Type |
$loc['typeManuscript'] |
Year |
2015 |
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Florida; Surface dew points; Atmospheric moisture |
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Department of Earth, Ocean, and Atmospheric Science |
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$loc['Bachelor's thesis'] |
Publisher |
Florida State University |
Place of Publication |
Tallahassee, FL |
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$loc['no'] |
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COAPS @ mfield @ |
Serial |
115 |
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Author |
Sweeny, S. R. |
Title |
Impact of ENSO on weather conditions at continental U.S military bases |
Type |
$loc['typeManuscript'] |
Year |
1996 |
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Department of Meteorology |
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$loc['Master's thesis'] |
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Florida State University |
Place of Publication |
Tallahassee, FL |
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$loc['no'] |
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COAPS @ mfield @ |
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653 |
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Author |
Tartaglione, C. A. |
Title |
Regional effects of ENSO on US hurricane landfalls |
Type |
$loc['typeManuscript'] |
Year |
2002 |
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Department of Meteorology |
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$loc['Master's thesis'] |
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Florida State University |
Place of Publication |
Tallahassee, FL |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
631 |
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Author |
Tartaglione, C. S.; Hanley, D. E.; O'Brien, J. J.; Smith, S. R. |
Title |
Regional Effects of ENSO on U.S Hurricane Landfalls |
Type |
$loc['typeReport'] |
Year |
2002 |
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45 |
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Center for Ocean-Atmospheric Prediction Studies, Florida State University |
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Tallahassee, FL |
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COAPS Technical Report 02-5 |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
857 |
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