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Author Kang, S.-D.; Shin, D.W.; Cocke, S.; Kim, H.-D.; Jung, W.-S.
Title Comparison of ensemble methods for summer-time numerical weather prediction over East Asia Type $loc['typeJournal Article']
Year 2011 Publication Meteorology and Atmospheric Physics Abbreviated Journal Meteorol Atmos Phys
Volume 113 Issue 1-2 Pages 27-38
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ISSN 0177-7971 ISBN Medium
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Funding Approved $loc['no']
Call Number COAPS @ mfield @ Serial 305
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Author Kipkogei, O.; Bhardwaj, A.; Kumar, V.; Ogallo, L.A.; Opijah, F.J.; Mutemi, J.N.; Krishnamurti, T.N.
Title Improving multimodel medium range forecasts over the Greater Horn of Africa using the FSU superensemble Type $loc['typeJournal Article']
Year 2016 Publication Meteorology and Atmospheric Physics Abbreviated Journal Meteorol Atmos Phys
Volume 128 Issue 4 Pages 441-451
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ISSN 0177-7971 ISBN Medium
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Call Number COAPS @ mfield @ Serial 82
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Author Laurencin, C.; Misra, V.
Title Characterizing the Variations of the motion of the North Atlantic tropical cyclones Type $loc['typeJournal Article']
Year 2018 Publication Meteorology and Atmospheric Physics Abbreviated Journal Meteorol Atmos Phys
Volume 130 Issue 303 Pages 1-12
Keywords climatology; interannual scales; environment
Abstract In this study, we examine the seasonal and interannual variability of the North Atlantic (NATL) tropical cyclone (TC) motion from the historical Hurricane Database (HURDAT2) over the period 1988-2014. We characterize these motions based on their position, lifecycle, and seasonal cycle. The main findings of this study include: (1) of the 11,469 NATL TC fixes examined between 1988 and 2014, 81% of them had a translation speed of < 20 mph; (2) TCs in the deep tropics of the NATL are invariably slow-moving in comparison with TCs in higher latitudes. Although fast-moving TCs (> 40 mph) are exclusively found north of 30 N, the slow-moving TCs have a wide range of latitude. This is largely a consequence of the background steering flow being weaker (stronger) in the tropical (higher) latitudes with a minimum around the subtropical latitudes of NATL; (3) there is an overall decrease in the frequency of all categories of translation speed of TCs in warm relative to cold El Niño Southern Oscillation (ENSO) years. However, in terms of the percentage change, TCs with a translation speed in the range of 10-20 mph display the most change (42%) in warm relative to cold ENSO years; and (4) there is an overall decrease in frequency across all categories of TC translation speed in small relative to large Atlantic Warm Pool years, but in terms of percentage change in the frequency of TCs, there is a significant and comparable change in the frequency over a wider range of translation speeds than the ENSO composites. This last finding suggests that Atlantic Warm Pool variations have a more profound impact on the translation speed of Atlantic TCs than ENSO.
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Call Number COAPS @ rl18 @ Serial 991
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Author Stefanova, L.; Krishnamurti, T.N.
Title Kinetic energy exchanges between the time scales of ENSO and the Pacific decadal oscillation Type $loc['typeJournal Article']
Year 2011 Publication Meteorology and Atmospheric Physics Abbreviated Journal Meteorol Atmos Phys
Volume 114 Issue 3-4 Pages 95-105
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ISSN 0177-7971 ISBN Medium
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Call Number COAPS @ mfield @ Serial 286
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