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Journal of Climate, ISSN 0894-8755, 10/2007, Volume 20, Issue 19, pp. 4819 - 4834
ENSO (El Niño–Southern Oscillation) has a large influence on tropical cyclone activity. The authors examine how different environmental factors contribute to... 
Relative humidity | Tropical regions | Climate change | Climatology | El Nino | Tropical climates | Oceans | Vorticity | Cyclones | Wind shear | STORM FORMATION | ATLANTIC HURRICANES | INTERANNUAL VARIABILITY | AUSTRALIAN REGION | WESTERN NORTH PACIFIC | SEA-SURFACE TEMPERATURE | LARGE-SCALE CIRCULATION | SOUTHERN-OSCILLATION | METEOROLOGY & ATMOSPHERIC SCIENCES | LOW-FREQUENCY VARIABILITY | EL-NINO
Journal Article
NATURE COMMUNICATIONS, ISSN 2041-1723, 07/2019, Volume 10, Issue 1, pp. 3076 - 9
How the substantial climate shifts of the Cenozoic era shaped the geographical distribution of tropical cyclone genesis remains unknown. Through a set of... 
VARIABILITY | PACIFIC | MULTIDISCIPLINARY SCIENCES | POTENTIAL INDEX | FREQUENCY | INTENSITY | PLIOCENE | SIMULATIONS | TRENDS | SEAWAY | CLIMATE | Geographical distribution | Cenozoic Era | Climate | Southern Hemisphere | Computer simulation | Eocene | Pliocene | Hemispheres | Tropical cyclones | Storms | Northern Hemisphere | Genesis | Cyclones | Cenozoic
Journal Article
Climate Dynamics, ISSN 0930-7575, 2/2016, Volume 46, Issue 3, pp. 865 - 877
Journal Article
Climate of the Past, ISSN 1814-9324, 10/2015, Volume 11, Issue 10, pp. 1433 - 1451
The favourability of the mid-Pliocene, Last Glacial Maximum (LGM) and mid-Holocene for tropical cyclone formation is investigated in five climate models. This... 
LAST GLACIAL MAXIMUM | GEOSCIENCES, MULTIDISCIPLINARY | PACIFIC-OCEAN | HURRICANE ACTIVITY | FUTURE CLIMATES | VERTICAL WIND SHEAR | EARTH SYSTEM MODEL | SEA-SURFACE TEMPERATURE | PLIOCENE CLIMATE | EXPERIMENTAL-DESIGN | METEOROLOGY & ATMOSPHERIC SCIENCES | GENERAL-CIRCULATION MODEL | Analysis | Tropical cyclones | Storms
Journal Article