Assessment of Sea Surface Temperatures in the Caribbean Sea Associated with Hurricane Tracks Using GOES-East Infrared Measurement
Abstract
A minimum sea surface temperature (SST) of 26° C is considered a requirement for hurricane generation and maintenance. Although the Caribbean Sea lies within the Western Hemisphere Warm Pool, notable north-south gradients in SST during summer often exist due to wind-induced cool water upwelling along the northern coast of South America. Our hypothesis is that the spatial extent and magnitude of cooling due to this upwelling process has an impact on the location of individual hurricane tracks. We propose that hurricanes will track further north when upwelling is strong and regionally extensive. We will investigate spatial SST variability within and across hurricane seasons in relationship to hurricane tracks. We will also investigate SST along the hurricane tracks. SSTs will be quantified using GOES-East weekly and monthly composites at a spatial resolution of 4x4 km and using the 4 micron channel, which is least affected by atmospheric water vapor attenuation.A minimum sea surface temperature (SST) of 26° C is considered a requirement for hurricane generation and maintenance. Although the Caribbean Sea lies within the Western Hemisphere Warm Pool, notable north-south gradients in SST during summer often exist due to wind-induced cool water upwelling along the northern coast of South America. Our hypothesis is that the spatial extent and magnitude of cooling due to this upwelling process has an impact on the location of individual hurricane tracks. We propose that hurricanes will track further north when upwelling is strong and regionally extensive. We will investigate spatial SST variability within and across hurricane seasons in relationship to hurricane tracks. We will also investigate SST along the hurricane tracks. SSTs will be quantified using GOES-East weekly and monthly composites at a spatial resolution of 4x4 km and using the 4 micron channel, which is least affected by atmospheric water vapor attenuation.
- Publication:
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American Geophysical Union, Ocean Sciences Meeting
- Pub Date:
- February 2016
- Bibcode:
- 2016AGUOS.A54B2722C
- Keywords:
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- 1610 Atmosphere;
- GLOBAL CHANGEDE: 1616 Climate variability;
- GLOBAL CHANGEDE: 4504 Air/sea interactions;
- OCEANOGRAPHY: PHYSICAL