TY - JOUR
T1 - Climatological radar delineation of Urban convection for Atlanta, Georgia
AU - Bentley, Mace L.
AU - Ashley, Walker S.
AU - Anthony Stallins, J.
PY - 2010/9
Y1 - 2010/9
N2 - The distribution of warm season (June through August) thunderstorm activity surrounding Atlanta, Georgia from 1997 to 2006 was determined utilizing composite reflectivity data obtained from the network of National Weather Service radars. The radar data, at 2 km and 5 min spatial and temporal resolutions, allows for high resolution analyses of urban convective trends when grid averaged over a 10-year period. Maxima of medium- to high-reflectivity episodes were identified to the north of and within downtown Atlanta and immediately east of the primary urban expansion of the central business district (CBD). Additional enhanced, highreflectivity areas are found in southern Fulton and Clayton counties, located south of downtown Atlanta. These regions are also collocated with high-density urban expansion south of the Atlanta CBD. The research presented is the most comprehensive spatial and temporal analysis of grid averaged composite reflectivity data for urban convection conducted to date.
AB - The distribution of warm season (June through August) thunderstorm activity surrounding Atlanta, Georgia from 1997 to 2006 was determined utilizing composite reflectivity data obtained from the network of National Weather Service radars. The radar data, at 2 km and 5 min spatial and temporal resolutions, allows for high resolution analyses of urban convective trends when grid averaged over a 10-year period. Maxima of medium- to high-reflectivity episodes were identified to the north of and within downtown Atlanta and immediately east of the primary urban expansion of the central business district (CBD). Additional enhanced, highreflectivity areas are found in southern Fulton and Clayton counties, located south of downtown Atlanta. These regions are also collocated with high-density urban expansion south of the Atlanta CBD. The research presented is the most comprehensive spatial and temporal analysis of grid averaged composite reflectivity data for urban convection conducted to date.
KW - Atlanta
KW - Climatology
KW - Radar
KW - Thunderstorm
KW - Urban
UR - http://www.scopus.com/inward/record.url?scp=77956586189&partnerID=8YFLogxK
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U2 - 10.1002/joc.2020
DO - 10.1002/joc.2020
M3 - Article
AN - SCOPUS:77956586189
SN - 0899-8418
VL - 30
SP - 1589
EP - 1594
JO - International Journal of Climatology
JF - International Journal of Climatology
IS - 11
ER -