![]() Harasti,P.R., McAdie,C.J., Dodge, P.P., Lee, W-C, Tuttle, J., Murillo, S.T., Marks, F.D. Rogers, and F.Roux, 2005: “A numerical simulation of Hurricane Bret on 22-23 August 1999 initialized with airborne Doppler radar and dropsonde data” .Soc., 131 (605) p.155-194 (Jan. Zhang, 2010: “Estimation and mapping of hurricane turbulent energy using airborne Doppler measurements.” Monthly Weather Review, 138(9)p.3656-3670 (September 2010) Marks, 2012: “Multiscale analysis of mature tropical cyclone structure from airborne Doppler composites,” Monthly Weather Review, 140 (1), P. Environmental flow impacts on tropical cyclone structure diagnosed from airborne Doppler radar composites. See the latest Indonesia Doppler radar weather map including areas of rain, snow and ice. Evaluation of the Hurricane Research Division Doppler radar analysis software using synthetic data. The relationship between spatial variations in the structure of convective bursts and tropical cyclone intensification using airborne Doppler radar. A wavenumber-1 asymmetry arises, showing that in the downshear (upshear) quadrants of the TC, updrafts are more (less) frequent and deeper (shallower)… Rainband updrafts become deeper and stronger with increasing radius. The selected updrafts are then collectively analyzed by their frequency, radius, azimuthal location (relative to the 200–850 hPa environmental wind shear), structural characteristics, and secondary circulation (radial/vertical) flow pattern. An automated algorithm is developed to identify the strongest rainband updrafts across 12 hurricane-strength TCs. ![]() Journal of Geophysical Research: Atmospheres, 127(6), e2021JD035718.4Ībstract: Ten years of airborne Doppler radar observations are used to study convective updrafts’ kinematic and reflectivity structures in tropical cyclone (TC) rainbands. Statistical Analysis of Convective Updrafts in Tropical Cyclone Rainbands Observed by Airborne Doppler Radar.
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