Title of article :
Monitoring water phase dynamics in winter clouds
Author/Authors :
Campos، نويسنده , , Edwin F. and Ware، نويسنده , , Randolph and Joe، نويسنده , , Paul F. Hudak، نويسنده , , David، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Abstract :
This work presents observations of water phase dynamics that demonstrate the theoretical Wegener–Bergeron–Findeisen concepts in mixed-phase winter storms. The work analyzes vertical profiles of air vapor pressure, and equilibrium vapor pressure over liquid water and ice. Based only on the magnitude ranking of these vapor pressures, we identified conditions where liquid droplets and ice particles grow or deplete simultaneously, as well as the conditions where droplets evaporate and ice particles grow by vapor diffusion. The method is applied to ground-based remote-sensing observations during two snowstorms, using two distinct microwave profiling radiometers operating in different climatic regions (North American Central High Plains and Great Lakes).
sults are compared with independent microwave radiometer retrievals of vertically integrated liquid water, cloud-base estimates from a co-located ceilometer, reflectivity factor and Doppler velocity observations by nearby vertically pointing radars, and radiometer estimates of liquid water layers aloft. This work thus makes a positive contribution toward monitoring and nowcasting the evolution of supercooled droplets in winter clouds.
Keywords :
snowstorm , cloud , Supercooled droplet , Mixed phase , Microwave radiometer
Journal title :
Atmospheric Research
Journal title :
Atmospheric Research