Title :
Satellite remote sensing of the liquid water sensitivity in water clouds
Author :
Han, Qingyuan ; Rossow, William B. ; Zeng, Jane ; Welch, Ronald
Author_Institution :
Alabama Univ., Huntsville, AL, USA
Abstract :
In estimation of the aerosol indirect effect, cloud liquid water path is considered either constant (Twomey effect) or increasing with enhanced droplet number concentrations (drizzle-suppression effect, or Albrecht effect) if cloud microphysics is the prevailing mechanism during the aerosol-cloud interactions. On the other hand, if cloud thermodynamics and dynamics are considered, the cloud liquid water path may be decreased with increasing droplet number concentration, which is predicted by model calculations and observed in ship-track and urban influence studies. This study is to examine the different responses of cloud liquid water path to changes of cloud droplet number concentration. Satellite data (January, April, July and October 1987) are used to retrieve the cloud liquid water sensitivity, defined as the changes of liquid water path versus changes of column droplet number concentrations. The results of a global survey reveal that (1) at least one third of the cases the cloud liquid water sensitivity is negative, the regional and seasonal variations of the negative liquid water sensitivity are consistent with other observations; (2) cloud droplet sizes are always inversely proportional to column droplet number concentrations
Keywords :
clouds; rain; Albrecht effect; Twomey effect; aerosol cloud interaction; aerosol indirect effect; atmosphere; boundary layer; cloud; drizzle suppression effect; droplet number concentration; droplet size; enhanced evaporation; liquid water sensitivity; meteorology; microphysics; rain; satellite remote sensing; water cloud; Aerodynamics; Aerosols; Clouds; Information retrieval; NASA; Predictive models; Remote sensing; Satellites; Thermodynamics; Uncertainty;
Conference_Titel :
Geoscience and Remote Sensing Symposium, 2001. IGARSS '01. IEEE 2001 International
Conference_Location :
Sydney, NSW
Print_ISBN :
0-7803-7031-7
DOI :
10.1109/IGARSS.2001.976742