HR: 0800h
AN: A11A-0858 [Abstracts]
TI: Droplet Growth by Turbulent Coagulation - Comparison of Theory and Measurements
AU: Wexler, A S
EM: aswexler@ucdavis.edu
AF: Department of Mechanical and Aeronautical Engineering, University of California, Davis, One Shields
Ave., Davis, CA 95616
United States
AU: * Riemer, N
EM: nicole.riemer@stonybrook.edu
AF: Institute for Terrestrial and Plantary Atmospheres, Marine Sciences Research Center, Stony Brook
University, Stony Brook, NY 11794
United States
AU: Diehl, K
EM: kdiehl@uni-mainz.de
AF: Institute of Atmospheric Physics
Johannes Gutenberg University, Becherweg 21, Mainz, 55099
Germany
AB:
While it is well known that cloud droplets grow in an inherently turbulent environment, the role of turbulence is only now
being elucidated. Over the course of several decades, both experimental and theoretical studies have come to the conclusion
that in-cloud turbulence enhances droplet growth. However, the adequate treatment of turbulence effects on droplet growth
still represents a major gap in our understanding of cloud microphysics.
To shed light on this issue, we compare published measurements of droplet growth by collision in turbulent flow with
numerical simulations. Since the measurements demonstrate an accelerated growth under turbulent conditions compared to
laminar ones, the data clearly cannot be simulated using the well-established kernel for sedimentation under laminar
conditions.
However, we show that by employing a collision kernel that has been recently derived from direct numerical simulations we are
able to capture the enhancement effect of turbulence for the droplet growth under the experimental conditions adequately and
reproduce the experimental data successfully.
DE: 3311 Clouds and aerosols
DE: 3379 Turbulence (4490)
SC: Atmospheric Sciences [A]
MN: Fall Meeting 2005