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Aerosol indirect effect from turbulence-induced broadening of cloud-droplet size distributions
by
Chandrakar, Kamal Kant
, Cantrell, Will
, Ciochetto, David
, Shaw, Raymond A.
, Chang, Kelken
, Yang, Fan
, Ovchinnikov, Mikhail
, Niedermeier, Dennis
in
aerosol indirect effect
/ Aerosols
/ Albedo
/ Atmospheric aerosols
/ cloud-droplet size distribution
/ cloud–turbulence interactions
/ Differential equations
/ Dispersion
/ Earth, Atmospheric, and Planetary Sciences
/ ENVIRONMENTAL SCIENCES
/ Fluctuations
/ Physical Sciences
/ Precipitation
/ Stochastic models
/ Supersaturation
/ Turbulence
2016
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Aerosol indirect effect from turbulence-induced broadening of cloud-droplet size distributions
by
Chandrakar, Kamal Kant
, Cantrell, Will
, Ciochetto, David
, Shaw, Raymond A.
, Chang, Kelken
, Yang, Fan
, Ovchinnikov, Mikhail
, Niedermeier, Dennis
in
aerosol indirect effect
/ Aerosols
/ Albedo
/ Atmospheric aerosols
/ cloud-droplet size distribution
/ cloud–turbulence interactions
/ Differential equations
/ Dispersion
/ Earth, Atmospheric, and Planetary Sciences
/ ENVIRONMENTAL SCIENCES
/ Fluctuations
/ Physical Sciences
/ Precipitation
/ Stochastic models
/ Supersaturation
/ Turbulence
2016
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Aerosol indirect effect from turbulence-induced broadening of cloud-droplet size distributions
by
Chandrakar, Kamal Kant
, Cantrell, Will
, Ciochetto, David
, Shaw, Raymond A.
, Chang, Kelken
, Yang, Fan
, Ovchinnikov, Mikhail
, Niedermeier, Dennis
in
aerosol indirect effect
/ Aerosols
/ Albedo
/ Atmospheric aerosols
/ cloud-droplet size distribution
/ cloud–turbulence interactions
/ Differential equations
/ Dispersion
/ Earth, Atmospheric, and Planetary Sciences
/ ENVIRONMENTAL SCIENCES
/ Fluctuations
/ Physical Sciences
/ Precipitation
/ Stochastic models
/ Supersaturation
/ Turbulence
2016
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Aerosol indirect effect from turbulence-induced broadening of cloud-droplet size distributions
Journal Article
Aerosol indirect effect from turbulence-induced broadening of cloud-droplet size distributions
2016
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Overview
The influence of aerosol concentration on the cloud-droplet size distribution is investigated in a laboratory chamber that enables turbulent cloud formation through moist convection. The experiments allow steady-state microphysics to be achieved, with aerosol input balanced by cloud-droplet growth and fallout. As aerosol concentration is increased, the cloud-droplet mean diameter decreases, as expected, but the width of the size distribution also decreases sharply. The aerosol input allows for cloud generation in the limiting regimes of fast microphysics (τc
< τt
) for high aerosol concentration, and slow microphysics (τc
> τt
) for low aerosol concentration; here, τc
is the phase-relaxation time and τt
is the turbulence-correlation time. The increase in the width of the droplet size distribution for the low aerosol limit is consistent with larger variability of supersaturation due to the slow microphysical response. A stochastic differential equation for supersaturation predicts that the standard deviation of the squared droplet radius should increase linearly with a system time scale defined as
τ
s
−
1
=
τ
c
−
1
+
τ
t
−
1
, and the measurements are in excellent agreement with this finding. The result underscores the importance of droplet size dispersion for aerosol indirect effects: increasing aerosol concentration changes the albedo and suppresses precipitation formation not only through reduction of the mean droplet diameter but also by narrowing of the droplet size distribution due to reduced supersaturation fluctuations. Supersaturation fluctuations in the low aerosol/slow microphysics limit are likely of leading importance for precipitation formation.
Publisher
National Academy of Sciences,National Academy of Sciences, Washington, DC (United States)
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