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  • Archive: 2010
05 Feb 2010
  • 2010
  • V. 9
  • 1
  • (p.123 - 131)

Simulation of rocket seeding of convective clouds with coarse hygroscopic aerosol: 2. Condensation and coagulation processes in cloud zones seeded with hygroscopic particles

Authors:

Abshaev, M.; Abshaev, A.; Zhekamukhov, M.; Potapov, Evghenii; Garaba, Ion; Zasaviţchi, Efim

Summary:

The closed system of equations is derived to describe the variation in dispersion of cloud environment due to the processes of condensation and gravity coagulation in the zone of salt particle propagation at hygroscopic seeding of convective clouds with antihail rockets. The competition for moisture between natural cloud droplets entrained into this zone from ambient cloud air due to turbulent diffusion and by artificial salt NaCl particles is considered. The problems of optimal methods for hygroscopic seeding of convective clouds with a view to enhance forced precipitation are discussed.

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BibTeX

@article{ibn_4215,
author = {Abshaev, M.T. and Abshaev, A.M. and Zhekamukhov, M.K. and Potapov, E.I. and Garaba, I. and Zasaviţchi, E.A.},
title = {<p>Simulation of rocket seeding of convective clouds with coarse hygroscopic aerosol: 2. Condensation and coagulation processes in cloud zones seeded with hygroscopic particles</p>},
journal = {Moldavian Journal of the Physical Sciences},
year = {2010},
volume = {9 (1)},
pages = {123-131},
month = {Feb},
abstract = {(EN) The closed system of equations is derived to describe the variation in dispersion of 

cloud environment due to the processes of condensation and gravity coagulation in the zone 
of salt particle propagation at hygroscopic seeding of convective clouds with antihail rockets. The competition for moisture between natural cloud droplets entrained into this zone from 
ambient cloud air due to turbulent diffusion and by artificial salt NaCl particles is considered. 
The problems of optimal methods for hygroscopic seeding of convective clouds with a view 
to enhance forced precipitation are discussed. },
url = {https://ibn.idsi.md/vizualizare_articol/4215},
}

DataCite

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cloud environment due to the processes of condensation and gravity coagulation in the zone 
of salt particle propagation at hygroscopic seeding of convective clouds with antihail rockets. The competition for moisture between natural cloud droplets entrained into this zone from 
ambient cloud air due to turbulent diffusion and by artificial salt NaCl particles is considered. 
The problems of optimal methods for hygroscopic seeding of convective clouds with a view 
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Dublin Core

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<dc:creator>Abshaev, M.T.</dc:creator>
<dc:creator>Abshaev, A.M.</dc:creator>
<dc:creator>Zhekamukhov, M.K.</dc:creator>
<dc:creator>Potapov, E.I.</dc:creator>
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<dc:creator>Zasaviţchi, E.A.</dc:creator>
<dc:date>2010-02-05</dc:date>
<dc:description xml:lang='en'>The closed system of equations is derived to describe the variation in dispersion of 

cloud environment due to the processes of condensation and gravity coagulation in the zone 
of salt particle propagation at hygroscopic seeding of convective clouds with antihail rockets. The competition for moisture between natural cloud droplets entrained into this zone from 
ambient cloud air due to turbulent diffusion and by artificial salt NaCl particles is considered. 
The problems of optimal methods for hygroscopic seeding of convective clouds with a view 
to enhance forced precipitation are discussed. </dc:description>
<dc:source>Moldavian Journal of the Physical Sciences 9 (1) 123-131</dc:source>
<dc:title><p>Simulation of rocket seeding of convective clouds with coarse hygroscopic aerosol: 2. Condensation and coagulation processes in cloud zones seeded with hygroscopic particles</p></dc:title>
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SM ISO690:2012

ABSHAEV, M.; ABSHAEV, A.; ZHEKAMUKHOV, M.; POTAPOV, Evghenii; GARABA, Ion; ZASAVITSKY, E.. Simulation of rocket seeding of convective clouds with coarse hygroscopic aerosol: 2. Condensation and coagulation processes in cloud zones seeded with hygroscopic particles. In: Moldavian Journal of the Physical Sciences. 2010, nr. 1(9), pp. 123-131. ISSN 1810-648X.

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