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TVT, 2002, Volume 40, Issue 3, Pages 460–465 (Mi tvt1805)  

This article is cited in 6 scientific papers (total in 6 papers)

Heat and Mass Transfer and Physical Gasdynamics

Collision and Coagulation Nuclei under Conditions of Brownian and Turbulent Motion of Aerosol Particles

L. I. Zaichikab, A. L. Solov'evab

a Joint Institute for High Temperatures, Russian Academy of Sciences, Moscow
b Center of Software Development for Nuclear Power Plants and Reactor Facilities, Ministry of Atomic Energy of the Russian Federation, Moscow

Abstract: Collisions of aerosol particles caused by their involvement in Brownian and turbulent motion are treated. Analysis is performed of the ratio between the collision and coagulation nuclei depending on the particle size.

Full text: PDF file (1289 kB)

English version:
High Temperature, 2002, 40:3, 422–427

Bibliographic databases:

UDC: 532.529
Received: 09.07.2001

Citation: L. I. Zaichik, A. L. Solov'ev, “Collision and Coagulation Nuclei under Conditions of Brownian and Turbulent Motion of Aerosol Particles”, TVT, 40:3 (2002), 460–465; High Temperature, 40:3 (2002), 422–427

Citation in format AMSBIB
\Bibitem{ZaiSol02}
\by L.~I.~Zaichik, A.~L.~Solov'ev
\paper Collision and Coagulation Nuclei under Conditions of Brownian and Turbulent Motion of Aerosol Particles
\jour TVT
\yr 2002
\vol 40
\issue 3
\pages 460--465
\mathnet{http://mi.mathnet.ru/tvt1805}
\transl
\jour High Temperature
\yr 2002
\vol 40
\issue 3
\pages 422--427
\crossref{https://doi.org/10.1023/A:1016072226148}
\isi{http://gateway.isiknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&DestLinkType=FullRecord&DestApp=ALL_WOS&KeyUT=000176479800013}


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    Citing articles on Google Scholar: Russian citations, English citations
    Related articles on Google Scholar: Russian articles, English articles

    This publication is cited in the following articles:
    1. Guichard R., Taniere A., Belut E., Rimbert N., “Simulation of Nanoparticle Coagulation Under Brownian Motion and Turbulence in a Differential-Algebraic Framework: Developments and Applications”, Int. J. Multiph. Flow, 64 (2014), 73–84  crossref  mathscinet  isi
    2. Xu J., Shen H., Wang H., “An Industry-Scale Modeling For the Turbulence Agglomeration of Fine Particles”, Adv. Mech. Eng., 7:11 (2015)  crossref  isi
    3. Awaja F., Wakelin E.A., Sage J., Altaee A., “Description of Dna Molecular Motion For Nanotechnology Applications”, Prog. Mater. Sci., 74 (2015), 308–331  crossref  isi  elib
    4. Guichard R., Belut E., “Simulation of Airborne Nanoparticles Transport, Deposition and Aggregation: Experimental Validation of a Cfd-Qmom Approach”, J. Aerosol. Sci., 104 (2017), 16–31  crossref  isi  scopus
    5. Gelain T., Porcheron E., Changnot Ch., Roulet D., Proceedings of the 26Th International Conference on Nuclear Engineering, 2018, Vol 8, Amer Soc Mechanical Engineers, 2018  isi
    6. Zheng J., Long Wang, Hong W., Shuai Xu, Shan Baolong, “Investigation of Aggregation Kernel and Simulation of Ultrafine Particle Aggregation Under Turbulence and Brownian Motion”, J. Chem. Eng. Jpn., 51:1 (2018), 62–70  crossref  isi  scopus
  • Teplofizika vysokikh temperatur Teplofizika vysokikh temperatur
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