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TVT, 2018, Volume 56, Issue 4, Pages 499–503 (Mi tvt10937)  

Plasma Investigations

Process of the deposition of charged polydisperse gas suspension on the plate surface in an electrical field

A. L. Tukmakovab, N. F. Kashapovc, D. A. Tukmakovab, M. G. Fazlyyyakhmatovc

a Kazan National Research Technical University named after A. N. Tupolev
b Research Institute of Mechanics and Machinery of Kazan Scientific Center of the Russian Academy of Sciences
c Kazan (Volga Region) Federal University

Abstract: The process of powder sputtering onto a flat surface in an electric field is described on the basis of the numerical solution of a system of equations of the dynamics of a polydisperse gas suspension. The model includes equations for the motion of the carrier and disperse phases under the action of the aerodynamic friction force and the Coulomb force, taking into account the interphase exchange of momentum and energy. The system is solved by the explicit predictor–corrector method with splitting over the spatial directions and the nonlinear correction scheme. The numerical model is used to obtain the velocity and density fields of the gas suspension in the interelectrode space and on the surface of the target electrode.

Funding Agency Grant Number
Russian Foundation for Basic Research 17-48-160359
Ministry of Education and Science of the Russian Federation 9.5542.2017/6.7
The work was supported by the Russian Foundation for Basic Research and the Government of the Republic of Tatarstan, project no. 17-48-160359, and the State task of the Ministry of Education and Science of the Russian Federation, project no. 9.5542.2017/6.7.


DOI: https://doi.org/10.31857/S000523100002724-0

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English version:
High Temperature, 2018, 56:4, 481–485

Bibliographic databases:

UDC: 532.529:532.59:534.2:533.951
Received: 03.10.2017
Accepted:26.12.2017

Citation: A. L. Tukmakov, N. F. Kashapov, D. A. Tukmakov, M. G. Fazlyyyakhmatov, “Process of the deposition of charged polydisperse gas suspension on the plate surface in an electrical field”, TVT, 56:4 (2018), 499–503; High Temperature, 56:4 (2018), 481–485

Citation in format AMSBIB
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