There are various methods for calculating rarefied gas flows, in particular, statistical methods and deterministic methods based on the finite-difference solutions of the Boltzmann nonlinear kinetic equation and on the solutions of model kinetic equations. There is no universal method; each has its disadvantages in terms of efficiency or accuracy. The choice of the method depends on the problem to be solved and on parameters of calculated flows. Qualitative theoretical arguments help to determine the range of parameters of effectively solved problems for each method; however, it is advisable to perform comparative tests of calculations of the classical problems performed by different methods and with different parameters to have quantitative confirmation of this reasoning. The paper provides the results of the calculations performed by the authors with the help of the Direct Simulation Monte Carlo method and finite-difference methods of solving the Boltzmann equation and model kinetic equations. Based on this comparison, conclusions are made on selecting a particular method for flow simulations in various ranges of flow parameters.
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26 October 2017
PROCEEDINGS OF THE XXV CONFERENCE ON HIGH-ENERGY PROCESSES IN CONDENSED MATTER (HEPCM 2017): Dedicated to the 60th anniversary of the Khristianovich Institute of Theoretical and Applied Mechanics SB RAS
5–9 June 2017
Novosibirsk, Russia
Research Article|
October 26 2017
Simulation of 2D rarefied gas flows based on the numerical solution of the Boltzmann equation
Sergey O. Poleshkin;
Sergey O. Poleshkin
a)
1
Khristianovich Institute of Theoretical and Applied Mechanics SB RAS
, 630090, Novosibirsk, Russia
2
Novosibirsk State University
, 630090, Novosibirsk, Russia
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Ewgenij A. Malkov;
Ewgenij A. Malkov
1
Khristianovich Institute of Theoretical and Applied Mechanics SB RAS
, 630090, Novosibirsk, Russia
2
Novosibirsk State University
, 630090, Novosibirsk, Russia
3
Siberian State University of Telecommunications and Information Sciences
, 630102, Novosibirsk, Russia
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Alexey N. Kudryavtsev;
Alexey N. Kudryavtsev
b)
1
Khristianovich Institute of Theoretical and Applied Mechanics SB RAS
, 630090, Novosibirsk, Russia
2
Novosibirsk State University
, 630090, Novosibirsk, Russia
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Anton A. Shershnev;
Anton A. Shershnev
c)
1
Khristianovich Institute of Theoretical and Applied Mechanics SB RAS
, 630090, Novosibirsk, Russia
2
Novosibirsk State University
, 630090, Novosibirsk, Russia
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Yevgeniy A. Bondar;
Yevgeniy A. Bondar
1
Khristianovich Institute of Theoretical and Applied Mechanics SB RAS
, 630090, Novosibirsk, Russia
2
Novosibirsk State University
, 630090, Novosibirsk, Russia
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A. A. Kohanchik
A. A. Kohanchik
2
Novosibirsk State University
, 630090, Novosibirsk, Russia
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Sergey O. Poleshkin
1,2,a)
Ewgenij A. Malkov
1,2,3
Alexey N. Kudryavtsev
1,2,b)
Anton A. Shershnev
1,2,c)
Yevgeniy A. Bondar
1,2
A. A. Kohanchik
2
1
Khristianovich Institute of Theoretical and Applied Mechanics SB RAS
, 630090, Novosibirsk, Russia
2
Novosibirsk State University
, 630090, Novosibirsk, Russia
3
Siberian State University of Telecommunications and Information Sciences
, 630102, Novosibirsk, Russia
AIP Conf. Proc. 1893, 030050 (2017)
Citation
Sergey O. Poleshkin, Ewgenij A. Malkov, Alexey N. Kudryavtsev, Anton A. Shershnev, Yevgeniy A. Bondar, A. A. Kohanchik; Simulation of 2D rarefied gas flows based on the numerical solution of the Boltzmann equation. AIP Conf. Proc. 26 October 2017; 1893 (1): 030050. https://doi.org/10.1063/1.5007508
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