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Matematicheskoe modelirovanie, 2017, Volume 29, Number 2, Pages 106–118 (Mi mm3818)  

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

Features of overset meshes methodology on unstructed grids

Yu. N. Deryugin, A. S. Sarazov, R. N. Zhuchkov

FSUE RFNC-VNIIEF
Full-text PDF (648 kB) Citations (6)
References:
Abstract: The main steps of Overset Grids technique are being discussed. The emphasis is on the peculiarities of the implementation of algorithms on grids consisting of arbitrary polyhedral cells. The methods of constructing countable regions of arbitrary shape are being offered. The operability and efficiency are being demonstrated by cases with available experimental data.
Keywords: unstructed meshes, Chimera grids, interpolation pattern, numerical simulation.
Funding agency Grant number
Russian Foundation for Basic Research 13-08-12033_офи_м
Received: 07.09.2015
Revised: 23.03.2016
English version:
Mathematical Models and Computer Simulations, 2017, Volume 9, Issue 5, Pages 587–597
DOI: https://doi.org/10.1134/S2070048217050040
Bibliographic databases:
Document Type: Article
Language: Russian
Citation: Yu. N. Deryugin, A. S. Sarazov, R. N. Zhuchkov, “Features of overset meshes methodology on unstructed grids”, Mat. Model., 29:2 (2017), 106–118; Math. Models Comput. Simul., 9:5 (2017), 587–597
Citation in format AMSBIB
\Bibitem{DerSarZhu17}
\by Yu.~N.~Deryugin, A.~S.~Sarazov, R.~N.~Zhuchkov
\paper Features of overset meshes methodology on unstructed grids
\jour Mat. Model.
\yr 2017
\vol 29
\issue 2
\pages 106--118
\mathnet{http://mi.mathnet.ru/mm3818}
\elib{https://elibrary.ru/item.asp?id=28912743}
\transl
\jour Math. Models Comput. Simul.
\yr 2017
\vol 9
\issue 5
\pages 587--597
\crossref{https://doi.org/10.1134/S2070048217050040}
\scopus{https://www.scopus.com/record/display.url?origin=inward&eid=2-s2.0-85029769941}
Linking options:
  • https://www.mathnet.ru/eng/mm3818
  • https://www.mathnet.ru/eng/mm/v29/i2/p106
  • This publication is cited in the following 6 articles:
    1. S. M. Bosnyakov, M. E. Berezko, Yu. N. Deryugin, A. P. Duben, R. N. Zhuchkov, A. S. Kozelkov, T. K. Kozubskaya, S. V. Matyash, S. V. Mikhailov, M. K. Okulov, V. A. Talyzin, A. A. Utkina, N. A. Kharchenko, V. I. Shevyakov, “Evaluation of the Accuracy of Modern Codes by Comparing the Calculated and Experimental Data on the Example of a Problem on a Supersonic Viscous Turbulent Gas Flow Around a Tandem of Back-Forcing and Forward-Forcing Steps”, Math Models Comput Simul, 16:1 (2024), 123  crossref
    2. Aleksey Sarazov, Andrey Kozelkov, Dmitriy Strelets, Roman Zhuchkov, “Modeling Object Motion on Arbitrary Unstructured Grids Using an Invariant Principle of Computational Domain Topology: Key Features”, Symmetry, 15:11 (2023), 2081  crossref
    3. Andrey Sposobin, Dmitry Reviznikov, “A Meshless Algorithm for Modeling the Gas-Dynamic Interaction between High-Inertia Particles and a Shock Layer”, Fluids, 8:2 (2023), 53  crossref
    4. S. M. Bosnyakov, M. E. Berezko, Yu. N. Deryugin, A. P. Duben, R. N. Zhuchkov, A. S. Kozelkov, T. K. Kozubskaya, S. V. Matyash, S. V. Mikhailov, M. K. Okulov, V. A. Talyzin, A. A. Utkina, N. A. Kharchenko, V. I. Shevyakov, “Accuracy evaluation of modern effective codes by comparing calculated and experimental data on the example of problem about supersonic viscous turbulent gas flow around the tandem of back-forcing and forward-forcing steps”, Matem. Mod., 35:10 (2023), 69–112  mathnet  mathnet  crossref
    5. V. T. Lukashenko, F. A. Maksimov, “Modelirovanie poleta oskolkov meteornogo tela s uchetom vrascheniya”, Kompyuternye issledovaniya i modelirovanie, 11:4 (2019), 593–612  mathnet  crossref
    6. A. S. Kozelkov, V. R. Efremov, A. A. Kurkin, N. V. Tarasova, D. A. Utkin, E. S. Tyatyushkina, “Simulation of body motion in viscous incompressible fluid”, Num. Anal. Appl., 12:3 (2019), 219–233  mathnet  crossref  crossref  isi  elib
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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