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Kovyrkina, Olyana Aleksandrovna

Statistics Math-Net.Ru
Total publications: 15
Scientific articles: 15
Presentations: 1

Number of views:
This page:263
Abstract pages:3756
Full texts:948
References:523
Candidate of physico-mathematical sciences
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https://www.mathnet.ru/eng/person54187
List of publications on Google Scholar
List of publications on ZentralBlatt
https://mathscinet.ams.org/mathscinet/MRAuthorID/763881

Publications in Math-Net.Ru Citations
2023
1. O. A. Kovyrkina, V. V. Ostapenko, “On accuracy of finite-difference schemes in calculations of centered rarefaction waves”, Matem. Mod., 35:7 (2023),  83–96  mathnet; Math. Models Comput. Simul., 15:1 suppl. (2023), S54–S63 2
2022
2. V. G. Romanov, V. V. Vedenyapin, V. V. Vasin, O. A. Kovyrkina, V. V. Ostapenko, V. F. Tishkin, I. V. Astashova, D. A. Lashin, A. V. Filinovskii, “Erratum to: Several Articles in Doklady Mathematics”, Dokl. RAN. Math. Inf. Proc. Upr., 506 (2022),  404–405  mathnet; Dokl. Math., 106:2 (2022), 404–405
3. O. A. Kovyrkina, V. V. Ostapenko, V. F. Tishkin, “On convergence of finite-difference shock-capturing schemes in regions of shock waves influence”, Dokl. RAN. Math. Inf. Proc. Upr., 504 (2022),  42–46  mathnet  mathscinet  elib; Dokl. Math., 105 (2022), 171–174 1
4. O. A. Kovyrkina, A. A. Kurganov, V. V. Ostapenko, “Comparative analysis of the accuracy of three different schemes in the calculation of shock waves”, Matem. Mod., 34:10 (2022),  43–64  mathnet  mathscinet; Math. Models Comput. Simul., 15:3 (2023), 401–414 5
5. M. D. Bragin, O. A. Kovyrkina, M. E. Ladonkina, V. V. Ostapenko, V. F. Tishkin, N. A. Khandeeva, “Combined numerical schemes”, Zh. Vychisl. Mat. Mat. Fiz., 62:11 (2022),  1763–1803  mathnet  mathscinet  elib; Comput. Math. Math. Phys., 62:11 (2022), 1743–1781 5
2021
6. O. A. Kovyrkina, V. V. Ostapenko, “On accuracy of MUSCL type scheme when calculating discontinuous solutions”, Matem. Mod., 33:1 (2021),  105–121  mathnet; Math. Models Comput. Simul., 13:5 (2021), 810–819 4
2020
7. O. A. Kovyrkina, V. V. Ostapenko, “Accuracy of MUSCL-type schemes in shock wave calculations”, Dokl. RAN. Math. Inf. Proc. Upr., 492 (2020),  43–48  mathnet  zmath  elib; Dokl. Math., 101:3 (2020), 209–213 6
2018
8. N. A. Zyuzina, O. A. Kovyrkina, V. V. Ostapenko, “On the monotonicity of the CABARET scheme approximating a scalar conservation law with alternating characteristic field”, Matem. Mod., 30:5 (2018),  76–98  mathnet; Math. Models Comput. Simul., 11:1 (2019), 46–60 3
9. O. A. Kovyrkina, V. V. Ostapenko, “Monotonicity of the CABARET scheme approximating a hyperbolic system of conservation laws”, Zh. Vychisl. Mat. Mat. Fiz., 58:9 (2018),  1488–1504  mathnet  elib; Comput. Math. Math. Phys., 58:9 (2018), 1435–1450  isi  scopus 7
2016
10. O. A. Kovyrkina, V. V. Ostapenko, “Monotonicity of the CABARET scheme approximating a hyperbolic equation with a sign-changing characteristic field”, Zh. Vychisl. Mat. Mat. Fiz., 56:5 (2016),  796–815  mathnet  elib; Comput. Math. Math. Phys., 56:5 (2016), 783–801  isi  scopus 9
2014
11. V. V. Degtyarev, V. V. Ostapenko, O. A. Kovyrkina, A. V. Zolotykh, “Comparison of theory and experiment in simulation of dam break in a rectangular channel with a sudden change in cross-sectional area”, Prikl. Mekh. Tekh. Fiz., 55:6 (2014),  107–113  mathnet  elib; J. Appl. Mech. Tech. Phys., 55:6 (2014), 999–1004 4
2013
12. O. A. Kovyrkina, V. V. Ostapenko, “On the practical accuracy of shock-capturing schemes”, Matem. Mod., 25:9 (2013),  63–74  mathnet  mathscinet; Math. Models Comput. Simul., 6:2 (2014), 183–191  scopus 22
2012
13. O. A. Kovyrkina, V. V. Ostapenko, “On monotony of two layer in time cabaret scheme”, Matem. Mod., 24:9 (2012),  97–112  mathnet  mathscinet  elib; Math. Models Comput. Simul., 5:2 (2013), 180–189  scopus 19
2007
14. O. A. Kovyrkina, V. V. Ostapenko, “Asymptotic expansion of a difference solution in the neighborhood of strong discontinuity”, Vestn. Novosib. Gos. Univ., Ser. Mat. Mekh. Inform., 7:4 (2007),  49–73  mathnet
2005
15. O. A. Kovyrkina, V. V. Ostapenko, “Construction of asymptotics of a discrete solution based on nonclassical differential approximations”, Zh. Vychisl. Mat. Mat. Fiz., 45:1 (2005),  88–109  mathnet  mathscinet  zmath  elib; Comput. Math. Math. Phys., 45:1 (2005), 83–103  elib 1

Presentations in Math-Net.Ru
1. Волновые течения, возникающие при подъеме бруса из мелкой воды
O. A. Kovyrkina, V. V. Ostapenko
All-Russian conference "Modern Problems of Continuum Mechanics" devoted to 110 anniversary of L. I. Sedov
November 14, 2017 16:40

Organisations
 
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