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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
G. V. Krivovichev, “Difference splitting schemes for the system of one-dimensional equations of hemodynamics”, Computer Research and Modeling, 16:2 (2024), 459–488 |
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2019 |
2. |
G. V. Krivovichev, M. P. Mashchinskaya, “Stability analysis of the implicit finite-difference-based upwind lattice Boltzmann schemes”, Num. Meth. Prog., 20:2 (2019), 116–127 |
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2017 |
3. |
G. V. Krivovichev, “Kinetic equations for modelling of diffusion processes by lattice Boltzmann method”, Computer Research and Modeling, 9:6 (2017), 919–936 |
4. |
G. V. Krivovichev, E. S. Marnopolskaya, “Analysis and optimization of higher order explicit finite-difference schemes for the advection stage implementation in the lattice Boltzmann method”, Num. Meth. Prog., 18:3 (2017), 227–246 |
5. |
G. V. Krivovichev, E. A. Prokhorova, “Approximation viscosity of one-parameter families of lattice Boltzmann equations”, Num. Meth. Prog., 18:1 (2017), 41–52 |
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2016 |
6. |
G. V. Krivovichev, “Stability investigation of finite-difference schemes of lattice Boltzmann method for diffusion modelling”, Computer Research and Modeling, 8:3 (2016), 485–500 |
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7. |
G. V. Krivovichev, E. S. Marnopolskaya, “Study of properties of a finite-difference scheme for the advection stage implementation in the lattice Boltzmann method”, Num. Meth. Prog., 17:3 (2016), 212–223 |
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2015 |
8. |
G. V. Krivovichev, S. A. Mikheev, “Stability study of finite-difference-based lattice Boltzmann schemes with upwind differences of high order approximation”, Num. Meth. Prog., 16:2 (2015), 196–204 |
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9. |
G. V. Krivovichev, E. V. Voskoboinikova, “Application of predictor-corrector finite-difference-based schemes in the lattice Boltzmann method”, Num. Meth. Prog., 16:1 (2015), 10–17 |
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2014 |
10. |
G. V. Krivovichev, “Modification of the lattice Boltzmann method for the computations of viscid incompressible fluid flows”, Computer Research and Modeling, 6:3 (2014), 365–381 |
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11. |
G. V. Krivovichev, S. A. Mikheev, “Stability of three-layer finite difference-based lattice Boltzmann schemes”, Num. Meth. Prog., 15:2 (2014), 211–221 |
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2013 |
12. |
G. V. Krivovichev, “On the computation of viscous fluid flows by the lattice Boltzmann method”, Computer Research and Modeling, 5:2 (2013), 165–178 |
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13. |
G. V. Krivovichev, “A lattice Boltzmann scheme for computing on unstructured meshes”, Num. Meth. Prog., 14:4 (2013), 524–532 |
14. |
G. V. Krivovichev, “Stability analysis of the lattice Boltzmann schemes for solving the diffusion equation”, Num. Meth. Prog., 14:1 (2013), 175–182 |
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15. |
G. V. Krivovichev, “Stability of finite-difference-based lattice Boltzmann schemes”, Num. Meth. Prog., 14:1 (2013), 1–8 |
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16. |
G. V. Krivovichev, “On one variant of the lattice Boltzmann equation method”, Vestnik S.-Petersburg Univ. Ser. 10. Prikl. Mat. Inform. Prots. Upr., 2013, no. 4, 10–20 |
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2012 |
17. |
G. V. Krivovichev, “Krivovichev G.V”, Num. Meth. Prog., 13:2 (2012), 332–340 |
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18. |
G. V. Krivovichev, “Application of the integro-interpolation method to the construction of single-step lattice Boltzmann schemes”, Num. Meth. Prog., 13:1 (2012), 19–27 |
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2011 |
19. |
G. V. Krivovichev, “On stability of a lattice Boltzmann kinetic scheme for simulating
plane flows”, Num. Meth. Prog., 12:1 (2011), 194–204 |
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Presentations in Math-Net.Ru |
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