RUS  ENG
Full version
PEOPLE

Peskova Elizaveta Evgenievna

Publications in Math-Net.Ru

  1. Mathematical modeling of nonstationary problems related to laser thermochemistry of methane in the presence of catalytic nanoparticles

    Dokl. RAN. Math. Inf. Proc. Upr., 517 (2024),  79–84
  2. Application of the explicitly iterative scheme to simulating subsonic reacting gas flows

    Zh. Vychisl. Mat. Mat. Fiz., 64:2 (2024),  350–363
  3. The computational algorithm for studying internal laminar flows of a multicomponent gas with different-scale chemical processes

    Computer Research and Modeling, 15:5 (2023),  1169–1187
  4. Mathematical model of a two-temperature medium of gassolid nanoparticles with laser methane pyrolysis

    Mat. Model., 35:4 (2023),  24–50
  5. Numerical study of methane mixtures' conversion under the influence of laser radiation

    Zhurnal SVMO, 25:3 (2023),  159–173
  6. Numerical simulation of oxidative regeneration of a spherical catalyst grain

    Mat. Model., 34:11 (2022),  48–66
  7. Modeling of Richtmyer–Meshkov instability development using the discontinuous Galerkin method and local-adaptive meshes

    Mat. Model., 32:10 (2020),  34–46
  8. Numerical simulation of propane pyrolysis in a flow chemical reactor under the influence of constant external heating

    Mat. Model., 32:9 (2020),  119–130
  9. A priori error estimates of the local discontinuous Galerkin method on staggered grids for solving a parabolic equation for the homogeneous Dirichlet problem

    Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 24:1 (2020),  116–136
  10. Application of discontinuous Galerkin method to modeling of two-dimensional flows of a multicomponent ideal gases mixture using local adaptive mesh refinement

    Zhurnal SVMO, 21:2 (2019),  244–258
  11. Construction of a parallel computational algorithm based on the Galerkin discontinuous method for solving convective heat transfer problems on unstructured staggered grids

    Zhurnal SVMO, 20:4 (2018),  448–459
  12. Modeling the flow of multicomponent reactive gas by the example of hydrocarbons pyrolysis

    Keldysh Institute preprints, 2017, 101, 16 pp.
  13. Modeling the flow of a multicomponent reactive gas using high accuracy algorithms

    Vestn. Udmurtsk. Univ. Mat. Mekh. Komp. Nauki, 27:4 (2017),  608–617
  14. Using WENO schemes in mathematical modeling of gas mixture’s dynamics by the example of ethane pyrolysis

    Zhurnal SVMO, 18:3 (2016),  98–106
  15. About the use of WENO-limiter in the implicit scheme for the Discontinuous Galerkin method

    Zhurnal SVMO, 17:3 (2015),  75–81
  16. Distortion of high frequency optical signals photodetectors fabricated on silicon doped with gold.

    Zhurnal SVMO, 17:2 (2015),  76–80
  17. Distortion that occurs when you restore a high-frequency optical pulses (silicon doped with indium)

    Zhurnal SVMO, 17:1 (2015),  105–110
  18. Research of the order of accuracy of an Implicit Discontinuous Galerkin method for solving problems of gas dynamics

    Zhurnal SVMO, 17:1 (2015),  48–54
  19. On construction of WENO schemes for hyperbolic systems on unstructured meshes

    University proceedings. Volga region. Physical and mathematical sciences, 2014, no. 1,  79–87
  20. Investigation of the kinetics of nonequilibrium carriers in semiconductors under periodic optical excitation.

    Zhurnal SVMO, 16:2 (2014),  85–89
  21. On the construction WENO schemes for hyperbolic systems on triangular meshes

    Zhurnal SVMO, 15:1 (2013),  121–124
  22. About choosing interpolation polinom in essentialy non-oscillatory schemes.

    Trudy SVMO, 11:2 (2009),  68–77

  23. In memory of Vladimir Nikolaevich Shchennikov

    Zhurnal SVMO, 21:2 (2019),  269–273
  24. To the seventieth anniversary of Vladimir Fedorovich Tishkin

    Zhurnal SVMO, 21:1 (2019),  111–113
  25. Velmisov Petr Aleksandrovich (on his seventieth birthday)

    Zhurnal SVMO, 20:3 (2018),  338–340
  26. On the 80th anniversary of professor E.V. Voskresensky's birthday

    Zhurnal SVMO, 19:4 (2017),  95–99


© Steklov Math. Inst. of RAS, 2025