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Lopato Aleksandr Igorevich

Publications in Math-Net.Ru

  1. Numerical study of the mechanisms of propagation of pulsating gaseous detonation in a non-uniform medium

    Computer Research and Modeling, 15:5 (2023),  1263–1282
  2. Mathematical modeling of detonation initiation and propagation in the complex-shaped domains

    JPCS, 1147 (2019), 12039, 10 pp.
  3. The usage of grid-characteristic method for the simulation of flows with detonation waves

    Smart Innovation, Systems and Technologies, 133 (2019),  281–290
  4. Mathematical modeling of initiation and propagation of detonation in the areas of complex shapes using fully unstructured grids

    AIP Conf. Proc., 2027 (2018), 30057, 7 pp.
  5. Математическое моделирование распространения детонации в трубе переменного сечения с использованием неструктурированных расчетных сеток

    Gorenie i vzryv, 11:1 (2018),  47–52
  6. Numerical study of detonation wave propagation in the variable cross-section channel using unstructured computational grids

    J. Combus., 2018 (2018),  3635797–8
  7. Specific features of mathematical modeling of flows with detonation waves on unstructured computational grids

    Num. Meth. Prog., 18:4 (2017),  348–358
  8. Towards second-order algorithm for the pulsating detonation wave modeling in the shock-attached frame

    Combustion Science and Technology, 188:11 (2016),  1844–1856
  9. Two approaches to the mathematical modeling of detonation wave

    Matem. Mod., 28:2 (2016),  133–145
  10. Detailed simulation of the pulsating detonation wave in the shock-attached frame

    Zh. Vychisl. Mat. Mat. Fiz., 56:5 (2016),  856–868
  11. Исследование пульсирующей волны детонации методами сквозного счета и в системе координат, связанной с лидирующей волной

    Gorenie i vzryv, 8:1 (2015),  145–150
  12. The details of the detonation wave calculation using numerical schemes of different approximation orders

    Matem. Mod., 27:7 (2015),  75–79
  13. Mathematical modeling of pulsating detonation wave using ENO-schemes of different approximation orders

    Computer Research and Modeling, 6:5 (2014),  643–653


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