Reduction of the deflagration-to-detonation transition distance and time in a tube with regular shaped obstacles SM Frolov, IV Semenov, PV Komissarov, PS Utkin, VV Markov Doklady Physical Chemistry 415 (2), 209 - 213, 2007 | 46* | 2007 |
Mathematical modeling of the interaction of a shock wave with a dense cloud of particles within the framework of the two-fluid approach PS Utkin Russian Journal of Physical Chemistry B 11 (6), 963 - 973, 2017 | 37* | 2017 |
Shock-to-detonation transition in tubes with shaped obstacles IV Semenov, SM Frolov, VV Markov, PS Utkin Pulse and continuous detonations. URL: https://www.researchgate.net …, 2006 | 30* | 2006 |
Numerical modelling of dust-layered detonation structure in a narrow tube IV Semenov, PS Utkin, VV Markov Journal of Loss Prevention in the Process Industries 26 (2), 380 - 386, 2013 | 25 | 2013 |
Numerical study of detonation wave propagation in the variable cross-section channel using unstructured computational grids AI Lopato, PS Utkin Journal of Combustion 2018 (3635797), 8, 2018 | 23 | 2018 |
Применение многопроцессорной вычислительной техники для решения задач внутренней баллистики ИВ Семенов, ПС Уткин, ИФ Ахмедьянов, ИС Меньшов Вычислительные методы и программирование 12, 183 - 193, 2011 | 22* | 2011 |
Numerical simulation of shock wave – dense particles cloud interaction using Godunov solver for Baer-Nunziato equations PS Utkin International Journal of Numerical Methods for Heat and Fluid Flow 29, DOI …, 2019 | 20 | 2019 |
Numerical Simulation of Detonation Initiation in a Contoured Tube IV Semenov, PS Utkin, VV Markov Combustion, Explosion, and Shock Waves 45 (6), 700 - 707, 2009 | 20* | 2009 |
Численное моделирование двумерных детонационных течений на многопроцессорной вычислительной технике ИВ Семенов, ПС Уткин, ВВ Марков Вычислительные методы и программирование 9 (1), 119-128, 2008 | 20* | 2008 |
Mathematical modeling of pulsating detonation wave using ENO-schemes of different approximation orders AI Lopato, PS Utkin Computer Research and Modeling 6 (5), 643 - 653, 2014 | 18* | 2014 |
Numerical simulation of a normally incident shock wave – dense particles layer interaction using the Godunov solver for the Baer-Nunziato equations YE Poroshyna, PS Utkin International Journal of Multiphase Flow, 2021 | 17 | 2021 |
Numerical modeling of the relaxation of a body behind the transmitted shock wave DA Sidorenko, PS Utkin Mathematical Models and Computer Simulations 11 (4), 509 - 517, 2019 | 17* | 2019 |
Numerical and Experimental Investigation of Detonation Initiation in Profiled Tubes IV Semenov, PS Utkin, VV Markov, SM Frolov, VS Aksenov Combustion Science and Technology 182 (11-12), 1735-1746, 2010 | 16 | 2010 |
Detailed simulation of the pulsating detonation wave in the shock-attached frame AI Lopato, PS Utkin Computational Mathematics and Mathematical Physics 56 (5), 841-853, 2016 | 15* | 2016 |
Towards second-order algorithm for the pulsating detonation wave modeling in the shock-attached frame AI Lopato, PS Utkin Combustion Science and Technology 188 (11 - 12), 1844 - 1856, 2016 | 15 | 2016 |
The usage of grid-characteristic method for the simulation of flows with detonation waves AI Lopato, PS Utkin Smart Innovation, Systems and Technologies 133, 281 - 290, 2019 | 13* | 2019 |
Комплексный подход к проблеме численного исследования взаимодействия ударной волны с плотным облаком частиц ДА Сидоренко, ПС Уткин Горение и взрыв 10 (2), 47 - 51, 2017 | 13* | 2017 |
О двух подходах к математическому моделированию детонационной волны АИ Лопато, ПС Уткин Mathematical Models and Computer Simulations 28 (2), 133-145, 2016 | 13* | 2016 |
Numerical simulation of a high-speed impact of metal plates using a three-fluid model PA Chuprov, PS Utkin, SV Fortova Metals 11 (8), Paper No. 1233, 2021 | 12 | 2021 |
Метод декартовых сеток для численного моделирования распространения ударных волн в областях сложной формы ДА Сидоренко, ПС Уткин Вычислительные методы и программирование. http://num-meth.srcc.msu.ru …, 2016 | 11* | 2016 |