AstroPhi: A code for complex simulation of the dynamics of astrophysical objects using hybrid supercomputers IM Kulikov, IG Chernykh, AV Snytnikov, BM Glinskiy, AV Tutukov Computer Physics Communications 186, 71-80, 2015 | 77 | 2015 |
A new hydrodynamic code with explicit vectorization instructions optimizations that is dedicated to the numerical simulation of astrophysical gas flow. I. Numerical method … I Kulikov, I Chernykh, A Tutukov The Astrophysical Journal Supplement Series 243 (1), 4, 2019 | 49 | 2019 |
An efficient optimization of HLL method for the second generation of Intel Xeon Phi processor IM Kulikov, IG Chernykh, BM Glinskiy, VA Protasov Lobachevskii Journal of Mathematics 39, 543-551, 2018 | 39 | 2018 |
Co-design of parallel numerical methods for plasma physics and astrophysics BM Glinskiy, IM Kulikov, AV Snytnikov, AA Romanenko, IG Chernykh, ... Supercomputing frontiers and innovations 1 (3), 88-98, 2014 | 38 | 2014 |
A new parallel Intel Xeon Phi hydrodynamics code for massively parallel supercomputers IM Kulikov, IG Chernykh, AV Tutukov Lobachevskii Journal of Mathematics 39, 1207-1216, 2018 | 34 | 2018 |
A reactor for the study of homogeneous processes using laser radiation energy VN Snytnikov, TI Mischenko, VN Snytnikov, IG Chernykh Chemical Engineering Journal 150 (1), 231-236, 2009 | 31 | 2009 |
The co-design of astrophysical code for massively parallel supercomputers B Glinsky, I Kulikov, I Chernykh, D Weins, A Snytnikov, V Nenashev, ... International Conference on Algorithms and Architectures for Parallel …, 2016 | 29 | 2016 |
ChemPAK software package as an environment for kinetics scheme evaluation I Chernykh, O Stoyanovskaya, O Zasypkina Chemical Product and Process Modeling 4 (4), 2009 | 27 | 2009 |
A new hydrodynamic model for numerical simulation of interacting galaxies on Intel Xeon Phi supercomputers I Kulikov, I Chernykh, A Tutukov Journal of Physics: Conference Series 719 (1), 012006, 2016 | 24 | 2016 |
Autocatalytic dehydrogenation of propane VN Snytnikov, TI Mishchenko, VN Snytnikov, IG Chernykh Research on Chemical Intermediates 40, 345-356, 2014 | 19 | 2014 |
The integrated approach to solving large-size physical problems on supercomputers B Glinskiy, I Kulikov, I Chernykh, A Snytnikov, A Sapetina, D Weins Supercomputing: Third Russian Supercomputing Days, RuSCDays 2017, Moscow …, 2017 | 18 | 2017 |
Performance evaluation of the intel optane dc memory with scientific benchmarks V Mironov, I Chernykh, I Kulikov, A Moskovsky, E Epifanovsky, ... 2019 IEEE/ACM Workshop on Memory Centric High Performance Computing (MCHPC), 1-6, 2019 | 17 | 2019 |
The hybrid-cluster multilevel approach to solving the elastic wave propagation problem B Glinskiy, A Sapetina, V Martynov, D Weins, I Chernykh International Conference on Parallel Computational Technologies, 261-274, 2017 | 17 | 2017 |
Supercomputer analysis of genomics and transcriptomics data revealed by high-throughput DNA sequencing AM Spitsina, YL Orlov, NN Podkolodnaya, AV Svichkarev, AI Dergilev, ... Program systems: theory and applications 6 (1), 157-174, 2015 | 16 | 2015 |
A new rusanov-type solver with a local linear solution reconstruction for numerical modeling of white dwarf mergers by means massive parallel supercomputers IM Kulikov, IG Chernykh, AF Sapetina, SV Lomakin, AV Tutukov Lobachevskii Journal of Mathematics 41, 1485-1491, 2020 | 14 | 2020 |
Astrophysics simulation on RSC massively parallel architecture I Kulikov, I Chernykh, B Glinsky, D Weins, A Shmelev 2015 15th IEEE/ACM International Symposium on Cluster, Cloud and Grid …, 2015 | 14 | 2015 |
Parallel realization of the hybrid model code for numerical simulation of plasma dynamics MA Boronina, IG Chernykh, EA Genrikh, VA Vshivkov Journal of Physics: Conference Series 1336 (1), 012017, 2019 | 11 | 2019 |
Numerical modelling of astrophysical flow on hybrid architecture supercomputers I Kulikov, I Chernykh, A Snytnikov, B Glinsky, V Protasov, A Tutukov Parallel Programming: Practical Aspects, Models and Current Limitations, 71-116, 2014 | 10 | 2014 |
Physicochemical processes in a flow reactor using laser radiation energy for heating reactants VN Snytnikov, TI Mischenko, VN Snytnikov, IG Chernykh Chemical Engineering Research and Design 90 (11), 1918-1922, 2012 | 9 | 2012 |
A new parallel code based on a simple piecewise parabolic method for numerical modeling of colliding flows in relativistic hydrodynamics I Kulikov, I Chernykh, D Karavaev, V Prigarin, A Sapetina, I Ulyanichev, ... Mathematics 10 (11), 1865, 2022 | 8 | 2022 |