All

Supercomputer model of dynamical dusty gas with intense momentum transfer between phases based on OpenFPM library

V. Grigoryev, O. Stoyanovskaya, and N. Snytnikov. Supercomputer model of dynamical dusty gas with intense momentum transfer between phases based on OpenFPM library // Journal of Physics: Conference Series, 2099, 012056 (2021) DOI: 10.1088/1742-6596/2099/1/012056

The automated construction of a scheme for solving compute-intensive problems based on the ontological approach and Semantic Web technologies

Glinskiy B, Sapetina A, Snytnikov A, Zagorulko Y and Zagorulko G 2021 The automated construction of a scheme for solving compute-intensive problems based on the ontological approach and Semantic Web technologies J. Phys.: Conf. Ser. 2099 012022. DOI: 10.1088/1742-6596/2099/1/012022

Information-Analytical System to Support the Solution of Compute-Intensive Problems of Mathematical Physics on Supercomputers

Zagorulko Y., Zagorulko G., Snytnikov A., Glinskiy B., Shestakov V. (2021) Information-Analytical System to Support the Solution of Compute-Intensive Problems of Mathematical Physics on Supercomputers. In: Malyshkin V. (eds) Parallel Computing Technologies. PaCT 2021. Lecture Notes in Computer Science, vol 12942. Springer, Cham. Q3 DOI 10.1007/978-3-030-86359-3_33

Numerical modeling results for vibroseismic monitoring of volcanic structures with different shape of the magma chamber

A F Sapetina, B M Glinskiy, V N Martynov Numerical modeling results for vibroseismic monitoring of volcanic structures with different shape of the magma chamber // MSR2020. Journal of Physics: Conference Series. – 2021. – V. 1715. – Article Number 012057. DOI: 10.1088/1742-6596/1715/1/012057

Pages