Article information

2023 , Volume 28, ¹ 2, p.42-57

Grigoryev Y.N., Kovenya V.M.

Economical finite-difference algorithms for spatial hypersonic flows of a multicomponent gas with thermochemical nonequilibrium

The article addresses construction of economical finite-difference algorithms for spatial problems of hypersonic aerodynamics. A brief survey of modern models and algorithms used in this field is given. Their computational complexity due to the modelling of vibrational and chemical kinetics is examined. On the base of two-temperature model of a multicomponent dissociating gas new algorithms are constructed. The approximate factorization method or the predictor-corrector scheme with splitting of operators by physical processes and spatial directions are employed. Their realization at fractional steps to three-point scalar sweeps allows reducing number of arithmetic operations per grid node. Moreover, the number of operations increases linearly with the number of grid nodes and the number of equations. The proposed algorithms allow efficient parallelization.


Keywords: hypersonic aerodynamics, thermochemical nonequilibrium, approximate method of factorization, predictor-corrector scheme, splitting into physical processes and spatial directions

doi: 10.25743/ICT.2023.282.005

Author(s):
Grigoryev Yurii Nikolaevich
Dr. , Professor
Position: General Scientist
Office: Federal Research Center for Information and Computational Technologies
Address: 630090, Russia, Novosibirsk, Ac. Lavrentiev ave., 6
Phone Office: (383) 330 87 45
E-mail: grigor@ict.nsc.ru

Kovenya Viktor Mikhailovich
Dr. , Professor
Position: General Scientist
Office: Federal Research Center for Information and Computational Technologies
Address: 630090, Russia, Novosibirsk, academician M.A. Lavrentiev avenue, 6
Phone Office: (383) 330 61 68
E-mail: kovenya@ict.nsc.ru


Bibliography link:
Grigoryev Y.N., Kovenya V.M. Economical finite-difference algorithms for spatial hypersonic flows of a multicomponent gas with thermochemical nonequilibrium // Computational technologies. 2023. V. 28. ¹ 2. P. 42-57
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