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Computational mathematics
An application of the Chebyshev collocation method for the calculation of a mass flux in a long concentric annular channel
O. V. Germider, V. N. Popov Northern (Arctic) Federal University named after M.V. Lomonosov, 4, Severnaya Dvina Emb., Arkhangelsk, 163002, Russia
Abstract:
A rarefied gas flow through a long concentric annular channel due to pressure gradient is studied on the basis of the linearized BGK model of the Boltzmann kinetic equation using a Chebyshev collocation method. The method is based on the approximation by the truncated Chebyshev series. The linearized BGK model kinetic equation and boundary conditions are transformed into a matrix equation, which corresponds to a system of linear algebraic equations with the values of the unknown function at the Chebyshev collocation points. The mass flux is calculated as a function of the rarefaction parameter. The accuracy of the results is validated in several ways, including the recovery of the analytical solutions at the hydrodynamic and free molecular limits.
Keywords:
linearized BGK model kinetic equation, model of diffuse reflection, collocation method, Chebyshev polynomials.
Received March 19, 2021, published July 16, 2021
Citation:
O. V. Germider, V. N. Popov, “An application of the Chebyshev collocation method for the calculation of a mass flux in a long concentric annular channel”, Sib. Èlektron. Mat. Izv., 18:2 (2021), 805–816
Linking options:
https://www.mathnet.ru/eng/semr1401 https://www.mathnet.ru/eng/semr/v18/i2/p805
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Abstract page: | 83 | Full-text PDF : | 36 | References: | 21 |
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