On the Behavior of Solutions of the Prandtl System for a Ladyzhenskaya Viscous MHD Medium in the Flow through a Confuser
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Published:2022-04
Issue:2
Volume:105
Page:78-83
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ISSN:1064-5624
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Container-title:Doklady Mathematics
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language:en
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Short-container-title:Dokl. Math.
Publisher
Pleiades Publishing Ltd
Subject
General Mathematics
Reference14 articles.
1. V. N. Samokhin, G. M. Fadeeva, and G. A. Chechkin, “Equations of the boundary layer for a modified Navier–Stokes system,” J. Math. Sci. (New York) 179 (4), 557–577 (2011).
2. V. N. Samokhin and G. A. Chechkin, “Equations of boundary layer for a generalized Newtonian medium near a critical point,” J. Math. Sci. (New York) 234 (4), 485–496 (2018).
3. R. R. Bulatova, G. A. Chechkin, T. P. Chechkina, and V. N. Samokhin, “On the influence of a magnetic field on the separation of the boundary layer of a non-Newtonian MHD medium,” C. R. Mécanique 346 (9), 807–814 (2018).
4. R. R. Bulatova, V. N. Samokhin, and G. A. Chechkin, “System of boundary layer equations for a rheologically complicated medium: Crocco variables,” Dokl. Math. 100 (1), 332–338 (2019).
5. R. R. Bulatova, V. N. Samokhin, and G. A. Chechkin, “On an unsteady boundary layer of a viscous rheologically complex fluid,” Proc. Steklov Inst. Math. 310, 32–69 (2020).