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  1. Gorshkov A.V. Prosviryakov E.Yu. Stagnation points of an inhomogeneous solution describing convective Ekman flow in the oceanic equatorial zone // Diagnostics, Resource and Mechanics of materials and structures. 2022. Iss. 1. P. 52–66. [10.17804/2410-9908.2022.1.052-066].

  2. Gorshkov A.V. Prosviryakov E.Yu. Analytical Study of the Ekman Angle for the Benard–marangoni Convective Flow of Viscous Incompressible Fluid [Electronic resource] // Diagnostics, Resource and Mechanics of materials and structures. 2021. Iss. 4. P. 34-49. DOI: 10.17804/2410-9908.2021.4.34-49.
    РИНЦ 

  3. Gorshkov A.V. Prosviryakov E.Yu. Analytical Study of the Ekman Angle for the Isothermal Flow of a Viscous Incompressible Fluid in View of the Navier Boundary Condition // AIP Conference Proceedings. 2020. Vol. 2315. 020018. https://doi.org/10.1063/5.0036889.
    WoS 

  4. Gorshkov A.V. Prosviryakov E.Yu. Inhomogeneous Isobaric Poiseuille-Ekman Flow of a Viscous Incompressible Fluid // AIP Conference Proceedings. 2020. Vol. 2315. 050009. https://doi.org/10.1063/5.0036899.
    WoS 

  5. Gorshkov A.V. Prosviryakov E.Yu. Inhomogeneous Isothermal Equatorial Poiseuille – Ekman Flow // AIP Conference Proceedings. 2020. Vol. 2315. 050008. https://doi.org/10.1063/5.0036894.
    WoS 

  6. Gorshkov A.V. Prosviryakov E.Yu. Large-Scale Convective Ekman Flow of Viscous Incompressible Fluid in the Equatorial Zone // AIP Conference Proceedings. 2020. Vol. 2315. 050007. https://doi.org/10.1063/5.0036897.
    WoS 

  7. Gorshkov A.V. Prosviryakov E.Yu. Nonstationary Laminar Bénard-Marangoni Convection for Newton-Richmann Heat Exchange // AIP Conference Proceedings. 2020. Vol. 2315. 050010. https://doi.org/10.1063/5.0036896.
    WoS 

  8. Gorshkov A.V. Prosviryakov E.Yu. Ekman Convective Layer Flow of a Viscous Incompressible Fluid // Izvestiya. Atmospheric and Oceanic Physics. 2018. Vol. 54. – No. 2. P. 189–19. DOI: 10.7868/S0003351518020101.
    WoS  Scopus 

  9. Gorshkov A.V. Prosviryakov E.Yu. Isobaric Vortex Flow of a Viscous Incompressible Fluid with the Navier Boundary Condition // AIP Conference Proceedings. 2018. Vol. 2053. – 040030. – https://doi.org/10.1063/1.5084468.
    WoS 

  10. Gorshkov A.V. Prosviryakov E.Yu. Large-Scale Convection Flow of an Incompressible Fluid on a Rotating Inclined Plane // AIP Conference Proceedings. 2018. Vol. 2053. – 040029. – https://doi.org/10.1063/1.5084467.
    WoS 

  11. Rozhkova E.A. Gorshkov A.V. Prosviryakov E.Yu. Layered Marangoni Convection during Heat Transfer According to the Newton’s Law of Cooling. Part 1. Investigation of the Velocity Field // Khimicheskaya fizika i mezoskopiya. 2018. Vol. 20. No. 1. P. 15-27. DOI:10.20537/nd1801007.
    РИНЦ 

  12. Gorshkov A.V. Prosviryakov E.Yu. Complex Large-Scale Convection of a Viscous Incompressible Fluid with Heat Exchange According to Newton’s Law // AIP Conf. Proc. 2017. Vol. 1915. – 040019.
    Full text>>

  13. Gorshkov A.V. Prosviryakov E.Yu. Convective Flow in the Solid Rotation of a Viscous Incompressible Fluid // AIP Conf. Proc. 2017. Vol. 1915. – 040020.
    Full text>>

  14. Kolmogorov V.L. Gorshkov A.V. Spevak L.F. A method for calculating the stress-strain state in the general boundary value problem of metal forming - part 2. Impact of a bar against a rigid obstacle // International Journal of Solids and Structures. 1999. №36. P. 1263-1275.

  15. Kolmogorov V.L. Fedotov V.P. Gorshkov A.V. Tree-dimensional analysis of the stress-strain state in the process of plastic deformation of metals // Journal of Materials Processing Technology. 1999. 95. P. 55-64.

  16. M.G. Blizorukov O. V. Baranova I. A. Kuzmina Gorshkov A.V. On Statistical Processing of Biomechanical Researches for Walking. Тезисы доклада BIOMATH-95. DATECS Publi-shing. Sofia, 1995. 28 p.

  17. M.G. Blizorukov O. V. Baranova I. A. Kuzmina Gorshkov A.V. A.V. Makotina L.I. Kolodina M.A. On Mathematical Modeling for Walking. BIOMATH-95. DATECS Publi-shing. Sofia, 1995. 29 p.

  18. O.V. Arnashus M.G. Blizorukov Gorshkov A.V. E.D. Kolegova On the problem of choice of rolling speed in the rolling of Bethlehem beams // Journal of Materials Processing Technology. Elsevier Science, 1994. 41. P. 263-274.

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