Karaseva, S.;                     Papunin, A.;                     Belyakov, V.;                     Makarov, V.;                     Malahov, D.    
        Structural Analysis of Hydrodynamical Interaction of Full-Submerged Archimedes Screws of Rotary-Screw Propulsion Units of Snow and Swamp-Going Amphibious Vehicles with Water Area via Methods of Computer Simulation. Eng. Proc. 2023, 33, 32.
    https://doi.org/10.3390/engproc2023033032
    AMA Style
    
                                Karaseva S,                                 Papunin A,                                 Belyakov V,                                 Makarov V,                                 Malahov D.        
                Structural Analysis of Hydrodynamical Interaction of Full-Submerged Archimedes Screws of Rotary-Screw Propulsion Units of Snow and Swamp-Going Amphibious Vehicles with Water Area via Methods of Computer Simulation. Engineering Proceedings. 2023; 33(1):32.
        https://doi.org/10.3390/engproc2023033032
    
    Chicago/Turabian Style
    
                                Karaseva, Svetlana,                                 Aleksey Papunin,                                 Vladimir Belyakov,                                 Vladimir Makarov,                                 and Dmitry Malahov.        
                2023. "Structural Analysis of Hydrodynamical Interaction of Full-Submerged Archimedes Screws of Rotary-Screw Propulsion Units of Snow and Swamp-Going Amphibious Vehicles with Water Area via Methods of Computer Simulation" Engineering Proceedings 33, no. 1: 32.
        https://doi.org/10.3390/engproc2023033032
    
    APA Style
    
                                Karaseva, S.,                                 Papunin, A.,                                 Belyakov, V.,                                 Makarov, V.,                                 & Malahov, D.        
        
        (2023). Structural Analysis of Hydrodynamical Interaction of Full-Submerged Archimedes Screws of Rotary-Screw Propulsion Units of Snow and Swamp-Going Amphibious Vehicles with Water Area via Methods of Computer Simulation. Engineering Proceedings, 33(1), 32.
        https://doi.org/10.3390/engproc2023033032