Airfoil seсtion in the near-sonic flow of gas
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Galdi, G. P. An Introduction to the Mathematical Theory of the Navier–Stokes Equations. New York, Dordrecht, Heidelberg, London, Springer Publ., 2011. 1018 p.
Cole, Julian D., Cook, L. Pamela. Transzvukovaja ajerodinamika [Transonic aerodynamics]. Мoscow, Mir Publ., 1989. 360 p.
Shakhov, V. G., Lyaskin, A. S. Mekhanika zhidkosti i gaza v aerokosmicheskoi tekhnike [Fluid and Gas Mechanics in Aerospace Engineering]. Samara, National Research University Publ., 2011. 108 p.
Airfoil Tools. Available at: http://airfoiltools.com/airfoil/details?airfoil=b737b-il. (accessed 13.01.2021).
Donets, O. D., Kudryavtsev, V. O. Osobennosti obespechenie aerodinamicheskikh kharakteristik regional'nogo passazhikogo samoleta [Specifics of providing regional passenger aircraft aerodynamic characteristics]. Otkrytye informatsionnye i komp'yuternye integrirovannye tekhnologii – Open Information and Computer Integrated Technologies, NAU «KhAI» Publ., 2019, no. 83. pp. 106-133.
Gao, Chuanqiang., Zhang, Weiwei. Transonic aeroelasticity: A new perspective from the fluid mode. Progress in Aerospace Sciences, 2020, no. 113, Articles Id: 100596. 19 p. DOI: 10.1016/j.paerosci.2019.100596.
Krashanytsya, Yu. A. Vektorno-tenzornyi analiz, teoriya potentsiala i metod granichnykh integral'nykh uravnenii v nachal'no-kraevykh zadachakh aerogidrodinamiki [Method of boundary integral equations in initial boundary problem of aerohydrodynamics]. Kiev, Nauk. Dumka Publ., 2016. 273 p.
DOI: https://doi.org/10.32620/aktt.2021.2.03