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@article{MM_2022_34_7_a6, author = {S. M. Bosnyakov and M. F. Engulatova and S. V. Matyash and S. V. Mikhaylov}, title = {Mathematical modelling as an integral part of the wind tunnels experimental methodology}, journal = {Matemati\v{c}eskoe modelirovanie}, pages = {93--112}, publisher = {mathdoc}, volume = {34}, number = {7}, year = {2022}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/MM_2022_34_7_a6/} }
TY - JOUR AU - S. M. Bosnyakov AU - M. F. Engulatova AU - S. V. Matyash AU - S. V. Mikhaylov TI - Mathematical modelling as an integral part of the wind tunnels experimental methodology JO - Matematičeskoe modelirovanie PY - 2022 SP - 93 EP - 112 VL - 34 IS - 7 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/MM_2022_34_7_a6/ LA - ru ID - MM_2022_34_7_a6 ER -
%0 Journal Article %A S. M. Bosnyakov %A M. F. Engulatova %A S. V. Matyash %A S. V. Mikhaylov %T Mathematical modelling as an integral part of the wind tunnels experimental methodology %J Matematičeskoe modelirovanie %D 2022 %P 93-112 %V 34 %N 7 %I mathdoc %U http://geodesic.mathdoc.fr/item/MM_2022_34_7_a6/ %G ru %F MM_2022_34_7_a6
S. M. Bosnyakov; M. F. Engulatova; S. V. Matyash; S. V. Mikhaylov. Mathematical modelling as an integral part of the wind tunnels experimental methodology. Matematičeskoe modelirovanie, Tome 34 (2022) no. 7, pp. 93-112. http://geodesic.mathdoc.fr/item/MM_2022_34_7_a6/
[1] S. Bosniakov, “Experience in integrating CFD to the technology of testing models in wind tunnels”, Progress in Aerospace Sciences, 34 (1998), 391–422 ; 6 | DOI
[2] S. Bosniakov, V. Akinfiev, V. Vlasenko, S. Glazkov, A. Lysenkov, S. Matiash, S. Mikhailov, “Metodologiia chislennogo modelirovaniia obtekaniia modelei v aerodinamicheskikh trubakh i opyt ee prakticheskogo primeneniia. Ch. 1, 2”, Tekhnika vozdushnogo flota, LXXX:5 (2006); 6
[3] S. Bosnyakov, I. Kursakov, A. Lysenkov, S. Matyash, S. Mikhailov, V. Vlasenko, J. Quest, “Computational tools for supporting the testing of civil aircraft configurations in wind tunnels”, Progress in Aerospace Sciences, 44:2 (2008), 67–120 | DOI
[4] S. Melber-Wilkending, A. Heidebrecht, G. Wichmann, “A new approach in CFD supported wind tunnel testing”, 25th International Congress of the Aeronautical sciences, ICAS 20063.4.2
[5] R. Collercandy, B. Marques, J. Lory, S. Dbjay, L. Espiau, Application of CFD for wall and sting effects, HiReTT report HIRETTTNAFRCoWP2.2311002003, Airbus France, October 2003
[6] S. A. Glazkov, A. R. Gorbushin, A. I. Ivanov, A. V. Semenov, V. V. Vlasenko, J. Quest, “Numerical and Experimental Investigations of Slot Flow with Respect to Wind Tunnel Wall Interference Assessment”, 24th AIAA Aerodynamic Measurement Technology and Ground Testing Conf. (2004, Portland, USA)
[7] “Prakticheskie aspekty resheniia zadach vneshnei aerodinamiki dvigatelei letatelnykh apparatov v ramkakh osrednennykh po vremeni uravnenii Navie-Stoksa”, Trudy TsAGI, 2671, 2007
[8] S. M. Bosniakov, A. N. Minailos, N. Kh. Remeev, “Issledovanie prostranstvennogo obtekaniia dvukhstupenchatykh klinev konechnoi shiriny sverkhzvukovym potokom gaza”, Uchenye zapiski TsAGI, XI:1 (1980), 98
[9] S. M. Bosnyakov, A. P. Duben, S. V. Mikhailov et al., “Numerical Simulation of Supersonic Separated Flow over Inclined Backward-Facing Step Using RANS and LES Methods”, Mathematical Models and Computer Simulations, 12:4 (2020), 453–463 | DOI | MR | Zbl