@article{ZVMMF_1995_35_10_a3,
author = {S. A. Velichko and Yu. B. Lifshits and V. M. Neǐland and I. A. Solntsev and A. M. Sorokin},
title = {Numerical modeling of transonic flow around an airfoil in a wind tunnel},
journal = {\v{Z}urnal vy\v{c}islitelʹnoj matematiki i matemati\v{c}eskoj fiziki},
pages = {1518--1537},
year = {1995},
volume = {35},
number = {10},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/ZVMMF_1995_35_10_a3/}
}
TY - JOUR AU - S. A. Velichko AU - Yu. B. Lifshits AU - V. M. Neǐland AU - I. A. Solntsev AU - A. M. Sorokin TI - Numerical modeling of transonic flow around an airfoil in a wind tunnel JO - Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki PY - 1995 SP - 1518 EP - 1537 VL - 35 IS - 10 UR - http://geodesic.mathdoc.fr/item/ZVMMF_1995_35_10_a3/ LA - ru ID - ZVMMF_1995_35_10_a3 ER -
%0 Journal Article %A S. A. Velichko %A Yu. B. Lifshits %A V. M. Neǐland %A I. A. Solntsev %A A. M. Sorokin %T Numerical modeling of transonic flow around an airfoil in a wind tunnel %J Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki %D 1995 %P 1518-1537 %V 35 %N 10 %U http://geodesic.mathdoc.fr/item/ZVMMF_1995_35_10_a3/ %G ru %F ZVMMF_1995_35_10_a3
S. A. Velichko; Yu. B. Lifshits; V. M. Neǐland; I. A. Solntsev; A. M. Sorokin. Numerical modeling of transonic flow around an airfoil in a wind tunnel. Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 35 (1995) no. 10, pp. 1518-1537. http://geodesic.mathdoc.fr/item/ZVMMF_1995_35_10_a3/
[1] Ohman L. H., Mokry M., Chan Y. Y., Jones D. J., Two-dimensional wind tunnel wall interference, AGARD-AG-281, 1983
[2] Ashill P. R., “Boundary measurement method for wall interference assessment and correction. A classification and review”, Proc. AGARD Fluid Dynamics. Panel Symp. “Wall Interference, Support Interference and Flow Field Measurements” (4–7 Oct. 1993. Brussels, Belgium)
[3] Mürman E. M., Computation of wall effects in ventilated transonic wind tunnels, AIAA Paper No 72-1007, 1972 | Zbl
[4] Vorontsova N. B., Lyapunov S. V., “Vliyanie strui na okolozvukovoe obtekanie profilya”, Uch. zap. TsAGI, 20 (1989), 1–9
[5] Benek J. A., Steger J. L., Dougherty F. C., A flexible grid embedding technique with application to the Euierequkons, AIAA Paper No 83-1944, 1983
[6] Muskhelshivili H. I., Singulyarnye integralnye uravneniya, Nauka, M., 1968 | MR
[7] Lifshits Yu. B., Shagaev A. A., “O potentsialnykh modelyakh transzvukovykh techenii”, Dokl. AN SSSR, 304:6 (1989), 1315–1319 | Zbl
[8] Ermolaeva N. A., Lifshitz Yu. B., Sakovich V. S., Shagaev A. A., “A modified theory of potential transonic flow”, Russian J. Comput. Mech., 1:4 (1993), 71–83
[9] Lighthill M. J., “On displacement thickness”, J. Fluid Mech., 4:4 (1958), 383–392 | DOI | MR | Zbl
[10] Cebeci T., Smith A. M. O., Analysis of turbulent boundary layers, Acad. Press, New York, 1974 | MR | Zbl
[11] Green J. E., Weeks D. W., Brooman J. W. F., Prediction of turbulent boundary layers and wakes in compressible flow by a lag entrainment method, ARC R M., 3791, 1977
[12] Lifshitz Yu. B., Velichko S. A., “AEROFOIL: A computer codes library for numerical analysis of viscous transonic flowf around a wing section”, Rech. Aerospaciale, 2 (1994), 73–83
[13] Velichko S. A., Lifshitz Yu. B., “Numerical simulation of viscous transonic flows over an airfoil”, Theor. Comput. Fluid Dynamics, 7:3 (1995), 189–206 | DOI | Zbl
[14] Velichko S. A., “Reshenie zadachi obtekaniya profilya pri bolshikh chislakh Reinoldsa”, Izv. AN SSSR. Mekhan. zhidkosti i gaza, 1990, no. 4, 189 | MR
[15] Veldman A. E. P., “New quasi-simultaneous method to calculate interacting boundary layers”, AIAA Journal, 19:1 (1981), 79–85 | DOI | Zbl
[16] Carter J. E., A new boundary layer inviscid iteration technique for separated flow, AIAA Paper No 79-1450, 1979
[17] Marevtseva H. A., “Obtekanie tonkogo profilya v kanale s pronitsaemymi stenkami”, Izv. AN SSSR. Mekhan. zhidkosti i gaza, 1980, no. 2, 111–117 | MR | Zbl
[18] Buzoverya T. P., Krotkov D. P., Markin V. S., “Nekotorye osobennosti obtekaniya modeli profilya v transzvukovoi aerodinamicheskoi trube s pronitsaemymi stenkami”, Tr. TsAGI, 2298, M., 1985, 3–30
[19] Johnson D. A., Bachalo W. D., “Transonic flow past a symmetrical airfoil - inviscid and turbulent flow properties”, AIAA Journal, 18:1 (1980), 16–24 | DOI
[20] King L. S., Johnson D. A., Calculation of transonic flow about an airfoil in a wind tunnel, AIAA Paper No 80-1366, 1980
[21] Stanevsky E., Puffer W., Müller R., Bateman T. E. B., Supercritical airfoil CAST-7 - surface pressure, wake and boundary layer measurements, AGARD-AR-138, 1979, A3-1–35
[22] Mokry M., Ohman L. H., “Application of the fast Fourier transform to two-dimensional wind-tunnel wall interfefence”, J. Aircraft., 17:6 (1980), 402–411 | DOI
[23] Pressure distributions for airfoil NAE-75-036-13:2 at Reynolds numbers from 14 to 30 mill, AGARDAR-138, 1979, A7-1-26