[1] M. Yadegari, A. Bak Khoshnevis, and M. Boloki, “An experimental investigation of the effects of helical strakes on the characteristics of the wake around the circular cylinder,”
Iranian Journal of Science and Technology, Transactions of Mechanical Engineering, vol. 47, no. 1, pp. 67–80, 2023. [Online]. Available:
doi:10.1007/s40997-022-00494-0 (in Persian)
[2] M. Yadegari and M. H. Jahdi, “Capturing of shock wave of supersonic flow over the bump channel with TVD, ACM and Jameson methods,”
Iranian Journal of Mechanical Engineering Transactions of the ISME, vol. 22, no. 1, pp. 108–126, 2021. [Online]. Available:
doi:10.30506/JMEE.2021.129082.1234 (in Persian)
[3] F. Wilcox, Separation characteristics of generic stores from lee side of an inclined flat plate at Mach 6, NASA Technical Memorandum 4652, 1995.
[4] C. Hung, Computation of three-dimensional shock wave and boundary-layer interactions, NASA Technical Memorandum 86780, 1985.
[5] V. Volkov and E. Derunov, “Interaction of a combination of bodies in supersonic flow interference and diffraction of shock waves in flow over two bodies of revolution,”
Journal of Engineering Physics and Thermophysics, vol. 79, no. 4, pp. 712–721, 2006. [Online]. Available:
doi:10.1007/s10891-006-0156-4
[6] N. Malmuth and V. Shaleav, “Theoretical modeling of interaction of multiple slender bodies in supersonic flows,” in
42nd AIAA Aerospace Sciences Meeting and Exhibit, Reno, Nevada, USA, Jan. 2004. [Online]. Available:
doi:10.2514/6.2004-1127
[7] A. Fedorov, N. Malmuth, and V. Soudakov, “Supersonic scattering of a wing-induced incident shock by a slender body of revolution,”
Journal of Fluid Mechanics, vol. 585, pp. 305–322, 2007. [Online]. Available:
doi:10.1017/S0022112007006714
[8] E. Derunov, A. Zheltovodov, and A. Maksimov, “Development of three-dimensional turbulent separation in the neighborhood of incident crossing shock waves,”
Thermophysics and Aeromechanics, vol. 15, no. 1, pp. 29–54, 2008. [Online]. Available:
doi: 10.1134/S0869864308010034
[9] A. Brosh, M. Kussoy, and C. Hung, “Experimental and numerical investigation of a shock wave impingement on a cylinder,”
AIAA Journal, vol. 23, no. 6, pp. 840–846, 1985. [Online]. Available:
doi:10.2514/3.8996
[10] M. Morkovin, E. Migotsky, H. Bailey, and R. Phinney, “Experiments on interaction of shock waves and cylindrical bodies at supersonic speeds,”
Journal of Aerospace Sciences, vol. 19, no. 4, pp. 237–247, 1952. [Online]. Available:
doi:10.2514/8.2238
[11] R. A. Chaplin, D. G. MacManus, and T. J. Birch, “Aerodynamic interference between high-speed slender bodies,”
Shock Waves, vol. 20, pp. 89–101, 2010. [Online]. Available:
doi:10.1007/s00193-009-0241-7
[12] S. J. Hooseria and B. W. Skews, “Three-dimensional, curved shock wave interactions with slender bodies at incidence,” in 29th International Symposium on Shock Waves 2, July 2015.
[13] S. J. Hooseria and B. W. Skews, “Shock wave interactions between slender bodies: some aspects of three-dimensional shock wave diffraction,”
Shock Waves, vol. 27, pp. 109–126, 2017. [Online]. Available:
doi:10.1007/s00193-016-0652-1
[14] H. Haghighatjoo, M. Yadegari, and A. Bak Khoshnevis, “Optimization of single-obstacle location and distance between square obstacles in a curved channel,”
The European Physical Journal Plus, vol. 137, no. 9, pp. 1–21, 2022. [Online]. Available:
doi:10.1140/epjp/s13360-022-03260-y
[15] ANSYS Help, [Online]. Available:
https://ansyshelp.ansys.com/