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Visualization of Type IV shock–shock interference induced by a cylindrical protuberance mounted normal to a hollow cylinder

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References

  • Babinsky H, Harvey JK (2011) Shock wave-boundary-layer interactions. Cambridge Press, Cambridge

    Book  Google Scholar 

  • Bertrand F, Chpoun A, Lengrand JC, Bouchez M (1996) Experimental investigation of shock wave interference heating on a blunt body. AIAA 96-2045

  • Edney B (1968) Anomalous heat transfer and pressure distributions on blunt bodies at hypersonic speeds in the presence of an impinging shock. FFA Rept. 115. Aeronautical Research Institute of Sweeden, Stockholm

    Google Scholar 

  • Gang DD, Yi SH, He L (2016) Characteristics of the cylinder-induced shock wave and turbulent boundary layer interactions. J Vis 19:581–585

    Article  Google Scholar 

  • Garon KD, Abate GL, Hathaway W (2003) Free-flight testing of generic missile with MEMs protuberances. AIAA 2003-1242

  • Hains FD, Keyes JW (1972) Shock interference heating in hypersonic flows. AIAA 72-78

  • Houwing AFP, Smith DR, Fox JS, Danehy PM, Mudford NR (2001) Laminar boundary layer separation at a fin-body junction in a hypersonic flow. Shock Waves 11:31–42

    Article  Google Scholar 

  • Korkegi RH (1971) Survey of viscous interactions associated with high Mach number flight. AIAA J 9(5):771–784

    Article  Google Scholar 

  • Manokaran K, Vidya G, Goyal VK (2003) CFD simulation of flowfield over a large protuberance on a flat plate at high supersonic Mach number. AIAA 2003-1253

  • Özcan O, Holt M (1984) Supersonic separated flow past a cylindrical obstacle on a flat plate. AIAA J 22(5):611–617

    Article  Google Scholar 

  • Samar R, Zahir S, Khan MA (2010) Flight control using pin-protuberances for blunted cones. The Aeronautical Journal 114:245–257

    Article  Google Scholar 

  • Sedney R (1973) A survey of the effects of small protuberances on boundary layer flows. AIAA J 11(6):782–792

    Article  Google Scholar 

  • Stephen EJ, Morell SP, Decker R, Hope DK, McLaughlin T (2014) Flow interactions of small cylindrical protuberances and the supersonic turbulent boundary layer on a flat plate. AIAA 2014-0435

  • Tao Y, Liu WD, Fan XQ (2017) Flow visualization for shock-induced boundary-layer separation extended to the flat-plate-leading edge. J Vis 20:231–235

    Article  Google Scholar 

  • Wieting AR (1990) Shock interference heating in scramjet engines. AIAA 90-5238

  • Wieting AR, Holden MS (1989) Experimental shock-wave interference heating on a cylinder at Mach 6 and 8. AIAA J 27(11):1157–1565

    Article  Google Scholar 

  • Zahir S, Ye ZY (2006) Computational aerodynamic interaction of a short protuberance/lateral plate on blunted cone configurations in hypersonic flow. AIAA 2006-3172

  • Zhao YX, Yi SH, Tian LF, Cheng ZY (2009) Supersonic flow imaging via nanoparticles. Sci. China Ser. E-Tech. Sci. 52:3640–3648

    Article  Google Scholar 

  • Zhuang Y, Tan HJ, Liu YZ, Zhang YC, Ling Y (2017) High resolution visualization of Görtler-like vortices in supersonic compression ramp flow. J Vis 20:505–508

    Article  Google Scholar 

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Acknowledgements

This work has been supported by the National Natural Science Foundation of China (Grant No. 11472304).

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Correspondence to Jin Zhou.

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He, G., Zhao, Yx. & Zhou, J. Visualization of Type IV shock–shock interference induced by a cylindrical protuberance mounted normal to a hollow cylinder. J Vis 23, 9–15 (2020). https://doi.org/10.1007/s12650-019-00606-0

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  • DOI: https://doi.org/10.1007/s12650-019-00606-0

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