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Turbulence: Experiment

Study of the structure of turbulent underexpanded supersonic jets by laser transillumination

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Pages 1224-1233 | Received 23 Nov 2021, Accepted 28 Mar 2022, Published online: 06 Nov 2023

References

  • Chow WL, Chang IS. Mach reflection from overexpanded nozzle flows. AIAA J. 1972;10(9):1261–1263.
  • Troutt TR, McLaughlin DK. Transition from periodic to chaotic thermal convection. J Fluid Mech. 1982;122:123–156.
  • Gutmark E, Wygnanski I. The planar turbulent jet. J Fluid Mech. 1976;73(3):465–495.
  • Courant R, Friedrichs KO. Supersonic flow and shock waves. New York (NY): Springer; 1976.
  • Boyko VM, Dostovalov AV, Zapryagaev VI, et al. Investigation of supersonic nonisobaric jet structure. TsAGI Sci J. 2010;41(2):187–205.
  • Aniskin VM, Korotaeva TA, Obodovskaya EA, et al. Numerical simulation of underexpanded axisymmetrical microjets ejected into still air. Proc. of the Russian Higher School Academy of Sciences. 2018;38(1):22–35.
  • Chin C, Li M, Harkin C, et al. Investigation of the flow structures in supersonic free and impinging jet flows. J Fluids Eng. 2013;135(3):031202-1–031202-12.
  • Murugesan P, Arjun B, Akhil TK, et al. Numerical study of characteristics of underexpanded supersonic jet. J Aerosp Technol Manag. 2020;12:e4220.
  • Foss JF, Foss JK, Spalart PR. Numerical and experimental evaluations of the flow past nested chevrons. AIAA J. 1989;27(6):675–676.
  • Otobe Y, Kashimura H, Matsuo S, et al. Influence of nozzle geometry on the near-field structure of a highly underexpanded sonic jet. J Fluids Struct. 2008;24(2):281–293.
  • Zapryagaev VI, Solotchin AV, Kiselev NP. Structure of a supersonic jet with varied geometry of the nozzle entrance. J Appl Mech Tech Phys. 2002;43(4):538–543.
  • Raman G. Supersonic jet screech: half-century from powell to the present. J Sound Vib. 1999;225(3):543–571.
  • Tam CKW, Tanna HK. Shock associated noise of supersonic jets from convergent-divergent nozzles. J Sound Vib. 1982;81(3):337–358.
  • Tam CKW. Supersonic jet noise. Annu Rev Fluid Mech. 1995;27:17–43.
  • Tolstykh AI, Shirobokov DA. Fast calculations of screech using highly accurate multioperators-based schemes. Appl Acoust. 2013;74(1):102–109.
  • Marakasov DA, Sazanovich VM, Tsvyk RSh, et al. Studies of the acoustic field generated by a supersonic jet. Atmos Oceanic Opt. 2019;32:442–449.
  • Kon AI, Tatarskii VI. Parameter fluctuations of a space-limited light beam in a turbulent atmosphere. Soviet Radiophys. 1965;8:617–620.
  • Tatarskii VI. Ray trajectories in a medium with weak random fluctuations of refractive index. Radiophys Quantum Electron. 1967;10:121–125.
  • Kon AI, Tatarskii VI. Correlation of transverse displacements of rays in a turbulent atmosphere. Radiophys Quantum Electron. 1969;12:139–144.
  • Rytov SM, Kravtsov Y, Tatarskii VI. Principles of statistical radiophysics 4. wave propagation through random media. Berlin: Springer; 1989.
  • Gurvich AS, Kon AI, Tatarskii VI. Scattering of electromagnetic waves on sound in connection with problems of atmospheric sounding (review). Radiophys Quantum Electron. 1987;30:347–366.
  • Banakh VA, Sukharev AA, Falits AV. Optical beam distortions induced by a shock wave. Appl Opt. 2015;54:2023–2031.
  • Banakh VA, Sukharev AA, Falits AV. Manifestation of aero-optical effects in a turbulent atmosphere in supersonic motion of a conical body. Atmos Oceanic Opt. 2015;28:24–33.
  • Banakh VA, Zapryagaev VI, Marakasov DA, et al. Study of turbulent supersonic flow based on the optical and acoustic measurements. In: Colman Lerner J, Boldes U, editor. Wind tunnels and experimental fluid dynamics research. Rijeka: InTech; 2011. p. 607–628.
  • Marakasov DA, Banakh VA, Sukharev AA. Reconstruction of the spatial distribution of the average air density in a supersonic jet based on results of laser illumination. Atmos Oceanic Opt. 2021;34(3):198–204.
  • Raman G. Supersonic jet screech: half-century from powell to the present. J Sound Vib. 1999;225(3):543–571.
  • Powell A. On the mechanism of choked jet noise. Proc Phys Soc London Sect B. 1953;66(12):1039–1056.
  • Menshov IS, Semenov IV, Akhmedyanov IF. Mechanism of discrete tone generation in supersonic jet flows. Dokl Phys. 2008;53(5):278–282.
  • Marakasov DA, Sazanovich VM, Tsvyk RSh, et al. AIP conference proceedings. AIP Conf. Proc. 2017;1893:030082–030082-4. doi:10.1063/1.5007540.
  • Zapryagaev VI, Kiselev NP. Gasdynamic structure of an axisymmetric supersonic underexpanded jet. Fluid Dyn. 2015;50(1):87–97.
  • Tatarskii VI. The effects of the turbulent atmosphere on wave propagation. Jerusalem: Israel Program for Scientific Translations; 1971.
  • Seubold JG, Shirie JW. Length of the supersonic core in high-speed jets. AIAA J. 1967;5(11):2062–2064.
  • Shelukhin NN. Issledovanie kharakteristik sverkhzvukovoi nedorasshirennoi strui [investigation of the characteristics of a supersonic underexpanded jet]. Uchyonye Zapiski TsAGI. 1995;26(1–2):78–87. Russian.
  • Kandula M. On the existence of subharmonic screech in choked circular jets from a sharp-edged orifice. Open J Acoust. 2014;04(1):20–25.

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