doi: 10.17586/2226-1494-2015-15-2-346-355


INTERFERENCE OF COUNTERPROPAGATING SHOCK WAVES

P. V. Bulat, P. V. Denissenko, N. V. Prodan


Read the full article  ';
Article in Russian

For citation: Bulat P.V., Denisenko P.V., Prodan N.V. Interference of counterpropagating shock waves. Scientific and Technical Journal of Information Technologies, Mechanics and Optics, 2015, vol.15, no. 2, pp. 346–355.

Abstract
The subject of study. We examined the interaction of counterpropagating shock waves. The necessity of counterpropagating shock waves studying occurs at designing of high Mach number modern internal compression air intakes, Ramjets with  subsonic and supersonic combustion, in asymmetrical supersonic nozzles and in some other cases. In a sense, this problem is a generalization of the case of an oblique shock reflection from the wall or from the plane of symmetry. With the renewed vigor, the interest to this problem emerged at the end of the 90s. This was due to the start of the programs for flight study at hypersonic speeds. The first experiments performed with air intakes, which realized the interaction of counterpropagating shock waves have shown that the change in flow velocity is accompanied by abrupt alteration of shock-wave structure, the occurrence of nonstationary and oscillatory phenomena. With an increase of flow velocity these phenomena undesirable for aircraft structure became more marked. The reason is that there are two fundamentally different modes of interaction of counterpropagating shock waves: a four-wave regular and a five-wave irregular. The transition from one mode to another can be nonstationary abrupt or gradual, it can also be accompanied by hysteresis.
Main results. Criteria for the transition from regular reflection of counterpropagating shock waves to irregular are described: the criterion of von Neumann and the stationary Mach configuration criterion. We described areas in which the transition from one reflection type to another is possible only in abrupt way, as well as areas of possible gradual transition. Intensity dependences of the reflected shock waves from the intensity of interacting counterpropagating shocks were given. Qualitative pictures of shock-wave structures arising from the interaction of counterpropagating shock waves were shown. Calculation
results of the intensity of outgoing gas-dynamic discontinuities, the intensities corresponding to the transition from regular to irregular interference were described. Numerical calculations of the shock-wave structure transformation in the conditions of hysteresis were performed. The results were compared with the experiments carried out by hydraulic analogy method.
Practical significance. Results of the work complement well the theory of stationary gas-dynamic discontinuities interference and can be used at designing of perspective images of supersonic and hypersonic aircraft.

Keywords: shock wave, Mach reflection, counterpropagating shock waves, shock-wave structures, hysteresis.

Acknowledgements. Results of the work complement well the theory of stationary gas-dynamic discontinuities interference and can be used at designing of perspective images of supersonic and hypersonic aircraft.

References
1. Uskov V.N. Begushchie Odnomernye Volny [Running One-Dimensional Waves]. St. Petersburg, BSTU "VOENMEH" Publ., 2000, 224 p.
2. Bulat P.V., Uskov V.N. Mach reflection of a shock wave from the symmetry axis of the supersonic nonisobaric jet. Research Journal of Applied Sciences, Engineering and Technology, 2014, vol. 8, no. 1,
pp. 135–142.
3. Molder S. Head-on interaction of oblique shock waves. University of Toronto Institute of Aerophysics Technical Note, 1960, no. 38.
4. Uskov V.N. Interferentsiya statsionarnykh gazodinamicheskikh razryvov [Interference stationary gasdynamic discontinuities]. Sbornik Statei "Sverkhzvukovye Gazovye Strui" [Proc. Supersonic Gas Jet]. Novosibirsk,
Nauka Publ., 1983, pp. 22–46.
5. Uskov V.N. Udarnye Volny i Ikh Vzaimodeistvie. Uchebnoe Posobie [Shock Waves and Their Interaction. Textbook]. Leningrad, Len. Mekh. Inst. Publ., 1980, 88 p.
6. Starykh A.L. Neregulyarnoe vzaimodeistvie skachkov uplotneniya mezhdu soboi i s tangentsial'nymi razryvami [Irregular interaction of shocks between themselves and with tangential discontinuities].
Chislennye Metody Mekhaniki Sploshnoi Sredy, 1986, vol. 17, no. 6, pp. 119–124.
7. Adrianov A.L. Vydelenie mnozhestva razryvov na nesoglasovannoi setke v dvumernykh statsionarnykh sverkhzvukovykh techeniyakh [Allocation of the set of discontinuities on inconsistent grid in the twodimensional stationary supersonic flows]. Modelirovanie v Mekhanike. Ser. Struinye Techeniya, 1988, vol. 2(19), no. 6, pp. 3–9.
8. Chpoun A., Ben-Dor G. Numerical confirmation of the hysteresis phenomenon in the regular to the Mach reflection transition in steady flows. Shock Waves, 1995, vol. 5, no. 4, pp. 199–203. doi:
10.1007/BF01419001
9. Fomin V.M., Hornung H.G., Ivanov M.S., Kharitonov A.M., Klemenkov G.P., Kudryavtsev A.N., Pavlov A.A. The study of transition between regular and Mach reflection of shock waves in different wind tunnels.
Proc. 12th Int. Mach Reflection Symposium. Pilanesberg, South Africa, 1996, pp. 137–51.
10. Ivanov M.S., Ben-Dor G., Elperin T., Kudryavtsev A.N., Khotyanovsky D.V. Mach-number-variationinduced hysteresis in steady flow shock wave reflections. AIAA Journal, 2001, vol. 39, no. 5, pp. 972–974.
11. Ben-Dor G. Shock Wave Reflection Phenomena. 2nd ed. Springer, 2010, 342 p.
12. Handbook of Shock Waves. Eds G. Ben-Dor, O. Igra, T. Elperin. Boston, Academic Press, 2001, 824 p.
13. Ivanov M.S., Ben-Dor G., Elperin T., Kudryavtsev A.N., Khotyanovsky D.V. Analytical and experimental investigations of the reflection of asymmetric shock waves in steady flows. Journal of Fluid Mechanics,
1999, vol. 390, pp. 25–43.
14. Ben-Dor G., Elperin T., Vasiliev E.I. Flow-Mach-number-induced hysteresis phenomenon in the interaction of conical shock waves – a numerical investigation. Journal of Fluid Mechanics, 2003, vol. 496, pp. 335–
354. doi: 10.1017/S0022112003006475
15. Adrianov A.L., Starykh A.L., Uskov V.N. Interferentsiya Statsionarnykh Gazodinamicheskikh Razryvov [Interference Stationary Gasdynamic Discontinuities]. Novosibirsk, Nauka Publ., 1995, 180 p.
16. Uskov V.N., Bulat P.V., Prodan N.V. Obosnovanie primeneniya modeli statsionarnoi makhovskoi konfiguratsii k raschetu diska makha v sverkhzvukovoi strue [Rationale for the use of models of stationary
Mach configuration calculation of Mach disk in a supersonic jet]. Fundamental'nye Issledovaniya, 2012, no. 11–1, pp. 168–175.
17. Uskov V.N., Bulat P.V., Prodan N.V. Istoriya izucheniya neregulyarnogo otrazheniya skachka uplotneniya ot osi simmetrii sverkhzvukovoi strui s obrazovaniem diska makha [History of study of the irregular reflection of shock wave from the symmetry axis with a supersonic jet Mach disk]. Fundamental'nye Issledovaniya, 2012, no. 9–2, pp. 414–420.
18. Uskov V.N., Chernyshov M.V. Special and extreme triple shock-wave configurations. Journal of Applied Mechanics and Technical Physics, 2006, vol. 47, no. 4, pp. 492–504. doi: 10.1007/s10808-006-0081-5


Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License
Copyright 2001-2024 ©
Scientific and Technical Journal
of Information Technologies, Mechanics and Optics.
All rights reserved.

Яндекс.Метрика