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Fundamental and Applied Problems of Nonlinear Wave Mechanics and Engineering: Groundbreaking Wave Technologies and Wave Engineering

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Abstract—

The ideas and results (fragments) of nonlinear wave mechanics and wave technologies along with the wave machines and facilities implementing them developed by the author and his colleagues, researchers at the Research Center for Nonlinear Wave Mechanics and Technology, Blagonravov Institute of Mechanical Engineering, Russian Academy of Sciences, spelled out by the author at the International Conference “Machines, Technologies, and Materials for Modern Mechanical Engineering” on the occasion of the 80th anniversary of the Blagonravov Institute of Mechanical Engineering are presented here.

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REFERENCES

  1. Ganiev, R.F and Ukrainskii, L.E., Nelineinaya volnovaya mekhanika i tekhnologii. Volnovye i kolebatel’nye yavleniya v osnove vysokikh tekhnologii, 2nd ed. (Nonlinear Wave Mechanics and Technology. Wave and Vibrational Phenomena at the Basis of High Technology), Moscow: Inst. Komp’yut. Issled., Regulyar. Khaotich. Dinam., 2011, p. 780.

  2. Ganiev, R.F., Nelineinye rezonansy i katastrofy. Nadezhnost’, bezopasnost’ i besshumnost’ (Nonlinear Resonances and Disasters. Reliability, Safety and Noiselessness), Moscow: Regulyar. Khaotich. Dinam., 2013, p. 582.

  3. Ganiev, O.R., Ganiev, R.F., and Ukrainskii, L.E., Rezonansnaya Makro- i mikromekhanika neftyanogo plasta. Intensifikatsiya dobychi nefti i povyshenie nefteotdachi. Nauka i praktika (Resonant Macro- and Micromechanics of the Oil Reservoir. Intensification of Oil Production and Enhanced Oil Recovery. Science and Practice), Izhevsk: IKI, 2014, p. 256.

  4. Ganiev, O.R., Ganiev, R.F., and Ukrainsky, L.E., Enhanced Oil Recovery. Resonance Macro and Micro-Mechanics of Petroleum Reservoirs, Hoboken, NJ: Scrivener, 2017, p. 240.

    Google Scholar 

  5. Ganiev, R.F., Volnovye mashiny i tekhnologii (Wave Machines and Technologies), Moscow: Regulyar. Khaotich. Dinam., 2008, p. 192.

  6. Ganiev, R.F., Ganiev, S.R., Kasilov, V.P., and Pustovgar, A.P., Volnovye tekhnologii v innovatsionnom mashinostroenii (Wave Technology in Innovative Engineering), 2nd ed., Moscow: Regulyar. Khaotich. Dinam., 2012, p. 92.

  7. Ganiev, R.F. and Ukrainski, L.E., Nonlinear Wave Mechanics and Oscillatory Phenomena on the Basis of High Technologies, USA: Begell House, 2012, p. 527.

    Google Scholar 

  8. Ganiev, R.F., Ganiev, S.R., Kasilov, V.P., and Pustovgar, A.P., Wave Technology in Mechanical Engineering: Industrial Applications of Wave and Oscillation Phenomena, Hoboken, NJ: Scrivener, 2015, p. 176.

    Book  Google Scholar 

  9. Ganiev, R.F., Kormilitsyn, V.I., and Ukrainskii, L.E., Volnovaya tekhnologiya prigotovleniya al’ternativnykh vidov topliv i effektivnost’ ikh szhiganiya (Wave Technology for the Preparation of Alternative Fuels and their Efficiency), Moscow, 2008, p. 116.

  10. Ganiev, R.F., On the current state and the future prospects of the institute of machine science, russian academy of sciences, and problems of the mechanics of machines and breakthrough technologies, J. Mach. Manuf. Reliab., 2014, vol. 43, no. 3, p. 188.

    Article  Google Scholar 

  11. Ganiev, R.F., Ukrainskii, L.E., Andreev, V.E., and Kotenev, Yu.A., Problemy i perspektivy volnovoi tekhnologii mnogofaznykh sistem v neftyanoi i gazovoi promyshlennosti (Problems and Prospects of Wave Technology of Multiphase Systems in the Oil and Gas Industry), St. Petersburg: Nedra, 2008, p. 185.

  12. Ganiev, R.F., Reviznikov, D.L., Sukharev, T.Yu., and Ukrainskii, L.E., Wave mixing in oscillatory-type power plants, J. Mach. Manuf. Reliab., 2017, vol. 46, no. 3, pp. 219–224.

    Article  Google Scholar 

  13. Aldoshin, S.M., Badamshina, E.R., Grishchuk, A.A., Tarasov, A.E., Estrin, Y.I., Ganiev, R.F., Ganiev, S.R., Kasilov, V.P., Kurmenev, D.V., and Pustovgar, A.P., Study of the influence of single-wall carbon nanotube dispersion techniques upon the properties of epoxy resin-based nanocomposites, J. Mach. Manuf. Reliab., 2015, vol. 44, no. 3, p. 271.

    Article  Google Scholar 

  14. Ganiev, R.F., Ganiev, S.R., Kasilov, V.P., Kislogubova, O.N., Kurmenev, D.V., Pustovgar, A.P., Aldo-shin, S.M., and Badamshina, E.R., Prospects of wave technologies for the creation of new polymer composite materials (nanocomposites, highly filled composites), Spravochnik, Inzh. Zh. Prilozh., 2015, no. 4 (217), p. 3.

  15. Ganiev, R. and Il’gamov, M.A., Cavitation of a liquid column when its lower boundary moves, Dokl. Akad. Nauk, 2018, vol. 482, no. 1, p. 28.

    Google Scholar 

  16. Ganiev, R.F., Reviznikov, D.L., Rogoza, A.N., Slastushenskii, Y.V., and Ukrainskii, L.E., Analysis and diagnostics of the human cardiovascular system using the principles of nonlinear wave mechanics, J. Mach. Manuf. Reliab., 2016, vol. 45, no. 2, p. 178.

    Article  Google Scholar 

  17. Ganiev, R.F., Reviznikov, D.L., Rogoza, A., Slastushenskii, Yu.V., and Ukrainskii, L.E., Wave processes in the human cardiovascular system: measuring complex, computational models and diagnostic analysis, Dokl. Akad. Nauk, 2017, vol. 473, no. 3, p. 291.

    MathSciNet  Google Scholar 

  18. Ganiev, R.F., Il’gamov, M.A., Khakimov, A.G., and Shakir’yanov, M.M., Spatial vibrations of a pipeline with elastically deflecting support under the action of internal shock pressure, J. Mach. Manuf. Reliab., 2018, vol. 47, no. 6, pp. 479–487.

    Article  Google Scholar 

  19. Ganiev, R.F., Reviznikov, D.L., Sukharev, T.Yu., and Ukrainskii, L.E., Optimization of the spatial arrangement of working elements in oscillatory-type plants, J. Mach. Manuf. Reliab., 2018, vol. 47, no. 1, pp. 1–5.

    Article  Google Scholar 

  20. Ganiev, R.F., Ganiev, O.R., Panin, S.S., and Saifullin, I.Sh., Perspectives of the development and use of the nonlinear wave technologies to process the energy condensed systems, J. Mach. Manuf. Reliab., 2018, vol. 47, no. 5, pp. 469–472.

    Article  Google Scholar 

  21. Ganiev, R.F., Aganin, A.A., Ganiev, O.R., Granova, G.N., Davletshin, A.I., Ukrainskii, L.E., and Ustenko, I.G., Compression of cavitation bubble in viscous liquid, J. Mach. Manuf. Reliab., 2017, vol. 46, no. 1, pp. 1–6.

    Article  Google Scholar 

  22. Ganiev, O.R., Ganiev, R.F., Ukrainskii, L.E., and Ustenko, I.G., Impact of waves on porous media and increase in oil recovery of beds, J. Mach. Manuf. Reliab., 2016, vol. 45, no. 4, pp. 362–368.

    Article  Google Scholar 

  23. Ganiev, O.R., Ganiev, R.F., Ukrainskii, L.E., and Ustenko, I.G., Fundamentals of waveguide mechanics of reservoirs, Dokl. Akad. Nauk, 2016, vol. 466, no. 3, p. 298.

    Google Scholar 

  24. Ganiev, R.F., Kasilov, V.P., Kislogubova, O.N., Pustovgar, A.P., and Kurmenev, D.V., Obtaining fine emulsions of a controlled level of dispersion by wave methods, J. Mach. Manuf. Reliab., 2013, vol. 42, no. 2, pp. 141–145.

    Article  Google Scholar 

  25. Ganiev, O.R., Ganiev, R.F., Granova, G.N., Ukrainskii, L.E., and Ustenko, I.G., Increase in the filtration capacity of the bottomhole zone in the reservoir by wave impact for well stimulation, J. Mach. Manuf. Reliab., 2016, vol. 45, no. 5, pp. 464–468.

    Article  Google Scholar 

  26. Ganiev, R.F., Balakshin, O.B., and Kukharenko, B.G., Turbulence of flow and flutter of the rotor blades in an axial turbocharger, J. Mach. Manuf. Reliab., 2015, vol. 44, no. 6, p. 485.

    Article  Google Scholar 

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Correspondence to R. F. Ganiev.

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Translated by E. Oborin

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Ganiev, R.F. Fundamental and Applied Problems of Nonlinear Wave Mechanics and Engineering: Groundbreaking Wave Technologies and Wave Engineering. J. Mach. Manuf. Reliab. 48, 477–502 (2019). https://doi.org/10.3103/S1052618819060050

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  • DOI: https://doi.org/10.3103/S1052618819060050

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