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Axisymmetric problem of hydroelasticity for cylindrical structures of finite length

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References

  1. V. G. Bazhenov and V. K. Lomunov, "Elastoplastic buckling of shells of revolution under impact loading," Applied Problems of Strength and Plasticity [in Russian], No. 2, Izdatel'stvo Gor'kogo Universiteta, Gor'kii (1975), pp. 44–50.

    Google Scholar 

  2. G. A. Barbashova, Yu. S. Bilyanskii, and M. V. Zhirnov, "Calculation of wave processes in the effective zone of a cylindrical acoustic emitter," Mikolaev (1993) (Preprint, Academy of Sciences of the Ukraine. Institute of Pulse Processes and Technologies; No. 21).

  3. Yu. S. Bilyanskii and V. M. Kosenkov, "Calculation of the propagation of sound pulses in an unbounded region," Hydrodynamics of Ships: Proceedings of the Nikolaev Ship-Building Institute [in Russian], (1990), pp. 75–80.

  4. V. T. Grinchenko and G. L. Komissarova, “Nonstationary deformation of a cylinder of finite length,” Prikl. Mekh.,21, No. 8, 3–10 (1985).

    Google Scholar 

  5. A. N. Guz' and V. D. Kubenko, Methods of Shell Design: in five volumes. Theory of Nonstationary Aerohydroelasticity of Shells [in Russian], Vol. 5, Naukova Dumka, Kiev (1982).

    Google Scholar 

  6. M. A. Il'gamov, Review of studies on nonreflecting conditions on the boundaries of a computational region, Numerical Boundary Conditions: Proceedings of a Seminar Held by the Kazan' Physicotechnical Institute, Academy of Sciences of the USSR [in Russian], No. 26, (1990), pp. 6–54.

  7. A. V. Kochetkov, S. V. Krylov, and V. R. Fel'dgun, "Numerical solution of problems of the dynamics of liquid-filled elastoplastic shells under an internal pulse loading," Applied Problems of Strength and Plasticity. Algorithmic Presentation and Automation of the Solution of Elasticity and Plasticity Problems [in Russian], Izdatel'stvo Gor'kogo Universiteta, Gor'kii (1984), pp. 47–53.

    Google Scholar 

  8. P. Z. Lugovoi, V. P. Mukoid, and V. F. Meish, Dynamics of Shell Structures Under Blast Loads [in Russian], Naukova Dumka, Kiev (1991).

    Google Scholar 

  9. V. D. Kubenko, G. A. Barbashova, M. V. Zhirnov, and A. V. Ivanov, “Calculation of the dynamic deformation of thin shells under an internal electrohydropulse loading,” Prikl. Mekh.,26, No. 12, 53–59 (1990).

    Google Scholar 

  10. Sh. U. Galiev, Yu. N. Babich, S. V. Zhurakhovskii, et al., Numerical Modeling of Wave Processes in Bounded Media [in Russian], Naukova Dumka, Kiev (1989).

    Google Scholar 

  11. P. K. Banerjee and R. Butterfield, Boundary Element Methods in Engineering Science, McGraw-Hill, London (1981).

    Google Scholar 

  12. A. Bayliss and E. Turkel, “Radiation boundary conditions for wavelike equations,” Comm. Pure Appl. Math.,33, 707–725 (1980).

    Google Scholar 

  13. P. M. Pinsky, L. L. Thompson, and N. N. Abboud, “Local high-order radiation boundary conditions for the two-dimensional time-dependent structural acoustics problem,” J. Acoust. Soc. Am.,91, No. 3, 1320–1335 (1992).

    Google Scholar 

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Institute of Pulse Processes and Technologies, National Academy of Sciences of the Ukraine, Nikolaev. Translated from Prikladnaya Mekhanika, Vol. 31, No. 12, pp. 31–37, December, 1995.

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Bilyanskii, Y.S., Zhirnov, M.V. Axisymmetric problem of hydroelasticity for cylindrical structures of finite length. Int Appl Mech 31, 985–990 (1995). https://doi.org/10.1007/BF00847257

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