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IssuesArchive of Issues2003-6pp.111-119

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A. M. Akhtyamov, "Identification of the type of support of an annular plate by its natural vibration frequencies," Mech. Solids. 38 (6), 111-119 (2003)
Year 2003 Volume 38 Number 6 Pages 111-119
Title Identification of the type of support of an annular plate by its natural vibration frequencies
Author(s) A. M. Akhtyamov (Ufa)
Abstract The ability of the type of support of an annular plate along its inner and outer contours to be identified by natural frequencies of axially symmetric vibrations of the plate is justified. It is proved that the solution of the appropriate inverse problem is unique. A method for identification of the boundary conditions by a finite set of consecutive lower natural frequencies is proposed. Example problems of identification of the type of support of a plate along the inner and outer contours by three natural frequencies are considered.
References
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2.  V. S. Gontkevich, Natural Vibrations of Plates and Shells [in Russian], Naukova Dumka, Kiev, 1964.
3.  B. V. Pavlov, Acoustic Diagnostics of Mechanisms [in Russian], Mashinostroenie, Moscow, 1971.
4.  I. A. Birger, Engineering Diagnostics [in Russian], Mashinostroenie, Moscow, 1978.
5.  M. Kac, "Can one hear the shape of a drum?" Amer. Math. Monthly, Vol. 73, No. 4, pp. 1-23, 1966.
6.  A. M. Akhtyamov, "On the identification of a boundary condition by a finite set of eigenvalues," Differentsial'nye Uravneniya [Differential Equations], Vol. 35, No. 8, pp. 1127-1128, 1999.
7.  V. A. Sadovnichii, Ya. T. Sultanaev, and A. M. Akhtyamov, "Analogues of Borg's uniqueness theorem for the case of coupled boundary conditions," Doklady AN, Vol. 367, No. 6, pp. 739-741, 1999.
8.  A. M. Akhtyamov, "On the uniqueness of restotation of the boundary conditions of the Sturm-Liouville problem by its spectrum," Matematicheskoe Modelirovanie, Vol. 12, No. 3, p. 6, 2000.
9.  A. M. Akhtyamov, "On the uniqueness of restoration of the boundary conditions of a spectral problem by its spectrum," Fundamental'naya i Prikladnaya Matematika, Vol. 6, No. 4, pp. 995-1006, 2000.
10.  I. Sh. Akhatov and A. M. Akhtyamov, "Identification of the type of support of a beam by natural frequencies of its flexural vibrations," PMM [Applied Mathematics and Mechanics], Vol. 65, No. 2, pp. 290-298, 2001.
11.  W. Strutt (Lord Rayleigh), The Theory of Sound. Volume 1, Macmillan, London, 1929.
12.  V. V. Bolotin (Editor), Vibrations in Engineering. A handbook. Volume 1: Vibrations of Linear Systems [in Russian], Mashinostroenie, Moscow, 1978.
13.  I. A. Birger and Ya. G. Panovko (Editors), Strength, Stability, and Vibrations. A Handbook. Volume 1 [in Russian], Mashinostroenie, Moscow, 1968.
14.  P. Lancaster, Theory of Matrices, Acad. Press, N.Y., London, 1969.
15.  M. A. Naimark, Linear Differential Operators [in Russian], Nauka, Moscow, 1969.
16.  A. F. Nikiforov and V. B. Uvarov, Special Functions of Mathematical Physics [in Russian], Nauka, Moscow, 1984.
17.  E. Janke, F. Emde, and F. Löesch, Tables of Higher Functions [Russian translation], Nauka, Moscow, 1968.
18.  B. Ya. Levin, Distribution of Roots of Entire Functions [in Russian], Gostekhizdat, Moscow, 1956.
19.  M. M. Postnikov, Lectures on Geometry. Linear Algebra and Differential Geometry [in Russian], Nauka, Moscow, 1979.
20.  K. Rektoris, Variational Methods in Mathematics, Science, and Engineering [Russian translation], Mir, Moscow, 1985.
Received 14 March 2002
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