Free Vibration Analysis of an Inflated Toroidal Shell

Author:

Jha Akhilesh K.1,Inman Daniel J.1,Plaut Raymond H.2

Affiliation:

1. Center for Intelligent Material Systems and Structures, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061-0105

2. Charles E. Via, Jr. Department of Civil and Environmental Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061-0105

Abstract

Free vibration analysis of a free inflated torus of circular cross-section is presented. The shell theory of Sanders, including the effect of pressure, is used in formulating the governing equations. These partial differential equations are reduced to ordinary differential equations with variable coefficients using complete waves in the form of trigonometric functions in the longitudinal direction. The assumed mode shapes are divided into symmetric and antisymmetric groups, each given by a Fourier series in the meridional coordinate. The solutions (natural frequencies and mode shapes) are obtained using Galerkin’s method and verified with published results. The natural frequencies are also obtained for a circular cylinder with shear diaphragm boundary condition as a special case of the toroidal shell. Finally, the effects of aspect ratio, pressure, and thickness on the natural frequencies of the inflated torus are studied.

Publisher

ASME International

Subject

General Engineering

Reference16 articles.

1. Malone, P. K., and Crawford, L., 1993, “Developing an Inflatable Solar Array,” 7th AIAA/USU Conference on Small Satellites, LPA-93-GW-008, P1J93.

2. Dornheim, M. A. , 1999, “Inflatable Structures Taking to Flight,” Aviat. Week Space Technol., January, pp. 60–62.

3. Kordes, E. E., 1960, “Vibration Analysis of Toroidal Shells of Circular Cross Section,” Ph.D. Dissertation, Engineering, Mechanics, Virginia Polytechnic Institute and State University, Blacksburg, VA.

4. McGill, D. J. M., 1966, “Axisymmetric Free Oscillations of Thick Toroidal Shells,” Ph.D. Dissertation, Department of Mechanics and Aerospace Engineering, University of Kansas, Lawrence, KS.

5. Kosawada, T., Suzuki, K., and Takahashi, S., 1985, “Free Vibration of Toroidal Shells,” Bull. JSME, 28(243), pp. 2041–2047.

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