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Open AccessJournal ArticleDOI

On the Vibrations of an Elastic Plate in Contact with Water

Horace Lamb
- 03 Nov 1920 - 
- Vol. 98, Iss: 690, pp 205-216
TLDR
In this paper, the pitch of the fundamental note of a thin circular plate or diaphragm of given material and dimensions, filling an aperture in a plane wall which is in contact on one side with an otherwise unlimited mass of water, was investigated.
Abstract
In connection with the problem of submarine signalling the question arose as to the pitch of the fundamental note of a thin circular plate or diaphragm of given material and dimensions, filling an aperture in a plane wall which is in contact on one side with an otherwise unlimited mass of water. The following investigation, which includes some extensions, is now published by permission. To simplify the theoretical treatment, the wall is supposed to be rigid, and the plate to be firmly clamped to it along the circumference, although these conditions are only imperfectly fulfilled in practice. Even with these limitations an exact solution is out of the question, but a sufficient approximation can be obtained by Rayleigh’s method of an assumed type, which gives good results if the type be suitably chosen. It is known that the frequency estimated in this way will be somewhat too high.

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Citations
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An Experimental Study of Fluid Structure Interaction of Carbon Composites under Low Velocity Impact

TL;DR: In this paper, the effect of fluid force on the natural frequencies and damping ratios of vibrating structures in contact with fluid is known as the fluid structure interaction (FSI) problem.

Active control of a submerged circular plate

J. Wiciak
TL;DR: In this article, the authors present the opportunity of active control of vibrations and sound through the application of a circular plate containing distributed piezoelectric actuators and sensors, which is supported on the edges in a rectangular enclosure and is loaded on one side by heavy fluid and on the other side has contact with a gaseous medium (air).
Dissertation

Hydroelastic Response of Marine Structures to Impact-induced Vibrations. Hydroelastic Reponse of Marine Structures to Impact-induced Vibrations.

TL;DR: In this paper, a numerical analysis of the hydroelastic behavior of marine vessels under hydrodynamic impact loads, which causes potentially detrimental local flexural vibrations in the vessel, is presented.

Vibration Characteristics of Functionally Graded Carbon Nanotube-Reinforced Composite Plates Submerged in Fluid Medium

TL;DR: In this paper, an analytical solution for the analysis of free vibration of functionally graded composite plates reinforced by carbon-nanotube submerged in a fluid medium is developed based on the four-variable shear deformation refined plate theory (HSDT4).
Journal ArticleDOI

Analysis of the dynamic response of a fluid-supported circular elastic plate impacted by a low-velocity projectile

TL;DR: In this article, the dynamic response of a thin circular elastic plate supported by a fluid on one side and impacted by a low-velocity projectile on the other side is analyzed for the first time.
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