Mobility Power Flow Analysis of Coupled Plate Structure Subjected to Mechanical and Acoustic Excitation PDF Download

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Mobility Power Flow Analysis of Coupled Plate Structure Subjected to Mechanical and Acoustic Excitation

Mobility Power Flow Analysis of Coupled Plate Structure Subjected to Mechanical and Acoustic Excitation PDF Author: National Aeronautics and Space Adm Nasa
Publisher: Independently Published
ISBN: 9781729344576
Category :
Languages : en
Pages : 46

Book Description
The mobility power flow approach that was previously applied in the derivation of expressions for the vibrational power flow between coupled plate substructures forming an L configuration and subjected to mechanical loading is generalized. Using the generalized expressions, both point and distributed mechanical loads on one or both of the plates can be considered. The generalized approach is extended to deal with acoustic excitation of one of the plate substructures. In this case, the forces (acoustic pressures) acting on the structure are dependent on the response of the structure because of the scattered pressure component. The interaction between the plate structure and the acoustic fluid leads to the derivation of a corrected mode shape for the plates' normal surface velocity and also for the structure mobility functions. The determination of the scattered pressure components in the expressions for the power flow represents an additional component in the power flow balance for the source plate and the receiver plate. This component represents the radiated acoustical power from the plate structure. For a number of coupled plate substrates, the acoustic pressure generated by one substructure will interact with the motion of another substructure. That is, in the case of the L-shaped plate, acoustic interaction exists between the two plate substructures due to the generation of the acoustic waves by each of the substructures. An approach to deal with this phenomena is described. Cuschieri, J. M. Unspecified Center NAG1-685; NAG1-1077; RTOP 505-63-36-05...