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Subsequently, special attention is focused on the energy transmission and mechanism of the box-type structure by structural intensity analysis.
The structural intensity of plate structures connected by loosened bolts subjected to forced excitation is also presented in this paper.
A method for numerical computation of structural intensity in thin-walled structures is presented.
First the local structure function (LSF) should be generated and the structural intensity error is calculated by comparing the LSF between I x, y) andI d (x, y).
The irrotational part of the structural intensity for flexural wave motion in plate-like structures is calculated from measurement data of kinematic quantities, such as out-of-plane velocities, by a new method that makes use of a test functional series expansion.
Finally, the potential application of structural intensity technique towards the design for stiffened plates of marine structures is explored and presented.
Thus, the frequency response function for structural intensity reflects both vibration power transfer and fluctuation in a structure, and it allows one to calculate the intensity at a receiving point when the input power at the source point is known.
The structural intensity field and the divergence of structural intensity are evaluated.
The transmission of vibrational energy flow in stiffened plates is analyzed by the structural intensity method.
Using the structural intensity approach, the crack is detected on the key point easily.
Some potential uses of this frequency response function for structural intensity are presented.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com