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Cover image for Computational aspects of structural acoustics and vibration
Title:
Computational aspects of structural acoustics and vibration
Publication Information:
New York : Springer, 2008
Physical Description:
276 p. : ill. ; 24 cm.
ISBN:
9783211896501

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Library
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Call Number
Material Type
Item Category 1
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30000010194327 TA654 C655 2008 Open Access Book Book
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Summary

Summary

Computational methods within structural acoustics, vibration and fluid-structure interaction are powerful tools for investigating acoustic and structural-acoustic problems in many sectors of industry; in the building industry regarding room acoustics, in the car industry and aeronautical industry for optimizing structural components with regard to vibrations characteristics etc. It is on the verge of becoming a common tool for noise characterization and design for optimizing structural properties and geometries in order to accomplish a desired acoustic environment. The book covers the field of computational mechanics, and then moved into the field of formulations of multiphysics and multiscale.

The book is addressed to graduate level, PhD students and young researchers interested in structural dynamics, vibrations and acoustics. It is also suitable for industrial researchers in mechanical, aeronautical and civil engineering with a professional interest in structural dynamics, vibrations and acoustics or involved in questions regarding noise characterization and reduction in building, car, plane, space, train, industries by means of computer simulations.


Table of Contents

J.-F. Deu and W. Larbi and R. OhayonG. Sandberg and P.-A. Wernberg and P. DavidssonF. IhlenburgC. A. Felippa and K. C. ParkN. Olhoff and J. Du
Variational Formulations of Interior Structural-Acoustic Vibration Problemsp. 1
Fundamentals of Fluid-Structure Interactionp. 23
Sound in Vibrating Cabins: Physical Effects, Mathematical Description, Computational Simulation with FEMp. 103
Model Based Partitioned Simulation of Coupled Systemsp. 171
On Topological Design Optimization of Structures Against Vibration and Noise Emissionp. 217
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