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Foundations of Vibroacoustics / by Colin Hansen.

By: Hansen, Colin [author.].
Contributor(s): Taylor and Francis.
Material type: materialTypeLabelBookPublisher: Boca Raton, FL : CRC Press, 2018Edition: First edition.Description: 1 online resource (376 pages) : 226 illustrations, text file, PDF.Content type: text Media type: computer Carrier type: online resourceISBN: 9781315105154(e-book : PDF).Subject(s): TECHNOLOGY & ENGINEERING / Acoustics & Sound | acoustic wave equation | frequency analysis | Green's function | impedance | loss factors | modal analysis | sound intensity | sound propagation | sound radiation | spectral analysis | statistical energy analysis | structural vibration | vibration of continuous systems | vibroacoustics | Acoustical engineering | Sound | VibrationGenre/Form: Electronic books.Additional physical formats: Print version: : No titleDDC classification: 620.2 Online resources: Click here to view Also available in print format.
Contents:
Acoustics Fundamentals. Structural Mechanics Fundamentals. Sound Propagation Fundamentals. Impedance and Intensity. Modal Analysis. Statistical Energy Analysis. Spectral analysis. Appendix A Linear Algebra. Appendix B Properties of Materials.
Abstract: This text provides the foundation material for solving problems in vibroacoustics. These include the prediction of structural vibration levels and sound pressure levels in enclosed spaces resulting from known force or acoustic pressure excitations and the prediction of sound levels radiated by vibrating structures. The book also provides an excellent theoretical basis for understanding the processes involved in software that predicts structural vibration levels and structural sound radiation resulting from force excitation of the structure, as well as sound levels in enclosed spaces resulting from vibration of part of the enclosing structure or resulting from acoustic sources within the enclosure. The book is written in an easy to understand style with detailed explanations of important concepts. It begins with fundamental concepts in vibroacoustics and provides a framework for problem solution in both low and high frequency ranges. It forms a primer for students, and for those already well versed in vibroacoustics, the book provides an extremely useful reference. It offers a unified treatment of both acoustics and vibration fundamentals to provide a basis for solving problems involving structural vibration, sound radiation from vibrating structures, sound in enclosed spaces, and propagation of sound and vibration.
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Includes bibliographical references and index.

Acoustics Fundamentals. Structural Mechanics Fundamentals. Sound Propagation Fundamentals. Impedance and Intensity. Modal Analysis. Statistical Energy Analysis. Spectral analysis. Appendix A Linear Algebra. Appendix B Properties of Materials.

This text provides the foundation material for solving problems in vibroacoustics. These include the prediction of structural vibration levels and sound pressure levels in enclosed spaces resulting from known force or acoustic pressure excitations and the prediction of sound levels radiated by vibrating structures. The book also provides an excellent theoretical basis for understanding the processes involved in software that predicts structural vibration levels and structural sound radiation resulting from force excitation of the structure, as well as sound levels in enclosed spaces resulting from vibration of part of the enclosing structure or resulting from acoustic sources within the enclosure. The book is written in an easy to understand style with detailed explanations of important concepts. It begins with fundamental concepts in vibroacoustics and provides a framework for problem solution in both low and high frequency ranges. It forms a primer for students, and for those already well versed in vibroacoustics, the book provides an extremely useful reference. It offers a unified treatment of both acoustics and vibration fundamentals to provide a basis for solving problems involving structural vibration, sound radiation from vibrating structures, sound in enclosed spaces, and propagation of sound and vibration.

Also available in print format.

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