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Home > Science, Technology & Agriculture > Other technologies and applied sciences > Acoustic and sound engineering > The Helmholtz Equation Least Squares Method: For Reconstructing and Predicting Acoustic Radiation(Modern Acoustics and Signal Processing)
The Helmholtz Equation Least Squares Method: For Reconstructing and Predicting Acoustic Radiation(Modern Acoustics and Signal Processing)

The Helmholtz Equation Least Squares Method: For Reconstructing and Predicting Acoustic Radiation(Modern Acoustics and Signal Processing)


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About the Book

This book is written for those who want to learn the state-of-the-art technology on visualizing acoustic radiation from vibrating objects, to understand difficulties involved in these inverse acoustic problems, and to acquire the information necessary to conduct successful vibro-acoustic diagnostics on their own. Attention is focused on the new development on nearfield acoustical holography (NAH) beyond the traditional Fourier acoustics that are suitable for separable geometries only.

Specifically, it presents Helmholtz equation least squares (HELS) method, inverse Helmholtz integral equations implemented via boundary element method, hybrid NAH and transient NAH that can be employed to tackle various reconstruction of vibro-acoustic fields generated by arbitrary objects subject to arbitrarily time dependent excitations in free or confined space.

This book can serve both as a textbook for graduate students and as a reference book for acousticians, researchers and noise control engineers with basic knowledge of acoustics. Homework problems are included at the end of each chapter. In addition, examples of computer programs written in Matlab are provided for the readers' convenience.



Table of Contents:
Chapter 1. Introduction.- Chapter 2. The Spherical Wave Functions.- Chapter 3. The Helmholtz Equation Least Squares (HELS) Method.- Chapter 4. Validity of the HELS Method.- Chapter 5. Implementation of the HELS Method.- Chapter 6. Combined Helmholtz Equation Least Squares (CHELS) Method.- Chapter 7. Hybrid HELS.- Chapter 8. Equivalent Sources Using HELS.- Chapter 9. Transient HELS.- Chapter 10. Panel Acoustic Contribution Analysis Using HELS.- References.- Index.

About the Author :

Sean F. Wu received his Ph.D. from Georgia Institute of Technology, U.S.A. in 1987. He joined the Mechanical Engineering Department at Wayne State University as an Assistant Professor in 1988, was promoted to Associate Professor in 1995 and Professor in 1999, was selected in an unanimous vote as the Charles DeVlieg Professor in 2002 and appointed by the Board of Governors to the rank of University Distinguished Professor in 2005.

Dr. Wu holds the rank of Fellow in the American Society of Mechanical Engineers and the Acoustical Society of America, and serves as an Associate Editor and Express Letter Editor for the Journal of the Acoustical Society of America and Co-Editor-In-Chief for Journal of Computational Acoustics.


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Product Details
  • ISBN-13: 9781493938407
  • Publisher: Springer-Verlag New York Inc.
  • Publisher Imprint: Springer-Verlag New York Inc.
  • Height: 235 mm
  • No of Pages: 233
  • Series Title: Modern Acoustics and Signal Processing
  • Width: 155 mm
  • ISBN-10: 1493938401
  • Publisher Date: 22 Sep 2016
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Sub Title: For Reconstructing and Predicting Acoustic Radiation


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The Helmholtz Equation Least Squares Method: For Reconstructing and Predicting Acoustic Radiation(Modern Acoustics and Signal Processing)
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