Designing Quiet Structures :A Sound Power Minimization Approach

Publication subTitle :A Sound Power Minimization Approach

Author: Koopmann   Gary H.;Fahnline   John B.  

Publisher: Elsevier Science‎

Publication year: 1997

E-ISBN: 9780080504049

P-ISBN(Paperback): 9780124192454

P-ISBN(Hardback):  9780124192454

Subject: TB53 Vibration, Noise and Its Control

Language: ENG

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Description

This book is the first of its kind. It provides the reader with a logical and highly quantitative means of including noise as a parameter in the early design stages of a machine or structure. The unique and unified methodology builds upon the familiar disciplines of acoustics, structural dynamics and optimization. It also exemplifies the art of simplification - the essence of all good engineering design.

Strategies for designing quiet structures require extensive analytical and experimental tools. For computing the sound power from complex structures the authors recommend a new 3-D, lumped parameter formulation. This fully developed, user-friendly program can be applied generally to noise-control-by-design problems. Detailed instructions for running the application are given in the appendix as well as several sample problems to help the user get started.

The authors also describe a new instrument: a specially developed resistance probe used to measure a structure=92s acoustic surface resistance. As an example, the procedure is outlined for measuring the valve cover of an internal combustion engine. Indeed, throughout the book the reader is presented with actual experiments, numerical and physical that they can replicate in their own laboratory.

This is a must-have book for engineers working in industries that include noise control in the design of a product. Its practical and didactic approach also makes it ideally suited to graduate students.

Chapter

Front Cover

pp.:  1 – 4

Copyright Page

pp.:  5 – 6

CONTENTS

pp.:  6 – 10

PREFACE

pp.:  10 – 14

ACKNOWLEDGMENTS

pp.:  14 – 16

CHAPTER 1. BASIC EQUATIONS OF ACOUSTICS

pp.:  16 – 38

CHAPTER 2. A LUMPED PARAMETER MODEL FOR THE ACOUSTIC RADIATION PROBLEM

pp.:  38 – 74

CHAPTER 3. NUMERICAL SOLUTION OF THE ACOUSTIC RADIATION PROBLEM

pp.:  74 – 120

CHAPTER 4. EXPERIMENTAL MEASUREMENT OF THE RESISTANCE MATRIX

pp.:  120 – 144

CHAPTER 5. POWER OUTPUT COMPUTATIONS USING THE RESISTANCE MATRIX

pp.:  144 – 160

CHAPTER 6. MINIMIZING SOUND POWER USING MATERIAL TAILORING

pp.:  160 – 194

CHAPTER 7. ACTIVE CONTROL OF RADIATED ACOUSTIC POWER

pp.:  194 – 216

CHAPTER 8. CHARACTERIZING AND CONTROLLING SOUND IN AN ENCLOSURE

pp.:  216 – 242

APPENDIX USING THE COMPUTER PROGRAMS

pp.:  242 – 252

References

pp.:  252 – 254

INDEX

pp.:  254 – 260

WARNING

pp.:  260 – 262

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