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9781441978318

Ocean Ambient Noise

by ;
  • ISBN13:

    9781441978318

  • ISBN10:

    1441978313

  • Format: Hardcover
  • Copyright: 2011-04-06
  • Publisher: Springer Verlag
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Summary

This monograph develops the theory of noise mechanisms and measurements, and describes general noise characteristics and computational methods. The vast ambient noise literature is concisely summarized using theory combined with key representative results.The air sea boundary interaction zone is described in terms of nondimensional variables requisite for future experiments. Noise field coherency, rare directional measurements, and unique basin scale computations and methods are presented. The use of satellite measurements in these basin scale models is demonstrated. A series of appendices provides in-depth mathematical treatments which will be of interest to graduate students and active researchers.

Table of Contents

Introductionp. 1
References and Suggested Readingsp. 7
Ambient Noise Reviews and Proceedingsp. 8
The Air-Sea Boundary Interaction Zonep. 11
The Marine Boundary Layerp. 12
The Viscous Sublayerp. 14
Mechanical Turbulencep. 14
The Effect of Buoyancyp. 16
The Influence of Heat Transportp. 17
The Monin-Obukhov Lengthp. 17
The Combined Influence of Mass, Momentum, and Heat Transportp. 18
The Roughness Scale and Motion of the Surfacep. 20
A Summary of the Wind Stress Coefficient and Critical Friction Velocityp. 21
Friction Velocity and Breaking Wavesp. 22
The Whitecap Indexp. 27
References and Suggested Readingsp. 29
Fundamental Mechanismsp. 31
The Inhomogeneous Wave Equation and Sources of Soundp. 31
The Point Source Solution, Green's Functionp. 33
Solutions to the Inhomogeneous Equationp. 34
The Sea Surfacep. 37
The Source Integralsp. 38
References and Suggested Readingsp. 42
The Measurement of Oceanic Ambient Noisep. 45
Introductionp. 45
Noise Measurementp. 46
The Autocorrelation Function, ¿p(¿)p. 48
The Power Spectral Densityp. 48
Some Simple Statistical Conceptsp. 50
Phenomenological Observationsp. 52
lnfrasonic Noisep. 54
The Sonic Regionp. 56
The Wind Speed Dependency at Frequencies Less Than 500 Hzp. 62
Mid- to High-Frequency Wind Speed Dependencep. 66
Low-Frequency Noise Characteristicsp. 68
Directionalityp. 69
Low-Frequency Directional Noise Characteristicsp. 69
Beam Noise Levels and Horizontal Directionalityp. 70
Vertical Noise Directionalityp. 74
Rain Noisep. 78
Arctic Ambient Noisep. 85
Arctic Ambient Noise over the 10 Hz to 1 kHz Bandp. 85
Low-Frequency Arctic Ambient Noisep. 89
References and Suggested Readingsp. 93
Numerical Modeling of Ambient Noisep. 99
Introductionp. 99
Ambient Noise Modelingp. 100
The Noise Fieldp. 102
Plane Wave Responsep. 104
Ambient Noise Computationp. 107
Parabolic Equation Field Computationsp. 109
Field Interpolationp. 111
Noise Realizationsp. 112
Environmental Considerationsp. 113
Noise Source Levelsp. 113
Wind Source Levelsp. 114
Shipping Source Levelsp. 115
Ambient Noise Examplesp. 116
UniformNoisep. 118
Wind Noisep. 120
Shipping Noisep. 122
Summary of Examplesp. 124
Summaryp. 124
References and Suggested Readingsp. 126
Research Issues and Applications of Oceanic Noisep. 129
Summaryp. 129
Noise Mechanismsp. 131
Hydromechanical Sources of Soundp. 132
Geoacoustic Uncertaintyp. 133
Correlation Issuesp. 135
Computational Issuesp. 136
References and Suggested Readingsp. 136
Solutions to the Inhomogeneous Wave Equationp. 141
Derivation of the Inhomogeneous Wave Equationp. 141
The Retarded Green's Function Solutionp. 144
References and Suggested Readingsp. 147
Solution to the Inhomogeneous Wave Equationp. 148
References and Suggested Readingsp. 149
The Inhomogeneous Wave Equation with a Surface Boundary Condition: Derivation of the Source Integralsp. 151
The General Solutionp. 151
The Initial Conditions and Surface Boundary Conditionsp. 151
The Surface Integralsp. 152
The Volume Integral Over the Source Regionp. 153
The Source Integralsp. 155
References and Suggested Readingsp. 157
Standard Definitionsp. 159
Harmonic Soundp. 160
Transient Soundsp. 161
Energy Flux Source Levelp. 162
Spectral Density of a Transientp. 162
The Impulsep. 163
Steady Soundsp. 163
The Autocorrelation Functionp. 164
The Power Spectral Densityp. 164
Summaryp. 166
A Brief Note on Parseval's Theoremp. 166
An Engineer's Proof of the Energy Theoremp. 168
Selected Referencesp. 170
Applicable Standardsp. 170
A Review of the Sonic Properties of Bubbly Liquidsp. 171
The Mallock-Wood Approachp. 171
An Extension to Include Bubble Dynamicsp. 175
References and Suggested Readingsp. 181
Radiation and Scattering from Compact Bubble Cloudsp. 185
References and Suggested Readingsp. 191
The Radiation from a Pulsating Spherep. 193
The Monopolep. 195
The Finite-Size Spherep. 196
The Bubble as a Monopole Source of Soundp. 197
The Transient Response of a Bubblep. 199
References and Suggested Readingsp. 202
Thermal Noisep. 203
The Modal Densityp. 203
The Modal Energy Densityp. 205
References and Suggested Readingsp. 208
The Lloyd Mirrorp. 209
References and Suggested Readingsp. 216
Sounds from Drop Impactsp. 217
References and Suggested Readingsp. 219
Source Levels for Wind-Driven Noisep. 221
References and Suggested Readingsp. 227
Modal Noise Cross-Correlation Matrixp. 229
References and Suggested Readingsp. 232
Nomenclaturep. 233
Roman Lettersp. 233
Greek Lettersp. 236
Mathematical Operatorsp. 237
Abbreviationsp. 237
Bibliographyp. 241
Indexp. 257
Table of Contents provided by Ingram. All Rights Reserved.

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