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Computational Ocean Acoustics (13.853) >> Content Detail



Lecture Notes



Lecture Notes

LEC #TOPICS
1Fundamentals of Ocean Acoustics
2The Acoustic Wave Equation, Integral Transforms, The Helmholtz Equation (PDF)
3Sources in Unbounded and Bounded Media, Green's Functions, Green's Theorem (PDF)
4Reflection and Transmission, Integral Transform Solution, Source in Half-spaces (PDF)
5Ideal Waveguides, The Pekeris Waveguide (PDF)
6Wavenumber Integration: Layer Solutions and Interface Conditions (PDF)
7Wavenumber Integration: Global Matrix Solution (PDF)
8Wavenumber Integration: Propagator Matrix and Invariant Embedding Solution (PDF)
9Wavenumber Integration: Numerical Evaluation of Wavenumber Integral, Aliasing and Wrap-around (PDF)
10Wavenumber Integration: Numerical Methods Used in Wavenumber Integration (PDF - 1.7 MB)
11Normal Modes: Mathematical Derivation, Model Expansion of the Green's Function (PDF)
12Normal Modes: Isovelocity Problem, Generalized Derivation (PDF)
13Normal Modes: Munk Profile, Numerical Approaches (PDF)
14Normal Modes: Numerical Approaches (contd.) (PDF)
15Normal Modes: Numerical Procedures (PDF - 1.5 MB)
16Normal Modes: Range-dependent Environment, Coupled Modes (PDF)
17Normal Modes: 3-D Environment (PDF)
18Parabolic Equation: Derivation of Parabolic Equations (PDF)
19Parabolic Equation: Starting Fields (PDF)
(Make Up Class)
20Parabolic Equation: Energy Conservation Problem, Solutions by FDs FEs (PDF - 1.5 MB)
21Doppler Shift in Waveguide (PDF)
Reading: Kuperman and Schmidt "Spectral and modal representations of the Doppler-shifted field in ocean waveguides." The Journal of the Acoustical Society of America 96, no.1 (July 1994): 386-395.
22Time Series Simulation, Signal and Noise (PDF)

 


 








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