Book contents
- Frontmatter
- Dedication
- Contents
- Preface
- Symbols
- 1 Vectors, Tensors, and Fourier Transforms
- 2 Stress, Strain, and Seismic Waves
- 3 Reflection and Transmission of Plane Waves
- 4 Surface Waves, Head Waves, and Normal Modes
- 5 Waves in Heterogeneous Media
- 6 Data Transformations
- 7 Synthetic Seismograms
- 8 Seismic Migration
- 9 Plane Waves in Anisotropic Media
- 10 Plane Waves in Anelastic Media
- Answers to Selected Exercises
- References
- Index
3 - Reflection and Transmission of Plane Waves
Published online by Cambridge University Press: 15 March 2019
- Frontmatter
- Dedication
- Contents
- Preface
- Symbols
- 1 Vectors, Tensors, and Fourier Transforms
- 2 Stress, Strain, and Seismic Waves
- 3 Reflection and Transmission of Plane Waves
- 4 Surface Waves, Head Waves, and Normal Modes
- 5 Waves in Heterogeneous Media
- 6 Data Transformations
- 7 Synthetic Seismograms
- 8 Seismic Migration
- 9 Plane Waves in Anisotropic Media
- 10 Plane Waves in Anelastic Media
- Answers to Selected Exercises
- References
- Index
Summary
This chapter covers the mathematical theory of how plane waves are reflected by boundaries or interfaces separating solid layers in the subsurface and how they are transmitted through them. Reflections off the Earth's surface are also discussed. The equations describing the physical boundary conditions that incident, reflected, and transmitted waves must satisfy are derived. The calculation of reflection and transmission coefficients, which give the amplitudes of reflected and transmitted waves, is covered.Polarity reversals and phase changes are discussed. Critical angles, which are related to the total internal reflection of incident waves, are studied. This is followed by coverage of the calculation of the amount of seismic wave energy that is reflected and transmitted, reflection and transmission of waves from liquid–liquid, liquid–solid, and rigid boundaries, and approximate formulas for reflection and transmission coefficients.
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- Information
- Seismic Wave Theory , pp. 112 - 151Publisher: Cambridge University PressPrint publication year: 2019