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Seismic waves - generated both by natural earthquakes and by man-made sources - have produced an enormous amount of information about the Earth's interior. In classical seismology, the Earth is modeled as a sequence of uniform horizontal layers (or spherical shells) having different elastic properties and one determines these properties from travel times and dispersion of seismic waves. The Earth, however, is not made of horizontally uniform layers, and classic seismic methods can take large-scale inhomogeneities into account. Smaller-scale irregularities, on the other hand, require other methods. Observations of continuous wave trains that follow classic direct S waves, known as coda waves, have shown that there are heterogeneities of random size scattered randomly throughout the layers of the classic seismic model. This book focuses on recent developments in the area of seismic wave propagation and scattering through the randomly heterogeneous structure of the Earth, with emphasis on the lithosphere. The presentation combines information from many sources to present a coherent introduction to the theory of scattering in acoustic and elastic materials and includes analyses of observations using the theoretical methods developed. The second edition especially includes new observational facts such as the spatial variation of medium inhomogeneities and the temporal change in scattering characteristics and recent theoretical developments in the envelope synthesis in random media for the last ten years. Mathematics is thoroughly rewritten for improving the readability. Written for advanced undergraduates or beginning graduate students of geophysics or planetary sciences, this book should also be of interest to civil engineers, seismologists, acoustical engineers, and others interested in wave propagation through inhomogeneous elastic media.
This book investigates the complex behavior of seismic waves as they travel through and scatter within the Earth's heterogeneous structure. The author, Haruo Satō, a recognized expert in geophysics, addresses the limitations of classical seismology's layered Earth models by focusing on the effects of smaller-scale irregularities. The text synthesizes recent developments in the theory of scattering in acoustic and elastic materials, applying these theoretical frameworks to analyze observational data, particularly concerning the lithosphere and its randomly distributed inhomogeneities.
The second edition of this work incorporates significant updates, including new observational facts regarding the spatial variation of medium inhomogeneities and temporal changes in scattering characteristics. Theoretical developments in envelope synthesis in random media over the last decade are also featured. The mathematical content has been thoroughly rewritten to improve readability, making it accessible to advanced undergraduates or beginning graduate students in geophysics or planetary sciences, as well as professionals in related engineering fields.
Page Count:
494
Publication Date:
2012-01-01
ISBN-10:
3642230288
ISBN-13:
9783642230288
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