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Following the breakthrough in the last decade in identifying the
key parameters for time and depth imaging in anisotropic media and
developing practical methodologies for estimating them from seismic
data, this title primarily focuses on the far reaching exploration
benefits of anisotropic processing.
This volume provides the first comprehensive description of
reflection seismic signatures and processing methods in anisotropic
media. It identifies the key parameters for time and depth imaging
in transversely isotropic media and describes practical
methodologies for estimating them from seismic data. Also, it
contains a thorough discussion of the important issues of
uniqueness and stability of seismic velocity analysis in the
presence of anisotropy. The book contains a complete description of
anisotropic imaging methods, from the theoretical background to
algorithms to implementation issues. Numerous applications to
synthetic and field data illustrate the improvements achieved by
the anisotropic processing and the possibility of using the
estimated anisotropic parameters in lithology discrimination.
Following the breakthrough in the last decade in identifying the
key parameters for time and depth imaging in anisotropic media and
developing practical methodologies for estimating them from seismic
data, this title primarily focuses on the far reaching exploration
benefits of anisotropic processing.
This volume provides the first comprehensive description of
reflection seismic signatures and processing methods in anisotropic
media. It identifies the key parameters for time and depth imaging
in transversely isotropic media and describes practical
methodologies for estimating them from seismic data. Also, it
contains a thorough discussion of the important issues of
uniqueness and stability of seismic velocity analysis in the
presence of anisotropy. The book contains a complete description of
anisotropic imaging methods, from the theoretical background to
algorithms to implementation issues. Numerous applications to
synthetic and field data illustrate the improvements achieved by
the anisotropic processing and the possibility of using the
estimated anisotropic parameters in lithology discrimination.
* Focuses on the far reaching exploration benefits of anisotropic
processing
* First comprehensive description of reflection seismic signatures
and processing methods in anisotropic media
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