e-book Seismic multiple removal techniques: past, present and future

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Seismic Multiple Removal Techniques: Past, present and future. Revised Edition [D.J. Verschuur, N/A] on ropatpadistmon.ml *FREE* shipping on qualifying offers.
Table of contents

Publisher EAGE. Description Additional information Reviews 0. Description Multiple reflections have been a major problem since the beginning of seismic exploration. There are no reviews yet. In he became assistant professor and since he is an associate professor at the DUT at the laboratory of Acoustical Imaging and Sound Control.

Seismic Multiple Removal Techniques - Past, Present and Future - Knovel

His main interests are seismic modeling, processing and migration techniques. In he received SEG's J. Clarence Karcher award. Seismic data processing can be characterized by the application of a sequence of processes where for each of these processes there are a number of different approaches. This course gives a comprehensive overview of the processes that are commonly applied in seismic data processing, both for land and marine seismic data, and discusses for each process the alternative implementations together with their inherent assumptions and strengths and weaknesses. More information.

The course will begin with a review of migration and then move-on to cover the motivations for building detailed velocity models, and briefly discuss the inherent limitations on our ability to build a detailed model. Current-day practice will be covered, exemplified via several case-studies and will end with a synopsis of the less well known and emerging techniques. Following the course, participants should understand how migration works, in terms of the approximations involved, and how this relates to the geology to be imaged, and also appreciate the limitations of current and future imaging and velocity estimation technology, so as to be able to decide what model building technique should be employed to image a given geological objective.

Elastic anisotropy can strongly influence seismic data.

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This course discusses modeling, inversion and processing of seismic reflection and VSP data in the presence of anisotropy. The most critical step in extending the existing processing techniques to anisotropic media is to identify and estimate the medium parameters responsible for measured seismic signatures. The course emphasizes these parameters for vertical transverse isotropy — the anisotropic model usually associated with shales.

Field-data examples illustrate the improvements in imaging achieved by anisotropic migration algorithms and the possibility of using anisotropy for lithology discrimination and fracture characterization. This course serves as an introduction to the borehole seismic techniques being used by exploration geophysicists around the world. The fundamentals of acquisition, processing and interpretation are explored, and explained with case studies.


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DUG Insight: Remove multiples from gathers using a parabolic radon transform

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3D Seismic Surveys – Past, Present and Future

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