Iterative supervirtual refraction interferometry

Author:

Al-Hagan Ola1,Hanafy Sherif M.2,Schuster Gerard T.3

Affiliation:

1. King Khalid University, College of Science, Physics Department, Abha, Saudi Arabia..

2. King Abdullah University of Science and Technology, Division of Physical Science and Engineering, Center for Subsurface Imaging and Fluid Modeling, Thuwal, Saudi Arabia and Cairo University, Geophysics Department, Faculty of Science, Cairo, Egypt..

3. King Abdullah University of Science and Technology, Division of Physical Science and Engineering, Center for Subsurface Imaging and Fluid Modeling, Thuwal, Saudi Arabia..

Abstract

In refraction tomography, the low signal-to-noise ratio (S/N) can be a major obstacle in picking the first-break arrivals at the far-offset receivers. To increase the S/N, we evaluated iterative supervirtual refraction interferometry (ISVI), which is an extension of the supervirtual refraction interferometry method. In this method, supervirtual traces are computed and then iteratively reused to generate supervirtual traces with a higher S/N. Our empirical results with both synthetic and field data revealed that ISVI can significantly boost up the S/N of far-offset traces. The drawback is that using refraction events from more than one refractor can introduce unacceptable artifacts into the final traveltime versus offset curve. This problem can be avoided by careful windowing of refraction events.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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