--> ABSTRACT: Extended Stolt F-K Migration, by Craig Beasley, Walt Lynn, Ken Larner, and Hung V. Nguyen; #91035 (2010)
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Extended Stolt F-K Previous HitMigrationNext Hit

Craig Beasley, Walt Lynn, Ken Larner, Hung V. Nguyen

Despite our understanding that depth Previous HitmigrationNext Hit is a more powerful imaging tool than time Previous HitmigrationNext Hit, time Previous HitmigrationNext Hit still constitutes the majority of Previous HitmigrationNext Hit done today. In selecting a time-Previous HitmigrationNext Hit algorithm, three primary criteria are of concern: accuracy in imaging steep dips, accuracy in the presence of vertical Previous HitvelocityNext Hit variation, and computational effort. The ideal algorithm would be efficient and unlimited in its ability to image steep dips in arbitrary vertical Previous HitvelocityNext Hit structures. It would also accommodate gentle lateral Previous HitvelocityNext Hit variations deemed acceptable for time-Previous HitmigrationNext Hit methods.

A particularly attractive algorithm to consider is Stolt's f-k method: it is computationally efficient and has unlimited dip accuracy for constant-Previous HitvelocityNext Hit media. Although Stolt's method can handle moderate vertical variations, errors become unacceptable for steep dips in the presence of large vertical Previous HitvelocityNext Hit variation. An extension to Stolt Previous HitmigrationNext Hit removes its restrictions on vertical Previous HitvelocityNext Hit variation, yielding accuracy comparable to phase-shift Previous HitmigrationNext Hit at only a fraction of the computational time.

This extended Stolt method is based on partitioning the Previous HitvelocityNext Hit field in a manner analogous to that in cascaded finite-difference Previous HitmigrationNext Hit and performing a number of stages of Stolt migrations. In each stage, the Previous HitmigrationNext Hit Previous HitvelocityNext Hit field is closer to a constant--the ideal situation for Stolt Previous HitmigrationNext Hit--than when the Previous HitmigrationNext Hit is done conventionally (i.e., in just one stage). Empirical results and error analyses show that four stages of extended Stolt Previous HitmigrationNext Hit are sufficient to migrate steeply dipping events accurately in nearly any vertically varying Previous HitvelocityNext Hit field. In fact, for a wide range of Previous HitvelocityTop fields and dips, as few as two stages will produce phase-shift quality images. The method can be used for two-dimensional, two-pass three-dimensional, and single-pass three-dimensio al migrations.

AAPG Search and Discovery Article #91035©1988 AAPG-SEPM-SEG Pacific Sections and SPWLA Annual Convention, Santa Barbara, California, 17-19 April 1988.