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Investigating the Effects of Crooked-Line Geometry Using Seismic Modeling

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This work investigates the effects of crooked-line geometry on the seismic response through forward modeling using a horizontally layered velocity model. Straight-line and crooked-line geometry were compared using identical and conventional processing workflows. The crooked-line caused distortions in the hyperbolic events and introduced artifacts and discontinuities in the seismic horizons, based on analysis of the pre- and post-stacking data. In addition, significant amplitude irregularities were observed compared to the straight-line case, highlighting the need for specific processing strategies for crooked-line geometry.
Title: Investigating the Effects of Crooked-Line Geometry Using Seismic Modeling
Description:
This work investigates the effects of crooked-line geometry on the seismic response through forward modeling using a horizontally layered velocity model.
Straight-line and crooked-line geometry were compared using identical and conventional processing workflows.
The crooked-line caused distortions in the hyperbolic events and introduced artifacts and discontinuities in the seismic horizons, based on analysis of the pre- and post-stacking data.
In addition, significant amplitude irregularities were observed compared to the straight-line case, highlighting the need for specific processing strategies for crooked-line geometry.

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