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The AAPG/Datapages Combined Publications Database
GCAGS Transactions
Abstract
Sequence and Seismic Stratigraphy of the Bossier Formation (Tithonian), Western East Texas Basin
ABSTRACT
Sequence and seismic stratigraphic analysis of well logs and 2-D seismic lines from Freestone, Anderson, Leon, Houston, Madison, Robertson and Limestone Counties, Texas, demonstrates that the Bossier Formation of the western East Texas basin can be subdivided into two recognizable sequences separated by a major sequence boundary (SB-2). Similarly, the Bossier Formation is also bracketed by a basal (SB-1) and upper (SB-3) sequence boundary separating it from the Gilmer Lime (Cotton Valley Lime) below, and the Cotton Valley Sand above, respectively.
In seismic sections, the SB-2 boundary in the middle of the Bossier Formation was identified by tracing mounded seismic reflectors, and sigmoid geometries representing basin floor and slope fans. This boundary was correlated onto the shelf below a series of stacked deltaic sands. In well log sections, basin floor fan log patterns were traced laterally into slope fan and stacked delta log signatures. These basin floor and slope fans represent a lowstand systems tract, whereas the lower Bossier represents a transgressive systems tract and the upper Bossier represents a prograding complex.
Burial history analysis suggests that the lower Bossier accumulated during a time of rapid mechanical subsidence when the East Texas basin was underfilled. A drop in sea level associated with the SB-2 boundary is associated with a major climate shift from tropical to cooler conditions favoring rapid influx of sands from the ancestral Mississippi, Ouachita and Red River systems. These sands developed inner shelf prograding deltaic packages, outer shelf and incised valley fill stacked deltas, and basin submarine fan systems. The stacked deltas and basin fan sand systems all represent prospective gas plays.
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