Unconventional shale-gas systems: The Mississippian Barnett Shale of north-central Texas as one model for thermogenic shale-gas assessment

Нетрадиционные системы сланцевого газа: миссисипская свита Барнетт в северо-центральной части Техаса как одна из моделей оценки термогенного сланцевого газа
Daniel M. Jarvie, Ronald J. Hill, Tim E. Ruble, Richard M. Pollastro
2007-03-14

Barnett ShaleFort Worth Basingas-in-place estimationsecondary oil crackingthermogenic shale gas
Abstract Shale-gas resource plays can be distinguished by gas type and system characteristics. The Newark East gas field, located in the Fort Worth Basin, Texas, is defined by thermogenic gas production from low-porosity and low-permeability Barnett Shale. The Barnett Shale gas system, a self-contained source-reservoir system, has generated large amounts of gas in the key productive areas because of various characteristics and processes, including (1) excellent original organic richness and generation potential; (2) primary and secondary cracking of kerogen and retained oil, respectively; (3) retention of oil for cracking to gas by adsorption; (4) porosity resulting from organic matter decomposition; and (5) brittle mineralogical composition. The calculated total gas in place (GIP) based on estimated ultimate recovery that is based on production profiles and operator estimates is about 204 bcf/section (5.78 × 109 m3/1.73 × 104 m3). We estimate that the Barnett Shale has a total generation potential of about 609 bbl of oil equivalent/ac-ft or the equivalent of 3657 mcf/ac-ft (84.0 m3/m3). Assuming a thickness of 350 ft (107 m) and only sufficient hydrogen for partial cracking of retained oil to gas, a total generation potential of 820 bcf/section is estimated. Of this potential, approximately 60% was expelled, and the balance was retained for secondary cracking of oil to gas, if sufficient thermal maturity was reached. Gas storage capacity of the Barnett Shale at typical reservoir pressure, volume, and temperature conditions and 6% porosity shows a maximum storage capacity of 540 mcf/ac-ft or 159 scf/ton.
1
At typical reservoir conditions and 6% porosity, maximum gas storage capacity is estimated at 540 mcf/ac-ft, equivalent to 159 scf/ton.
2
Estimated total gas in place is approximately 204 bcf per section, based on production profiles and operator recovery estimates.
3
High productivity results from excellent organic richness, primary and secondary hydrocarbon cracking, adsorptive oil retention, organic-matter decomposition porosity, and brittle mineralogy.
4
The Barnett Shale constitutes a self-contained thermogenic shale-gas system, serving as a model for unconventional gas-resource assessment.
5
The Barnett Shale has an estimated total generation potential of 820 bcf per section for a 350-foot-thick interval, with about 60% expelled and the remainder potentially retained for secondary oil-to-gas cracking.

The Mississippian Barnett Shale thermogenic shale-gas system in north-central Texas, including the Newark East gas field

The Barnett Shale system’s gas-generation, expulsion, retention, storage capacity, and production-controlling characteristics and processes

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2007-03-14
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Daniel M. Jarvie
Ronald J. Hill
Tim E. Ruble
Richard M. Pollastro
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