Data-driven elastic modeling of organic-rich marl during maturation
Author:
Affiliation:
1. Stanford Rock Physics Laboratory, Stanford University
Publisher
Society of Exploration Geophysicists
Link
https://library.seg.org/doi/pdf/10.1190/segam2018-2995177.1
Reference23 articles.
1. Ahmadov , R. S. , 2011 , Microtextural, elastic and transport properties of source rocks : Ph.D. thesis, Stanford University .
2. Allan , A. M. A. C. Clark , and T. Vanorio , 2015 , Pyrolysis-induced evolution of the elastic and transport properties of the Barnett shale : 85th Annual International Meeting, SEG, Expanded Abstracts, 3068 – 3073 , 10.1190/segam2015-5823323.1 .
3. On the evolution of the elastic properties of organic-rich shale upon pyrolysis-induced thermal maturation
4. Alsinan , S. , 2015 , Characterization of Green River Kerogen upon induced maturation : M.S. thesis, Stanford University .
5. Bandyopadhyay , K. , 2009 , Seismic anisotropy: Geological causes and its implications to reservoir Geophysics : Ph.D. thesis, Stanford University .
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3. Depositional impact on the elastic characteristics of the organic shale reservoir and its seismic application: A case study of the Longmaxi-Wufeng Shale in the Fuling gas field, Sichuan Basin;GEOPHYSICS;2020-03-01
4. Rock physics template of organic-rich marl incorporating the variations in maturity, kerogen content, lithology, and fluid saturation;SEG Technical Program Expanded Abstracts 2019;2019-08-10
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