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Study on microscale pore structure and bedding fracture characteristics of shale oil reservoir.

Authors :
Wei, Jianguang
Zhang, Ao
Li, Jiangtao
Shang, Demiao
Zhou, Xiaofeng
Source :
Energy. Sep2023:Part A, Vol. 278, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Accurately characterizing the cross-scale structure of pores and fractures in shale reservoirs is the theoretical basis for efficient exploration and development of shale oil and gas. In this paper, (a) Based on the research background of different shale maturity and sedimentary characteristics, a three-dimensional model of cross-scale pore-fracture structure is established; (b) Based on a large number of CT characterization data of core pore-fracture structure, the characteristics of pore-fracture development under different geometric dimensions (25 mm and 2 mm) are statistically analyzed; (c) Pore and fracture structures of mixed shale, felsic shale and laminated felsic shale is comparatively studied, and the pore structure and bedding fracture characteristics of shale oil reservoir is revealed. Results show that: (a) for the bedding fracture porosity, felsic shale in Group I is 0.36 %–0.89%; mixed shale in Group I is 0.34 %–0.47%; mixed shale in Group III is 0.12 %–0.86%; mixed shale gravelly dolomite in Group III is 0.13 %–0.15%. (b) Compared with block 1, the laminated felsic shale bedding in block 2 is more developed. (c) CT imaging is based on density difference. Different components of shale samples are distinguished by gray scale. • Considering shale maturity and sedimentary characteristics, a 3D model of cross-scale pore-fracture structure is established. • The characteristics of pore-fracture development under different geometric dimensions are statistically analyzed. • Pore and fracture structures of mixed shale, felsic shale and laminated felsic shale is comparatively studied. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03605442
Volume :
278
Database :
Academic Search Index
Journal :
Energy
Publication Type :
Academic Journal
Accession number :
164379866
Full Text :
https://doi.org/10.1016/j.energy.2023.127829