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      李茜,男,湖北孝感人,1996年8月生,工学博士,博士毕业于中国石油勘探开发研究院矿产普查与勘探专业,硕士导师朱光有教授、博士导师沈安江教授,主要研究方向为同位素地球化学和石油地质学,发表论文35篇,参与中国石油集团重大项目2项,国家重点基金2项,荣获“北京市优秀毕业生”,“王涛英才博士奖学金”,“孙越崎优秀学生奖金”,“绿色矿山科学技术奖一等奖”,“全国发明展览会发明创新奖金奖”,“第18届北京市...
李茜
Paper Publications
Classification, controlling factors, and multi-scale characterization techniques in shale reservoir pores: A comprehensive review
Release time:2025-05-24 Hits:
DOI number:
10.1016/j.jgsce.2025.205662
Journal:
Gas Science and Engineering
Key Words:
Shale reservoir,Pore classification,Influencing factors,Multi-scale characterization
Abstract:
The size, distribution, and connectivity of pores play a critical role in determining the characteristics and formation of shale reservoirs. Therefore, pore analysis is critical for the reservoir evaluation. Considering the lack of a comprehensive overview, this paper reviews advancements in pore classification schemes, the factors and mechanisms controlling pore occur, and multi-scale characterization methods. We present an integrated analysis of pore classifications based on various criteria, including pore size, occurrence, connectivity, genesis, distribution, morphology, and their relationship with pore fluids. Thermal maturity, organic matter abundance, mineral composition, diagenesis, and tectonic processes are identified as key geological factors that govern pore formation and development. This study also highlights the evolution of experimental techniques, which have greatly enhanced the ability to characterize shale pores accurately. However, a unified classification system for shale reservoir pores is still lacking. A precise quantitative analysis of the influence of each geological factors on shale pore development remains absent. Each pore characterization method, while offering distinct advantages, also has its own limitations in terms of range and accuracy. When integrating multiple methods for comprehensive shale reservoir characterization, issues like poor data compatibility and difficulties in integration still exist. Future research should prioritize the standardization of shale pore classification, the quantitative assessment of geological factors influencing pore development, and the establishment of a comprehensive pore characterization framework and set of standards. This paper seeks to advance the understanding of shale reservoir pores, providing valuable insights and references for subsequent studies.
Volume:
140
Page Number:
205662
ISSN No.:
2949-9089
Included Journals:
SCI

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