Diagenetic–Porosity Evolution and Reservoir Evaluation in Multiprovenance Tight Sandstones: Insight from the Lower Shihezi Formation in Hangjinqi Area, Northern Ordos Basin

Author:

Sun Xiao12,Tan Xianfeng3ORCID,Tang Yuanlan4ORCID,Tian Jingchun12,Lei Tao2,Wang Jia3,Luo Long3,Zhu Chaobin3,Mo Songyu3,Zhou Huanhuan3ORCID,Lai Fuqiang3

Affiliation:

1. 1 Institute of Sedimentary Geology Chengdu University of Technology Chengdu Sichuan 610059 China cdut.edu.cn

2. 2 Exploration and Development Research Institute SINOPEC North China Company Zhengzhou Henan 450006 China sinopec.com

3. 3 Chongqing Key Laboratory of Complex Oil and Gas Exploration and Development Chongqing University of Science and Technology Chongqing China cqust.cn

4. 4 College of Earth Sciences China University of Geoscience Wuhan 430074 China cug.edu.cn

Abstract

Abstract The reservoir property of tight sandstones is closely related to the provenance and diagenesis, and multiprovenance system and complex diagenesis are developed in Hangjinqi area. However, the relationship between provenance, diagenesis, and physical characteristics of tight reservoirs in Hangjinqi area has not yet been reported. The Middle Permian Lower Shihezi Formation is one of the most important tight gas sandstone reservoirs in the Hangjinqi area of Ordos Basin. This research compared the diagenesis-porosity quantitative evolution mechanisms of Lower Shihezi Formation sandstones from various provenances in the Hangjinqi area using thin-section descriptions, cathodoluminescence imaging, X-ray diffraction (XRD), scanning electron microscopy (SEM), and homogenization temperature of fluid inclusions, along with general physical data and high-pressure mercury intrusion (HPMI) data. The sandstones mainly comprise quartzarenite, sublitharenite, and litharenite with low porosity and low permeability and display obvious zonation in the content of detrital components as a result of multiprovenance. Pore space of those sandstone mainly consists of primary pores, secondary pores, and microfractures, but their proportion varies in different provenances. According to HPMI, the order of the pore-throat radius from largest to smallest is central provenance, eastern provenance, and western provenance, which is consistent with the change tend of porosity (middle part>northern part>western part) in Hangjinqi region. The diagenetic evolution path of those sandstones is comparable, with compaction, cementation, dissolution, and fracture development. The central provenance has the best reservoir quality, followed by the eastern provenance and the western provenance, and this variation due to the diverse diagenesis (diagenetic stage and intensity) of different provenances. These findings reveal that the variations in detrital composition and structure caused by different provenances are the material basis of reservoir differentiation, and the main rationale for reservoir differentiation is varying degrees of diagenesis during burial process.

Funder

Chongqing University of Science and Technology

Science and Technology Research Project of Chongqing Education Commission

Natural Science Foundation of Chongqing

National Natural Science Foundation of China

Exploration and Development Research Institute of North China Branch Company of Sinopec

Publisher

GeoScienceWorld

Subject

Geology

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