Study on mechanical properties and microscopic damage mechanism of tight sandstone reservoir under uniaxial compression

被引:0
|
作者
Huang, Jin [1 ]
Xing, Jiacheng [2 ]
Liao, Xingchuan [1 ,3 ]
Ren, Yixing [3 ]
Ding, Keer [3 ]
Tan, Jin [3 ]
机构
[1] Southwest Univ Sci & Technol, Environm & Resources Inst, Mianyang, Sichuan, Peoples R China
[2] Downhole Operat Co, CNPC Xibu Drilling Engn Co Ltd, Karamay, Xinjiang, Peoples R China
[3] Southwest Petr Univ, Sch Civil Engn & Geomat, Chengdu, Sichuan, Peoples R China
关键词
tight reservoirs; uniaxial compression; damage mechanism; particle discrete elements; hydraulic fracturing; MODEL;
D O I
10.3389/fenrg.2023.1272086
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Due to the characteristics of low porosity, low permeability and serious anisotropy in tight reservoirs, it is difficult for conventional hydraulic fracturing theory to accurately guide the efficient exploitation of tight reservoirs. It has been shown that the reservoir rock mechanical properties are the key factor impacting the fracturing effect, but the current research on the damage properties of tight reservoir rocks is not comprehensive enough. Therefore, in order to improve the fracturing theory of tight reservoirs, this paper first explores the evolution mechanism of rock fractures through uniaxial compression experiments. Secondly, based on the particle discrete element method, the damage and failure process of tight sandstone under uniaxial compression is simulated from the microscopic scale. The test results show that the rock failure mainly includes tensile failure, shear failure, and tensile-shear failure; Internal micro-fractures will interconnect during rock destruction to form primary fractures through the rock mass, while secondary micro-fractures will also be generated. The numerical simulation results show that when the rock is subjected to tensile-shear failure, with the increase of load, tensile micro-fractures are mainly produced in the specimen, accompanied by a few shear fractures. Under the joint action of shear failure and tensile failure, V-shaped cracks are easily formed in rock. The tensile strength of rock is mainly affected by the microscopic tensile strength, and the cohesive force, modulus, stiffness ratio, friction coefficient and friction angle have significant effects on the compressive strength of rock. Therefore, a reasonable choice of microscopic parameters can realistically simulate the compression-tensile strength ratio of the rock. The research results of this paper can provide the theoretical basis of rock mechanics for the efficient exploitation of tight reservoirs.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Study on the Meso-Energy Damage Evolution Mechanism of Single-Joint Sandstone under Uniaxial and Biaxial Compression
    Wang, Gui-Lin
    Cao, Tian-Ci
    Sun, Fan
    Wen, Xing-Xiang
    Zhang, Liang
    ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, 2021, 2021
  • [22] Experimental Study on Mechanical Properties and Cracking Behavior of Pre-cracked Sandstone Specimens Under Uniaxial Compression
    Yin Q.
    Jing H.-W.
    Zhu T.-T.
    Indian Geotechnical Journal, 2017, 47 (03) : 265 - 279
  • [23] Microscopic Damage Mechanism of Coal Sample Under Uniaxial Compression Test Under Different Creep Pre-damage
    Yang, Huaqing
    Liu, Weizhen
    GEOTECHNICAL AND GEOLOGICAL ENGINEERING, 2020, 38 (02) : 1675 - 1687
  • [24] Microscopic Damage Mechanism of Coal Sample Under Uniaxial Compression Test Under Different Creep Pre-damage
    Huaqing Yang
    Weizhen Liu
    Geotechnical and Geological Engineering, 2020, 38 : 1675 - 1687
  • [25] Experimental Study on Dynamic and Static Rock Mechanical Properties of Tight Sandstone Gas Reservoir
    Shiqi Yin
    Huaping Mei
    Xingan Xu
    Chemistry and Technology of Fuels and Oils, 2023, 59 : 561 - 568
  • [26] Experimental Study on Dynamic and Static Rock Mechanical Properties of Tight Sandstone Gas Reservoir
    Yin, Shiqi
    Mei, Huaping
    Xu, Xingan
    CHEMISTRY AND TECHNOLOGY OF FUELS AND OILS, 2023, 59 (03) : 561 - 568
  • [27] Mechanical properties and fracture evolution of sandstone specimens containing different inclusions under uniaxial compression
    Zhu, Quanqi
    Li, Diyuan
    Han, Zhenyu
    Li, Xibing
    Zhou, Zilong
    INTERNATIONAL JOURNAL OF ROCK MECHANICS AND MINING SCIENCES, 2019, 115 (33-47) : 33 - 47
  • [28] Mechanical behaviours of sandstone containing intersecting fissures under uniaxial compression
    Xiong, Fei
    Liu, Xinrong
    Zhou, Xiaohan
    Lin, Guangyi
    Liu, Dongshuang
    Han, Yafeng
    Xu, Bin
    He, Chunmei
    Wang, Zijuan
    JOURNAL OF ROCK MECHANICS AND GEOTECHNICAL ENGINEERING, 2022, 14 (02) : 460 - 476
  • [29] Microscopic Failure Mechanism Analysis of Sandstone Under Triaxial Compression
    Zhang, Guibin
    Zhang, Wenquan
    Wang, Hailong
    Jia, Chuanyang
    Liu, Keming
    Yu, Xianbin
    Song, Xiaoyuan
    GEOTECHNICAL AND GEOLOGICAL ENGINEERING, 2019, 37 (02) : 683 - 690
  • [30] Mechanical behaviours of sandstone containing intersecting fissures under uniaxial compression
    Fei Xiong
    Xinrong Liu
    Xiaohan Zhou
    Guangyi Lin
    Dongshuang Liu
    Yafeng Han
    Bin Xu
    Chunmei He
    Zijuan Wang
    Journal of Rock Mechanics and Geotechnical Engineering, 2022, 14 (02) : 460 - 476