Molecular simulation calculation method for shale gas adsorption in realistic shale model

被引:8
|
作者
Liu, Jianyi [1 ]
Wen, Yimin [1 ,4 ]
Yuan, Hua [1 ]
Jiang, Lu [1 ]
Liu, Zhibin [1 ]
Chen, Yizhao [2 ]
Shui, Zhengwei [3 ]
机构
[1] Southwest Petr Univ, State Key Lab Oil & Gas Reservoir Geol & Exploitat, Chengdu 610500, Peoples R China
[2] Southwest Oil & Gas Field Co, Shale Gas Res Inst, Chengdu 610017, Peoples R China
[3] Southwest Petr Univ, Coll Sci, Chengdu 610500, Peoples R China
[4] Southwest Petr Univ, Sch Oil & Gas Engn, Chengdu, Peoples R China
来源
关键词
Shale gas; Molecular simulation; Clay minerals; Adsorption; METHANE ADSORPTION; THERMODYNAMIC PROPERTIES; KEROGEN INFLUENCE; GCMC SIMULATIONS; CARBON-DIOXIDE; PORE STRUCTURE; X-RAY; CAPACITY; CH4; KAOLINITE;
D O I
10.1016/j.geoen.2023.211440
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
An accurate evaluation of the adsorption capacity of shale formations relies on a quantitative determination of the capacity for shale gas adsorption. However, the molecular simulations at the microscopic scale performed by most research institutes do not provide an accurate reflection of the results of macroscopic experiments. In addition, due to the multi-scale pore structure and non-uniform rock composition, the adsorption micro -mechanisms of shale reservoirs are complex and diverse, and related theories still need to be studied and per-fected. This research used X-ray diffraction and total organic carbon experimental data to propose a shale mo-lecular model based on data from actual shale formations. The proposed model considers mineral and organic contents, mineral cell structures, lattice parameters, mineral arrangements, and pore diameters, and it corre-sponds well to actual shale formations. Under temperature and pressure conditions of the shale formation, the established shale molecular model corresponds more closely to actual formation conditions in terms of shale gas adsorption capacity and specific surface area than previous single-mineral models. At the same time, the vari-ation between the adsorption simulation result obtained from the shale molecular model and the result from the adsorption experiment was less than 5%. This further confirms the authenticity and reliability of the constructed shale molecular model. On the basis of shale molecular model, deep shale gas adsorption data at pressures above 30 MPa were predicted. It's show that the adsorption capacity of shale gas approaches the saturated adsorption capacity when the shale formation pressure reaches 75 MPa.
引用
收藏
页数:16
相关论文
共 50 条
  • [31] Molecular Simulation of Methane Adsorption Capacity of Matrix Components of Shale
    Liu, Xiaoxue
    Jiang, Zhenxue
    Liu, Shibin
    Zhang, Bo
    Zhang, Kun
    Tang, Xianglu
    [J]. NANOMATERIALS, 2022, 12 (22)
  • [32] Molecular simulation of methane adsorption behavior on clay minerals in shale
    Lü, Zhaolan
    Ning, Zhengfu
    Wang, Qing
    Huang, Liang
    Meng, Han
    Yu, Xiongfei
    Qin, Huibo
    [J]. Meitan Xuebao/Journal of the China Coal Society, 2019, 44 (10): : 3117 - 3124
  • [33] Molecular Simulation Study on Methane Adsorption in Amorphous Shale Structure
    Mohd Aji, Aminah Qayyimah
    Mohshim, Dzeti Farhah
    Maulianda, Belladonna
    El-Raeis, Khaled Abdalla
    [J]. MINERALS, 2023, 13 (02)
  • [34] Molecular Simulation of Oil Mixture Adsorption Character in Shale System
    Tian, Shansi
    Xue, Haitao
    Lu, Shuangfang
    Zeng, Fang
    Xue, Qingzhong
    Chen, Guohui
    Wu, Chunzheng
    Zhang, Sansheng
    [J]. JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2017, 17 (09) : 6198 - 6209
  • [35] Adsorption behaviors of shale oil in kerogen slit by molecular simulation
    Yang, Yongfei
    Liu, Jie
    Yao, Jun
    Kou, Jianlong
    Li, Zheng
    Wu, Tianhao
    Zhang, Kai
    Zhang, Lei
    Sun, Hai
    [J]. CHEMICAL ENGINEERING JOURNAL, 2020, 387
  • [36] Shale gas adsorption and desorption characteristics and its effects on shale permeability
    Guo, Wei
    Hu, Zhiming
    Zhang, Xiaowei
    Yu, Rongze
    Wang, Li
    [J]. ENERGY EXPLORATION & EXPLOITATION, 2017, 35 (04) : 463 - 481
  • [37] Numerical Simulation Based on the Canister Test for Shale Gas Content Calculation
    Kang, Shujuan
    Lu, Le
    Tian, Hui
    Yang, Yunfeng
    Jiang, Chengyang
    Ma, Qisheng
    [J]. ENERGIES, 2021, 14 (20)
  • [38] A Prediction Model for Methane Adsorption Capacity in Shale Gas Reservoirs
    Zou, Jie
    Rezaee, Reza
    [J]. ENERGIES, 2019, 12 (02):
  • [39] Rock physics model for shale gas reservoirs with nanopore adsorption
    Yin, Linjie
    Yin, Xingyao
    Li, Kun
    [J]. JOURNAL OF GEOPHYSICS AND ENGINEERING, 2022, 19 (05) : 1012 - 1027
  • [40] Adsorption behaviour of shale gas reservoirs
    Merey, Sukru
    Sinayuc, Caglar
    [J]. INTERNATIONAL JOURNAL OF OIL GAS AND COAL TECHNOLOGY, 2018, 17 (02) : 172 - 188