Triple medium physical model of post fracturing high-rank coal reservoir in southern Qinshui Basin

被引:0
|
作者
Shiqi Liu
Shuxun Sang
Qipeng Zhu
Jiefang Zhang
Hefeng Gao
Huihu Liu
Lixing Lin
机构
[1] China University of Mining and Technology,School of Safety Engineering
[2] China University of Mining and Technology,Key Laboratory of Coalbed Methane Resources and Reservoir Formation Process, Ministry of Education, School of Mineral Resource and Geoscience
[3] Anhui University of Science and Technology,School of Geoscience and Environment
[4] University of Regina,Faculty of Engineering and Applied Science
来源
Journal of Earth Science | 2015年 / 26卷
关键词
triple medium physical model; high-rank coal reservoir; hydraulic fracture; seepage; southern Qinshui Basin;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, influences on the reservoir permeability, the reservoir architecture and the fluid flow pattern caused by hydraulic fracturing are analyzed. Based on the structure and production fluid flow model of post fracturing high-rank coal reservoir, Warren-Root Model is improved. A new physical model that is more suitable for post fracturing high-rank coal reservoir is established. The results show that the width, the flow conductivity and the permeability of hydraulic fractures are much larger than natural fractures in coal bed reservoir. Hydraulic fracture changes the flow pattern of gas and flow channel to wellbore, thus should be treated as an independent medium. Warrant-Root Model has some limitations and can’t give a comprehensive interpretation of seepage mechanism in post fracturing high-rank coal reservoir. Modified Warrant-Root Model simplifies coal bed reservoir to an ideal system with hydraulic fracture, orthogonal macroscopic fracture and cuboid matrix. Hydraulic fracture is double wing, vertical and symmetric to wellbore. Coal bed reservoir is divided into cuboids by hydraulic fracture and further by macroscopic fractures. Flow behaviors in coal bed reservoir are simplified to three step flows of gas and two step flows of water. The swap mode of methane between coal matrix and macroscopic fractures is pseudo steady fluid channeling. The flow behaviors of methane to wellbore no longer follow Darcy’s Law and are mainly affected by inertia force. The flow pattern of water follows Darcy’s Law. The new physical model is more suitable for post fracturing high-rank coal reservoir.
引用
收藏
页码:407 / 415
页数:8
相关论文
共 50 条
  • [41] Experimental research on permeability variation from the process of hydraulic fracturing of high-rank coal
    Beibei Zhang
    Bo Li
    Dengwen Zhang
    Jiangjiang Li
    Environmental Earth Sciences, 2020, 79
  • [42] Coupling model of stress-dependent permeability in high-rank coal reservoir and its control mechanism
    Meng Zhao-Ping
    Hou Quan-Lin
    CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2013, 56 (02): : 667 - 675
  • [43] Experimental simulation of the hydraulic fracture propagation in an anthracite coal reservoir in the southern Qinshui basin, China
    Liu, Jun
    Yao, Yanbin
    Liu, Dameng
    Xu, Lulu
    Elsworth, Derek
    Huang, Saipeng
    Luo, Wanjing
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2018, 168 : 400 - 408
  • [44] Research on coalbed methane microscopic seepage characteristics of medium and high-rank coal
    Fan, Yongpeng
    Shu, Longyong
    Huo, Zhonggang
    Hao, Jinwei
    Li, Yang
    Guo, Xiaoyang
    ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS, 2021,
  • [45] Fracture network characterization of high-rank coal and its control mechanism on reservoir permeability
    Liu, Yanhao
    Xiong, Zuqiang
    Zhang, Xiaodong
    FRONTIERS IN EARTH SCIENCE, 2022, 10
  • [46] Physical Properties of High-Rank Coal Reservoirs and the Impact on Coalbed Methane Production
    Liu, Gang
    Tang, Runchi
    Mu, Chi
    Liu, Xing
    Zhang, Junjian
    PROCESSES, 2024, 12 (08)
  • [48] Researches on hydro-frac induced reservoir damage to anthracite coal seams of southern Qinshui basin
    Li, Guofu
    Meng, Zhaoping
    Zhang, Suian
    Progress in Mining Science and Safety Technology, Pts A and B, 2007, : 2805 - 2808
  • [49] Experimental study on the velocity sensitivity of coal reservoir during coalbed methane drainage in southern Qinshui Basin
    Liu, Huihu
    Sang, Shuxun
    Xue, Junhua
    Lan, Tianhe
    Xu, Hongje
    Ren, Bo
    Cheng, Qiao
    ENERGY EXPLORATION & EXPLOITATION, 2018, 36 (06) : 1593 - 1608
  • [50] Pore structure characteristics and fractal structure evaluation of medium- and high-rank coal
    Yuan, Yuan
    Cai, Feng
    Yang, Lingling
    ENERGY EXPLORATION & EXPLOITATION, 2021, 40 (01) : 328 - 342