Numerical Simulation of a Horizontal Well With Multi-Stage Oval Hydraulic Fractures in Tight Oil Reservoir Based on an Embedded Discrete Fracture Model

被引:3
|
作者
Yang, Zhi-dong [1 ,2 ]
Wang, Yong [2 ]
Zhang, Xu-yang [2 ]
Qin, Ming [3 ]
Su, Shao-wen [2 ]
Yao, Zhen-hua [3 ]
Liu, Lingfu [1 ]
机构
[1] Southwest Petr Univ, State Key Lab Oil & Gas Reservoir Geol & Exploit, Chengdu, Peoples R China
[2] PetroChina Xinjiang Oilfield Co, Baikouquan Oil Prod Plant, Karamay, Peoples R China
[3] Petro China Xinjiang Oilfield Co, Explorat & Dev Res Inst, Karamay, Peoples R China
来源
关键词
numerical simulation; flow in porous media; tight oil reservoirs; embedded discrete fracture model; Multi-stage fractured horizontal well; MULTIPHASE FLOW; FINITE-ELEMENT; PRESSURE; PERMEABILITY; GALERKIN; MEDIA;
D O I
10.3389/fenrg.2020.601107
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
Tight oil is a kind of unconventional oil and gas resource with great development potential. Due to the unconventional characteristics of low porosity and low permeability in tight oil reservoirs, single wells generally have no natural productivity, and industrial development is usually conducted in combination with horizontal wells and hydraulic fracturing techniques. To capture the flow behavior affected by fractures with complex geometry and interaction, we adopted embedded discrete fracture models (EDFMs) to simulate the development of fractured reservoirs. Compared with the traditional discrete fracture models (DFMs), the embedded discrete fracture models (EDFMs) can not only accurately represent the fracture geometry but also do not generate a large number of refine grids around fractures and intersections of fractures, which shows the high computational efficiency. To be more consistent with the real characteristic of the reservoir and reflect the advantage of EDFMs on modeling complex fractures, in this work, the hydraulic fractures are set as oval shape, and we adopted 3-dimensional oil-gas two-phase model considering capillary forces and gravity effects. We developed an EDFM simulator, which is verified by using the fine grid method (FGM). Finally, we simulated and studied the development of tight oil without and with random natural fractures (NFs). In our simulation, the pressure varies widely from the beginning to the end of the development. In real situation, tight oil reservoirs have high initial pressure and adopt step-down bottom hole pressure development strategy where the bottom hole pressure of the last stage is below the bubble point pressure and the free gas appears in the reservoir. Modeling studies indicate that the geometry of fracture has a great influence on the pressure and saturation profiles in the area near the fractures, and dissolved gas flooding contributes to the development of tight oil, and NFs can significantly improve production, while the effect of the stress sensitivity coefficient of NFs on production is more significant in the later stage of production with lower reservoir pressure.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Simulation of a multistage fractured horizontal well in a tight oil reservoir using an embedded discrete fracture model
    Zhao, Yu-long
    Liu, Ling-fu
    Zhang, Lie-hui
    Zhang, Xu-Yang
    Li, Bo
    ENERGY SCIENCE & ENGINEERING, 2019, 7 (05) : 1485 - 1503
  • [2] An efficient three-dimensional embedded discrete fracture model for production simulation of multi-stage fractured horizontal well
    Rao, Xiang
    Cheng, Linsong
    Cao, Renyi
    Jia, Pin
    Wu Yonghui
    He, Yimin
    Chen, Ying
    ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 2019, 106 : 473 - 492
  • [3] Optimization of multistage fractured horizontal well in tight oil based on embedded discrete fracture model
    Xu, Shiqian
    Feng, Qihong
    Wang, Sen
    Javadpour, Farzam
    Li, Yuyao
    COMPUTERS & CHEMICAL ENGINEERING, 2018, 117 : 291 - 308
  • [4] Modeling tracer flowback behaviour for a multifractured horizontal well in a tight oil reservoir using the embedded discrete fracture model
    Liu, Jinju
    Jiang, Liwu
    Liu, Tongjing
    Yang, Daoyong
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2022, 212
  • [5] Numerical simulation study on propagation mechanism of fractures in tight oil vertical wells with multi-stage temporary plugging at the fracture mouth
    Tao, Zhiheng
    Liu, Xiongfei
    Zhang, Kaixuan
    Zhu, Haiyan
    Wang, Daobing
    Zhou, Fujian
    Yu, Bo
    PHYSICS OF FLUIDS, 2024, 36 (07)
  • [6] Simultaneous numerical simulation of the hydraulic fractures geometry in multi-stage fracturing for horizontal shale gas wells
    Prieto, M.
    Aristizabal, J. A.
    Pradilla, D.
    Gomez, J. M.
    JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING, 2022, 102
  • [7] Hierarchical optimization of well pattern parameters in multi-stage fractured horizontal well for tight oil
    Feng Q.
    Xu S.
    Ren G.
    Wang S.
    Li Y.
    Shiyou Xuebao/Acta Petrolei Sinica, 2019, 40 (07): : 830 - 838
  • [8] Numerical simulation of multi-stage fracturing and optimization of perforation in a horizontal well
    Zhao Jinzhou
    Chen Xiyu
    Li Yongming
    Fu Bin
    Xu Wenjun
    PETROLEUM EXPLORATION AND DEVELOPMENT, 2017, 44 (01) : 119 - 126
  • [9] Analysis of seepage mechanism and productivity model of multi-stage fractured horizontal well in tight sandstone gas reservoir
    He, Jie
    Niu, Xiaobing
    Meng, Qingchun
    Guo, Fajun
    Wang, Hongmei
    Liu, Yicang
    Wang, Lianguo
    Kang, Yongmei
    Hu, Kelai
    Zhu, Yushuang
    PETROLEUM SCIENCE AND TECHNOLOGY, 2023, 41 (21) : 2055 - 2070
  • [10] Flow model of a multi-stage hydraulic fractured horizontal well based on tree-shaped fractal fracture networks
    Tan, Xiao-Hua
    Jiang, Li
    Li, Xiao-Ping
    Zhang, Ben-Jian
    Li, Xu-Cheng
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2018, 169 : 494 - 503