Integration of Dynamic Microseismic Data With a True 3D Modeling of Hydraulic-Fracture Propagation in the Vaca Muerta Shale

被引:24
|
作者
Haddad, Mandi [1 ]
Du, Jing [2 ]
Vidal-Gilbert, Sandrine [3 ]
机构
[1] Univ Texas Austin, Petr Engn, Austin, TX 78712 USA
[2] Total E&P, Microseism Res & Dev Unconvent Dev Links Geomech, Res & Technol Houston, Houston, TX USA
[3] Total E&P, Integrated Modeling Shale Dev, Courbevoie, France
来源
SPE JOURNAL | 2017年 / 22卷 / 06期
关键词
DISCONTINUITIES; SIMULATION;
D O I
10.2118/179164-PA
中图分类号
TE [石油、天然气工业];
学科分类号
0820 ;
摘要
Microseismic mapping during the hydraulic-fracturing processes in the Vaca Muerta (VM) Shale in Argentina shows a group of microseismic events occurring at shallower depth and at later injection time, and they clearly deviate from the growing planar hydraulic fracture. This spatial and temporal behavior of these shallow microseismic events incurs some questions regarding the nature of these events and their connectivity to the hydraulic fracture. To answer these questions, in this article, we investigate these phenomena by use of a true 3D fracture-propagation-modeling tool along with statistical analysis on the properties of microseismic events. First, we propose a novel technique in Abaqus incorporating fracture intersections in true 3D hydraulic-fracture-propagation simulations by use of a pore-pressure cohesive zone model (CZM), which is validated by comparing our numerical results with the Khristianovic-Geertsma-de Klerk (KGD) solution (Khristianovic and Zheltov 1955; Geertsma and de Klerk 1969). The simulations fully couple slot flow in the fracture with poroelasticity in the matrix and continuum-based leakoff on the fracture walls, and honor the fracture-tip effects in quasibrittle shales. By use of this model, we quantify vertical-natural-fracture activation and fluid infiltration depending on reservoir depth, fracturing-fluid viscosity, mechanical properties of the natural-fracture cohesive layer, natural-fracture conductivity, and horizontal stress contrast. The modeling results demonstrate this natural-fracture activation in coincidence with the hydraulic-fracture-growth complexities at the intersection, such as height throttling, sharp aperture reduction after the intersection, and multibranching at various heights and directions. Finally, we investigate the hydraulic-fracture intersection with a natural fracture in the multilayer VM Shale. We infer the natural-fracture location and orientation from the microseismic-events map and formation microimager log in a nearby vertical well, respectively. We integrate the other field information such as mechanical, geological, and operational data to provide a realistic hydraulic-fracturing simulation in the presence of a natural fracture. Our 3D fracturing simulations equipped with the new fracture-intersection model rigorously simulate the growth of a realistic hydraulic-connection path toward the natural fracture at shallower depths, which was in agreement with our microseismic observations.
引用
收藏
页码:1714 / 1738
页数:25
相关论文
共 50 条
  • [21] DEVELOPING DATA SETS FOR 3D FRACTURE PROPAGATION MODELS
    HOLDITCH, SA
    RAHIM, Z
    SPE PRODUCTION & FACILITIES, 1994, 9 (04): : 257 - 261
  • [22] TRUE 3D ANIMATION FOR DISPLAYING VLSI MODELING DATA
    PAPATHOMAS, TV
    JULESZ, B
    CHODROW, SE
    IEEE COMPUTER GRAPHICS AND APPLICATIONS, 1988, 8 (01) : 6 - 9
  • [23] A 3-D hydraulic fracture propagation model applied for shale gas reservoirs with multiple bedding planes
    Xie, Jun
    Tang, Jizhou
    Yong, Rui
    Fan, Yu
    Zuo, Lihua
    Chen, Xing
    Li, Yuwei
    ENGINEERING FRACTURE MECHANICS, 2020, 228
  • [24] Brief: Modem transmission of data for 3D fracture modeling
    Chaudhary, SA
    Rodgerson, JL
    Martinez, AD
    Alexander, MC
    JOURNAL OF PETROLEUM TECHNOLOGY, 1996, 48 (06): : 498 - +
  • [25] 3D NUMERICAL INVESTIGATION OF HYDRAULIC FRACTURE NETWORK PROPAGATION IN A SHALE GAS RESERVOIR WITH NATURAL AND LAYERED DISCONTINUITIES UNDER FULLY HYDROMECHANICAL COUPLING
    Feng, Mingjie
    Li, Honglian
    Liu, Hejuan
    Zhou, Lei
    Chen, Junchao
    Ren, Xiangyan
    JOURNAL OF POROUS MEDIA, 2021, 24 (12) : 51 - 75
  • [26] A new pseudo 3D hydraulic fracture propagation model for sandstone reservoirs considering fracture penetrating height
    Zhao, Wenwei
    Ji, Guofa
    Li, Kuidong
    Liu, Wei
    Xiong, Likun
    Xiao, Jialin
    ENGINEERING FRACTURE MECHANICS, 2022, 264
  • [27] 3D geostatistical modeling of fracture system in a granitic massif to characterize hydraulic properties and fracture distribution
    Koike, Katsuaki
    Kubo, Taiki
    Liu, Chunxue
    Masoud, Alaa
    Amano, Kenji
    Kurihara, Arata
    Matsuoka, Toshiyuki
    Lanyon, Bill
    TECTONOPHYSICS, 2015, 660 : 1 - 16
  • [28] A 3D peridynamic fluid-solid coupling damage model of hydraulic fracture propagation
    Li, Yalong
    Hu, Zhiming
    Qiu, Zhipeng
    Qiu, Yafeng
    ENERGY SCIENCE & ENGINEERING, 2023, 11 (01) : 178 - 191
  • [29] Establishment of mathematical model for hydraulic fracture 3D propagation and determination of proppant injection schedule
    Liu, Shuzhi
    Ren, Shuquan
    Xinan Shiyou Xueyuan Xuebao/Journal of Southwestern Petroleum Institute, 1996, 18 (04): : 28 - 35
  • [30] Investigation of the Vertical Propagation Pattern of the 3D Hydraulic Fracture under the Influence of Interlayer Heterogeneity
    Wan, Bingqian
    Liu, Yancheng
    Zhang, Bo
    Luo, Shuai
    Wei, Leipeng
    Li, Litao
    He, Jiang
    PROCESSES, 2022, 10 (11)