Analysis of fracture propagation and shale gas production by intensive volume fracturing

被引:0
|
作者
Qingdong Zeng
Long Bo
Lijun Liu
Xuelong Li
Jianmeng Sun
Zhaoqin Huang
Jun Yao
机构
[1] Shandong University of Science and Technology,College of Energy and Mining Engineering
[2] China University of Petroleum (East China),Research Center of Multiphase Flow in Porous Media
[3] Southwest Petroleum University,State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation
[4] Chengdu University of Technology,College of Energy
[5] China University of Petroleum (East China),College of Geoscience
来源
Applied Mathematics and Mechanics | 2023年 / 44卷
关键词
fracture network propagation; shale gas flow; intensive volume fracturing; displacement discontinuity method (DDM); embedded discrete fracture model (EDFM); O346.1; 76R05;
D O I
暂无
中图分类号
学科分类号
摘要
This paper presents an integrated study from fracture propagation modeling to gas flow modeling and a correlation analysis to explore the key controlling factors of intensive volume fracturing. The fracture propagation model takes into account the interaction between hydraulic fracture and natural fracture by means of the displacement discontinuity method (DDM) and the Picard iterative method. The shale gas flow considers multiple transport mechanisms, and the flow in the fracture network is handled by the embedded discrete fracture model (EDFM). A series of numerical simulations are conducted to analyze the effects of the cluster number, stage spacing, stress difference coefficient, and natural fracture distribution on the stimulated fracture area, fractal dimension, and cumulative gas production, and their correlation coefficients are obtained. The results show that the most influential factors to the stimulated fracture area are the stress difference ratio, stage spacing, and natural fracture density, while those to the cumulative gas production are the stress difference ratio, natural fracture density, and cluster number. This indicates that the stress condition dominates the gas production, and employing intensive volume fracturing (by properly increasing the cluster number) is beneficial for improving the final cumulative gas production.
引用
收藏
页码:1385 / 1408
页数:23
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