页岩储层构造应力场模拟及裂缝分布预测

W. Ding, Weite Zeng, Ruyue Wang, Kai Jiu, Zhe Wang, Yaxiong Sun, Xinghua Wang
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引用次数: 0

摘要

基于地应力场模拟、单轴和三轴压缩变形试验以及声发射地应力试验,提出了一种基于有限元的页岩储层裂缝预测方法。针对富有机质页岩主要发育张剪裂缝的特点,采用Griffith准则和Coulomb - Mohr准则计算页岩储层张剪裂缝速率。根据张缝和剪切缝占裂缝总数的比例计算页岩储层总裂缝率。该方法已在渝东南地区下志留统龙马溪组页岩储层裂缝分布预测中得到有效应用。该方法为页岩气甜点优选提供了新的思路。模拟结果对页岩气水平井设计和压裂改造方案具有重要的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of tectonic stress field and prediction of fracture distribution in shale reservoir
In this paper, a finite element-based fracture prediction method for shale reservoirs was proposed using geostress field simulations, uniaxial and triaxial compression deformation tests, and acoustic emission geostress tests. Given the characteristics of tensile and shear fractures mainly developed in organic-rich shales, Griffith and Coulomb – Mohr criteria were used to calculate shale reservoirs' tensile and shear fracture rates. Furthermore, the total fracture rate of shale reservoirs was calculated based on the ratio of tension and shear fractures to the total number of fractures. This method has been effectively applied in predicting fracture distribution in the Lower Silurian Longmaxi Formation shale reservoir in southeastern Chongqing, China. This method provides a new way for shale gas sweet spot optimization. The simulation results have a significant reference value for the design of shale gas horizontal wells and fracturing reconstruction programs.
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