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基于VTI介质的页岩储层地应力预测方法及应用研究

何成 程冰洁

物探化探计算技术2024,Vol.46Issue(3):262-271,10.
物探化探计算技术2024,Vol.46Issue(3):262-271,10.DOI:10.3969/j.issn.1001-1749.2024.03.02

基于VTI介质的页岩储层地应力预测方法及应用研究

In-situ stress prediction method and research of shale reservoir based on VTI medium

何成 1程冰洁1

作者信息

  • 1. 成都理工大学 "油气藏地质及开发工程"国家重点实验室,成都 610059||成都理工大学 "地球勘探与信息技术"教育部重点实验室,成都 610059
  • 折叠

摘要

Abstract

In-situ stress plays an important guiding role in shale gas collection and reservoir transformation,and accurate in-situ stress prediction can provide the basis for optimizing fracturing transformation.Longitudinal anisotropy exists in shale reservoirs.In order to improve the accuracy of shale reservoir in-situ stress prediction,shale reservoir is equivalent to trans-versely isotropic media(VTI)model.Combining with equivalent model stiffness matrix parameters,elastic coefficient and structural strain coefficient,a three-dimensional simulation of shale reservoir in-situ stress field and stress difference ratio is carried out to predict the value,stress direction,and stress difference ratio of horizontal principal stress.The relationship be-tween in-situ stress and related parameters of reservoir fractures and gas content is analyzed.The method is applied to the pre-diction of ground stress of the Longmaxi Formation shale reservoir in the test work area.The results show that the prediction results of ground stress based on VTI medium model are more accurate than those based on the isotropic model,and the stress difference in the work area is more significant than that of the whole area.Fracturing modification is more complicated,and forming a better fracture network is difficult.With the increase of horizontal maximum principal stress,the curvature value de-creases,and the gas content decreases.

关键词

页岩储层/VTI介质/地应力/应力差异比/裂缝/含气量

Key words

shale reservoir/VTI medium/in-situ stress/stress difference ratio/fracture/gas content

分类

石油、天然气工程

引用本文复制引用

何成,程冰洁..基于VTI介质的页岩储层地应力预测方法及应用研究[J].物探化探计算技术,2024,46(3):262-271,10.

基金项目

国家自然科学基金面上基金(42074160) (42074160)

物探化探计算技术

OACSTPCD

1001-1749

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