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页岩数字岩心重构与水力压裂数值试验

姚明宇 李天娇 丛文雨 师耀利 夏英杰 唐春安

工程科学学报2024,Vol.46Issue(3):556-566,11.
工程科学学报2024,Vol.46Issue(3):556-566,11.DOI:10.13374/j.issn2095-9389.2023.05.10.004

页岩数字岩心重构与水力压裂数值试验

Reconstruction of the shale digital core and numerical test of hydraulic fracturing

姚明宇 1李天娇 1丛文雨 1师耀利 2夏英杰 1唐春安1

作者信息

  • 1. 大连理工大学建设工程学院,大连 116024
  • 2. 中国石油新疆油田公司勘探开发研究院,克拉玛依 834000
  • 折叠

摘要

Abstract

Shale oil reservoirs are typical unconventional oil and gas reservoirs with complex mineral composition.The types and distribution of mineral particles have a considerable effect on hydraulic fracture propagation in shale oil reservoirs.The research object is a continental shale oil reservoir in the Lucaogou Formation of Jimsar Sag.To realize an intensive study of the hydraulic fracture propagation law of deep shale oil reservoirs under hydraulic fracturing,digital rock cores were constructed based on the scanning images of 20 groups of shale samples within the depth range of 3684.62-3705.70 m.In addition,hydraulic fracturing numerical experiments of the digital rock cores were performed.Mineral composition and distribution were characterized using scanning electron microscopy and energy spectrum analysis.Realistic failure process analysis based on the finite element method was employed to construct the digital rock core and model the hydraulic fracturing process.The breakout pressure and hydraulic fracture geometry of each model were analyzed.Results reveal that mineral composition and porosity have a considerable effect on the breakdown pressure,hydraulic fracture initiation and extension,and complexity of hydraulic fractures in the shale oil reservoir.The breakdown pressure increases with increasing brittle mineral content(quartz,calcite,and dolomite)and exhibits a more evident linear relation with quartz content due to the high strength of quartz.Furthermore,the breakdown pressure decreases with increasing porosity.Pores weaken the strength of shale and provide seepage shortcuts for fracturing fluid.The initiation and extension of hydraulic fractures are primarily affected by in situ stress and pore distribution.Hydraulic fractures start from the pore near perforation,connect independent pore regions,and propagate along the connected pore regions.In areas far from the pore regions,hydraulic fractures extend along the directions perpendicular to the minimum principal stress.The complexity of hydraulic fractures in shale increases with quartz content and porosity and is also affected by mineral distribution.When hydraulic fractures come into contact with quartz minerals,they extend through or bypass them.When bypassing quartz minerals,hydraulic fractures form branched fractures,and the complexity of fracture geometry increases.When the quartz content or porosity is high and displays a large area of connected distribution,the expansion of hydraulic fractures is hindered.Large particles of quartz mineral dramatically increase the brittleness and breakdown pressure of the rock,inhibiting the formation of a complex fracture network.The connected pores form high-density lamellation,which results in a large amount of filtration of fracturing fluid,thereby leading to low stimulated efficiency and permeability enhancement.

关键词

微观矿物组分/数字岩心/水力压裂/页岩油储层/真实破裂过程分析

Key words

microscopic mineral components/digital rock core/hydraulic fracturing/shale oil reservoir/realistic failure process analysis

分类

能源科技

引用本文复制引用

姚明宇,李天娇,丛文雨,师耀利,夏英杰,唐春安..页岩数字岩心重构与水力压裂数值试验[J].工程科学学报,2024,46(3):556-566,11.

基金项目

国家自然科学基金资助项目(42202305) (42202305)

中国石油重大科技专项(2019E-26) (2019E-26)

工程科学学报

OA北大核心CSTPCD

2095-9389

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