岩土力学 ›› 2026, Vol. 47 ›› Issue (7): 2461-2474.doi: 10.16285/j.rsm.2025.0854CSTR: 32223.14.j.rsm.2025.0854

• 岩土工程研究 • 上一篇    下一篇

库车坳陷强挤压地层岩石破裂准则与裂缝发育度评价方法

张辉1, 2, 3, 4,徐珂1, 2, 3, 4,张志镇5,王志民1, 2, 3, 4,钱子维1,郑鹏麟1, 强剑力1,梁景瑞1,张禹1   

  1. 1.中国石油天然气股份有限公司 塔里木油田公司,新疆 库尔勒 841000;2.中国石油天然气集团有限公司 超深层复杂油气藏勘探开发技术研发中心,新疆,库尔勒,841000;3.新疆维吾尔自治区超深层复杂油气藏勘探开发工程研究中心,新疆 库尔勒 841000;4.新疆超深油气重点实验室 新疆 库尔勒 841000;5.中国矿业大学 深地工程智能建造与健康运维全国重点实验室,江苏 徐州 221116
  • 收稿日期:2025-08-09 接受日期:2025-11-13 出版日期:2026-07-13 发布日期:2026-07-15
  • 通讯作者: 张志镇,男,1987年生,博士,教授,博士生导师,主要从事岩石力学与地质力学方面的教学与科研工作。E-mail: zzzcumt@163.com
  • 作者简介:张辉,男,1980年生,博士,教授级高级工程师,主要从事油气田与地质力学方面相关的生产、科研和管理工作。
  • 基金资助:
    国家自然科学基金资助项目(No.12572464,No.52374105);中国石油天然气股份有限公司重大科技专项资助项目(No.2023ZZ14-03)

Rock fracture criteria and evaluation methods for fracture development intensity in the strongly compressed formations of the Kuqa Depression

ZHAGN Hui1, 2, 3, 4, XU Ke1, 2, 3, 4, ZHANG Zhi-zhen5, WANG Zhi-min1, 2, 3, 4, QIAN Zi-wei1, ZHENG Peng-lin1, QIANG Jian-li1, LIANG Jing-rui1, ZHANG Yu1   

  1. 1. Tarim Oilfield Company, China National Petroleum Corporation Limited, Korla, Xinjiang 841000, China; 2. Research and Development Center for Ultra-Deep Complex Reservoir Exploration and Development, China National Petroleum Corporation Limited, Korla, Xinjiang 841000, China; 3. Engineering Research Center for Ultra-deep Complex Reservoir Exploration and Development, Xinjiang Uygur Autonomous Region, Korla, Xinjiang 841000, China; 4. Xinjiang Key Laboratory of Ultra-deep Oil and Gas, Korla, Xinjiang 841000, China; 5. State Key Laboratory of Intelligent Construction and Healthy Operation and Maintenance of Deep Underground Engineering, China University of Mining and Technology, Xuzhou, Jiangsu 221116, China
  • Received:2025-08-09 Accepted:2025-11-13 Online:2026-07-13 Published:2026-07-15
  • Supported by:
    This work was supported by the National Natural Science Foundation of China (12572464, 52374105) and the Major Science and Technology Project of PetroChina Company Limited (2023ZZ14-03).

摘要: 塔里木盆地库车坳陷地层具有显著强挤压特征,岩石裂缝发育度定量评价是制约储层品质分级及压裂改造设计的关键难题。通过地质资料分析、岩石力学试验、破裂准则构建与计算软件开发,提出了一种基于应力状态分析的地层裂缝发育度评价方法。研究表明,库车坳陷深层岩石在强挤压环境下表现出抗压强度高、泊松比低及脆性主导的力学特性,其破裂准则需着重考虑围压效应与中间主应力效应。基于八面体能量理论,建立了涵盖张性微裂缝起裂与摩擦滑移耦合机制的广义破裂准则,提出以相对破裂面张量距离为核心的裂缝发育度四级指标体系,并开发了配套计算软件。以库车坳陷迪北5井和迪探2井侏罗系阿合组地层进行验证,地层裂缝发育度预测结果与成像测井结果较吻合,准确率达80%以上。该方法突破了传统测井技术仅限井筒局部探测的局限,可实现全井段、全生命周期的裂缝动态评价,为超深层油气储层强挤压区改造优化与井壁稳定性控制提供了量化依据。

关键词: 岩石力学, 强挤压地层, 应力状态, 破裂准则, 裂缝发育度

Abstract: To address the challenges in quantitatively evaluating rock fracture evolution and fracture development intensity within the strongly compressed strata of the Kuqa Depression in the Tarim Basin, this study introduces a method for assessing fracture development intensity. This method is grounded in stress state analysis and is realized through a series of rigorous steps, including geological data analysis, rock mechanical testing, formulation of failure criteria, and development of computational software. The research reveals that deep-seated rocks in the Kuqa Depression exhibit high uniaxial compressive strength, low Poisson’s ratio, and brittle-dominated mechanical properties under intense compression. The failure criterion must account for the intermediate principal stress effect and confining pressure dependency. Building on octahedral energy theory, a generalized failure criterion is established, integrating tensile microcrack initiation and frictional slip coupling mechanisms. A four-level index system for fracture development intensity, centered on the relative fracture surface tensor distance, is proposed, along with supporting computational software. Validation using logging and core data from the Jurassic Ahe Formation in Wells DB5 and DT2 in the Kuqa Depression demonstrates a predictive accuracy exceeding 80% for fracture development intensity, which aligns well with imaging logging results. This method surmounts the constraints of conventional logging techniques confined to localized wellbore detection, enabling dynamic fracture evaluation across entire well sections and throughout their lifecycle. It provides a quantitative basis for optimizing stimulation strategies in ultra-deep hydrocarbon reservoirs under intense compression and for controlling wellbore stability.

Key words: rock mechanics, strongly compressed formation, stress state, failure criterion, fracture development intensity

中图分类号: TE 122
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