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金属矿山 ›› 2024, Vol. 53 ›› Issue (2): 137-.

• 采矿工程 • 上一篇    下一篇

层理倾角与尺寸效应耦合作用下页岩致裂的 数值模拟研究

晏旭龙1 邬忠虎1 蓝宝锋2 姜海申2 余 俊1 杨先超1   

  1. 1. 贵州大学土木工程学院,贵州 贵阳 550025;2. 贵州能源产业研究院有限公司,贵州 贵阳 550025
  • 出版日期:2024-02-15 发布日期:2024-04-03
  • 基金资助:
    国家自然科学基金项目(编号:52104080);贵州省优秀青年科技人才计划项目(编号:黔科合平台人才-YQK[2023]012);贵州省科技 支撑计划项目(编号:2021-401);贵州省科技厅重大专项(编号:黔科合战略找矿[2022]ZD005)。

Numerical Simulation of Shale Fracturing under the Coupling of Laminar Dip and Size Effect

YAN Xulong1 WU Zhonghu1 LAN Baofeng2 JIANG Haishen2 YU Jun1 YANG Xianchao1   

  1. 1. College of Civil Engineering,Guizhou University,Guiyang 550025,China; 2. Guizhou Energy Industry Research Institute Co. ,Ltd. ,Guiyang 550025,China
  • Online:2024-02-15 Published:2024-04-03

摘要: 研究同种材料页岩不同尺寸及不同层理倾角下对其力学特性和破坏特征的影响,为黔北地区凤冈三区 下寒武纪统褐色页岩在水力压裂下页岩气开采提供重要理论指导。基于RFPA2D-Flow 软件构建页岩模型,控制围压 为10 MPa,水压为8 MPa,石英含量固定为40%。设置4 组高宽比为1、2、3、4,每组高宽比设置不同层理倾角为0°、 30°、60°、90°。共计实验组数为16 组,分析了层理倾角与尺寸效应对页岩应力—应变曲线特征、峰值强度、变形特征、 和破坏特征的影响。研究表明:页岩基质的弹性模量与峰值强度皆具有尺寸效应,页岩的弹性模量与峰值强度受层 理倾角影响显著,均表现出明显的各向异性。同高宽比作用下,随着层理倾角的增加,抗压强度呈“V”型曲线。基于 不同层理倾角和高宽比试件的裂纹分布,可将破坏模式分为3 种,即Ⅰ型、多折线型、火焰型破坏,所有模型以Ⅰ型破 坏模式居多。高宽比为1、3 和4 时主要发生拉伸破坏,伴随少量剪切破坏,表明试件抗压不抗拉的特点,高宽比为2 时,拉伸破坏与剪切破坏均衡,表明试件既不抗压也不抗拉的特点。

关键词: 页岩 尺寸效应 层理倾角 力学特性 破坏特征

Abstract: To study the effects of different sizes of shale with the same material and different dips of laminae on its mechanical properties and damage characteristics,in order to provide important theoretical guidance for the shale gas extraction from the Lower Cambrian brown shale under hydraulic fracturing in Fenggang Three Areas of Qianbei Region. The shale model was constructed based on RFPA2D-Flow software,and the controlled perimeter pressure was 10MPa,the water pressure was 8MPa,and the quartz content was fixed at 40%. Four sets of aspect ratios of 1,2,3 and 4 were set,and the inclination angles of different layers in each set were 0°,30°,60° and 90°. The total number of experimental groups was 16,and the effects of laminar inclination angle and size effect on the stress-strain curve characteristics,peak strength,deformation characteristics,and damage characteristics of shale were analyzed. The study shows that the elastic modulus and peak strength of shale matrix have the size effect,and the elastic modulus and peak strength of shale are significantly affected by the angle of inclination of the laminae,and both show obvious anisotropy. Under the same aspect ratio,the compressive strength shows a "V" curve with the increase of laminar inclination. Based on the crack distribution of specimens with different laminar inclination angles and aspect ratios,the damage modes can be categorized into three types,i. e. ,Ⅰ-type,polyflexural,and flame-type damage,and Ⅰ-type damage modes dominate in all models. Tensile damage mainly occurs at aspect ratios of 1,3,and 4,accompanied by a small amount of shear damage,indicating that the specimen is characterized by compressive but not tensile resistance,and at an aspect ratio of 2,tensile damage is balanced with shear damage,indicating that the specimen is neither compressive nor tensile.

Key words: shale,size effects,laminar dip,mechanical properties,damage characteristics