[24] |
KURUPPU M D,CHONG K P. Fracture toughness testing of brittle materials using semi-circular bend(SCB) specimen[J]. Engineering Fracture Mechanics,2012,91:133-150.
|
[11] |
GUPTA I,SONDERGELD C,RAI C. Fracture toughness in shales using nano-indentation[J]. Journal of Petroleum Science and Engineering,2020,191:107222.
|
[1] |
王生维,陈立超. 煤储层水力压裂裂缝延展机制[M]. 武汉:中国地质大学出版社,2017:1-3.(WANG Shengwei,CHEN Lichao. Fracture propagation mechanism of hydraulic fracturing in coal reservoirs[M]. Wuhan:China University of Geosciences Press,2017:1-3.(in Chinese))
|
[4] |
石晓明,王冠民,熊周海,等. 纹层方向对泥页岩纵、横波速度及弹性参数影响的试验研究[J]. 岩石力学与工程学报,2019,38(8):1 567-1 577.(SHI Xiaoming,WANG Guanmin,XIONG Zhouhai,et al. Experimental study on influence of laminae direction on P-wave and S-wave velocities and elastic parameters of shale[J]. Chinese Journal of Rock Mechanics and Engineering,2019,38(8):1 567- 1 577.(in Chinese))
|
[3] |
雷 群,管保山,才 博,等. 储集层改造技术进展及发展方向[J]. 石油勘探与开发,2019,46(3):580-587.(LEI Qun,GUAN Baoshan,CAI Bo,et al. Technological progress and prospects of reservoir stimulation[J]. Petroleum Exploration and Development,2019,46(3):580-587.(in Chinese))
|
[5] |
张 萍,杨春和,汪 虎,等. 页岩单轴压缩应力-应变特征及能量各向异性[J]. 岩土力学,2018,39(6):2 106-2 114.(ZHANG Ping,YANG Chunhe,WANG Hu,et al. Stress-strain characteristics and anisotropy energy of shale under uniaxial compression[J]. Rock and Soil Mechanics,2018,39(6):2 106-2 114.(in Chinese))
|
[7] |
JIN Z F,LI W X,JIN C R,et al. Anisotropic elastic,strength,and fracture properties of Marcellus shale[J]. International Journal of Rock Mechanics and Mining Sciences,2018,109:124-137.
|
[10] |
孙清佩,张志镇,李培超,等. 黑色页岩动载破坏的层理效应及损伤本构模型研究[J]. 岩石力学与工程学报,2019,38(7):1 319- 1 331.(SUN Qingpei,ZHANG Zhizhen,LI Peichao,et al. Study on the bedding effect and damage constitutive model of black shale under dynamic loading[J]. Chinese Journal of Rock Mechanics and Engineering,2019,38(7):1 319-1 331.(in Chinese))
|
[13] |
KRAMAROV V,PARRIKAR P N,MOKHTARI M. Evaluation of Fracture Toughness of Sandstone and Shale Using Digital Image Correlation[J]. Rock Mechanics and Rock Engineering,2020,53: 4 231-4 250.
|
[15] |
FENG G,KANG Y,CHEN F,et al. The influence of temperatures on mixed-mode(I+II) and mode-II fracture toughness of sandstone[J]. Engineering Fracture Mechanics,2018,189:51-63.
|
[17] |
陈立超,王生维. 煤岩断裂力学性质对储层压裂改造的影响[J]. 天然气地球科学,2020,31(1):122-131.(CHEN Lichao,WANG Shengwei. Fracture properties of high-rank coal and its constraint on hydraulic fracturing stimulation of coal reservoir[J]. Natural Gas Geoscience,2020,31(1):122-131.(in Chinese))
|
[20] |
王兴渝,朱哲明,邱 豪,等. 冲击荷载下层理对页岩内裂纹扩展行为影响规律的研究[J]. 岩石力学与工程学报,2019,38(8):1 542-1 556.(WANG Xingyu,ZHU Zheming,QIU Hao,et al. Study of the effect of stratifications on crack propagation behaviors in shale under impacting loads[J]. Chinese Journal of Rock Mechanics and Engineering,2019,38(8):1 542-1 556.(in Chinese))
|
[23] |
陈立超,王生维,张典坤. 基于SHPB实验的煤层气井固井水泥冲击能量耗散特征研究[J]. 材料导报,2021,35(增1):232-237. (CHEN Lichao,WANG Shengwei,ZHANG Diankun. Research on the impact energy dissipation characteristics of cementing cement in coalbed methane wells based on SHPB experiment[J]. Materials Bulletin,2021,35(Supp.1):232-237.(in Chinese))
|
[25] |
ZHOU Y X,XIA K,LI X B. Suggested methods for determining the dynamic strength parameters and mode-I fracture toughness of rock materials[J]. International Journal of Rock Mechanics and Mining Sciences,2012,49:105-112.
|
[27] |
陈立超,王生维,何俊铧,等. 煤层气井近井压裂裂缝充填特征与堵塞机制[J]. 中国石油大学学报:自然科学版,2017,41(6):117-122.(CHEN Lichao,WANG Shengwei,HE Junhua,et al. Filling characteristics and plugging mechanisms of hydraulic fractures near CBM vertical wells[J]. Journal of China University of Petroleum:Natural Science Edition,2017,41(6):117-122.(in Chinese))
|
[2] |
袁士义,宋新民,冉启全. 裂缝性油藏开发技术[M]. 北京:石油工业出版社,2004:76-81.(YUAN Shiyi,SONG Xinmin,RAN Qiquan. Development technology of fractured reservoirs[M]. Beijing:Petroleum Industry Press,2004:76-81.(in Chinese))
|
[6] |
SHANG J,GUI Y,ZHAO Z. Broad-spectrum fracture toughness of an anisotropic sandstone under mixed-mode loading[J]. Theoretical and Applied Fracture Mechanics,2018,96:556-575.
|
[8] |
SUO Y,CHEN Z,RAHMAN S S,et al. Experimental and numerical investigation of the effect of bedding layer orientation on fracture toughness of shale rocks[J]. Rock Mechanics and Rock Engineering,2020,53:3 625-3 635.
|
[9] |
YU J,SHANG X C. Analysis of the influence of boundary pressure and friction on determining fracture toughness of shale using cracked Brazilian disc test[J]. Engineering Fracture Mechanics,2019,212:57-69.
|
[12] |
HUANG D,LI B,MA W Z,et al. Effects of bedding planes on fracture behavior of sandstone under semi-circular bending test[J]. Theoretical and Applied Fracture Mechanics,2020,108:102625.
|
[14] |
NIU Y,ZHOU X P,BERTO F. Evaluation of fracture mode classification in flawed red sandstone under uniaxial compression[J]. Theoretical and Applied Fracture Mechanics,2020,107:102528.
|
[16] |
龚 爽,赵毅鑫. 层理对煤岩动态断裂及能量耗散规律影响的试验研究[J]. 岩石力学与工程学报,2017,36(增2):3 723-3 731.(GONG Shuang,ZHAO Yixin. Experimental study on effect of bedding on dynamic fracture and energy dissipation of coal and rock[J]. Chinese Journal of Rock Mechanics and Engineering,2017,36(Supp.2): 3 723-3 731.(in Chinese))
|
[18] |
陈立超,王生维. 煤岩弹性力学性质与煤层破裂压力关系[J]. 天然气地球科学,2019,30(4):503-511.(CHEN Lichao,WANG Shengwei. Relationship between elastic mechanical properties and dequivalent fracture press of coal reservoir near wellbore[J]. Natural Gas Geoscience,2019,30(4):503-511.(in Chinese))
|
[19] |
杨国梁,毕京九,郭伟民,等. 加载角度对层理页岩裂纹扩展影响的实验研究[J]. 爆炸与冲击,2021,41(9):27-39.(YANG Guoliang,BI Jingjiu,GUO Weimin,et al. Experimental study on the effect of loading angle on crack propagation in bedding shale[J]. Explosion and Shock Waves,2021,41(9):27-39.(in Chinese))
|
[21] |
ZHAO Y X,GONG S,HAO X J,et al. Effects of loading rate and bedding on the dynamic fracture toughness of coal:Laboratory experiments[J]. Engineering Fracture Mechanics,2017(178):375-391.
|
[22] |
宫凤强,王 进,李夕兵. 岩石压缩特性的率效应与动态增强因子统一模型[J]. 岩石力学与工程学报,2018,37(7):1 586-1 595. (GONG Fengqiang,WANG Jin,LI Xibing. The rate effect of compression characteristics and a unified model of dynamic increasing factor for rock materials[J]. Chinese Journal of Rock Mechanics and Engineering,2018,37(7):1 586-1 595.(in Chinese))
|
[26] |
陈立超,王生维,张典坤. 煤岩脆性特征压痕法评价及储层改造意义[J]. 煤炭学报,2020,45(增2):955-964.(CHEN Lichao,WANG Shengwei,ZHANG Diankun. Brittleness evaluation of coal rock based on Indentation method and the significance of coal reservoir stimulation[J]. Journal of China Coal Society,2020,45(Supp.2):955-964.(in Chinese))
|
[28] |
陈立超,王生维,张典坤. 内蒙古胜利煤田褐煤断裂特征半圆弯曲试验研究[J]. 煤炭科学技术,2023,DOI:10.13199/ j.cnki.cst. 2021-1313.(CHEN Lichao,WANG Shengwei,ZHANG Diankun. Experimental study on fracture behavior of lignite of Shengli coalfield and its fracturing significance[J]. Coal Science and Technology,2023,DOI:10.13199/ j.cnki.cst. 2 021-1 313.(in Chinese))
|