Cross-Crack Interaction and Initiation Mechanism Under Hydro-Mechanical Coupling

被引:1
作者
Shen, Qingqing [1 ,2 ]
Zhang, Quan [2 ]
Rao, Qiuhua [2 ]
Yi, Wei [2 ]
机构
[1] Hunan Inst Technol, Sch Civil & Architectural Engn, 18 Henghua Rd, Hengyang 421002, Hunan, Peoples R China
[2] Cent South Univ, Sch Civil Engn, 932 South Lushan Rd, Changsha 410083, Hunan, Peoples R China
基金
中国国家自然科学基金;
关键词
Cross-crack; interaction mechanism; initiation mechanism; hydro-mechanical coupling; FRACTURE; PROPAGATION; COALESCENCE; FLAWS;
D O I
10.1142/S1758825124500522
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In this paper, the equation for computing the maximum Stress Intensity Factor (SIF) of cross-crack under hydraulic-mechanical coupling was derived by the dislocation method and the integral equation, and the influence of cross-crack geometric parameters (branch-crack length, pinch angle, inclination angle) on the interacting SIF was analyzed, and its influence law was obtained. Using the maximum shear and tensile SIF ratio criterion as a basis, the fracture criterion of hydraulic-mechanical coupling cross-crack was established, and the initiation process of hydraulic-mechanical coupled red sandstone cross-crack was predicted (including the cross-crack initiation angle, initiation load, and initiation mechanism). Results showed that for cross-crack with the inclination angle fixed (alpha = 45 degrees), K-I,K-kmax(theta)/K-Imax(0)(theta) of crack tip C decreases slowly. For cross-crack with change of a(1)/a(2). K-I,K-kmax(theta)/K-Imax(0)(theta) of crack tip A increases, and crack tip C decreases with a(1)/a(2). For the cross-crack hydraulic-mechanical coupling test, as the cross-crack angle alpha grows, the fracture initiation stress first reduces before increasing. Initiation mechanisms are Mode I fracture and initiation angles are usually negative. The hydraulic-mechanical coupling cross-crack initiation criterion is validated by the experimental findings, which align with the expected outcomes.
引用
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页数:17
相关论文
共 41 条
[31]   Cracking and Creep Behavior of Rocks Considering Propagation and Interaction of Adjacent Cracks Under Hydro-Mechanical Coupling [J].
Yang, Lei ;
Mei, Jie ;
Sheng, Xiangchao ;
Yang, Weimin ;
Li, Jinglong .
ROCK MECHANICS AND ROCK ENGINEERING, 2021, 54 (08) :4099-4110
[32]   TWIN SHEAR-STRESS YIELD CRITERION [J].
YU, MH .
INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 1983, 25 (01) :71-74
[33]   Influence of size and location of a pre-existing fracture on hydraulic fracture propagation path [J].
Zhang, Bo ;
Li, Yao ;
Yang, Xue Y. ;
Li, Shu C. ;
Wei, Chao ;
Songa, Juan .
GEOMECHANICS AND ENGINEERING, 2023, 32 (03) :321-333
[34]   The coalescence and strength of rock-like materials containing two aligned X-type flaws under uniaxial compression [J].
Zhang, Bo ;
Li, Shucai ;
Yang, Xueying ;
Xia, Kaiwen ;
Liu, Jiyang ;
Guo, Shuai ;
Wang, Shugang .
GEOMECHANICS AND ENGINEERING, 2019, 17 (01) :47-56
[35]  
Zhang D.F., 2004, Chin. J. Rock Mech. Eng, V23, P4721
[36]  
[张英 Zhang Ying], 2022, [工程科学学报, Chinese Journal of Engineering], V44, P1778
[37]  
Zheng S.H, 2001, Chinese Journal of Rock Mechanicsand, V20, P422, DOI 10.3321/j.issn:1000-6915.2001.03.038
[38]   A new numerical 3D-model for simulation of hydraulic fracturing in consideration of hydro-mechanical coupling effects [J].
Zhou, Lei ;
Hou, Michael Z. .
INTERNATIONAL JOURNAL OF ROCK MECHANICS AND MINING SCIENCES, 2013, 60 :370-380
[39]  
Zhou X. P., GEOTECH TEST J, VJournal41
[40]   Experimental Study on the Growth, Coalescence and Wrapping Behaviors of 3D Cross-Embedded Flaws Under Uniaxial Compression [J].
Zhou, Xiao-Ping ;
Zhang, Jian-Zhi ;
Wong, Louis Ngai Yuen .
ROCK MECHANICS AND ROCK ENGINEERING, 2018, 51 (05) :1379-1400