ICF13A

13th International Conference on Fracture June 16–21, 2013, Beijing, China -7- [4] Olson J E, Bahorich B, Holder J. Examining hydraulic fracture-natural fracture interaction in hydrostone block experiments. SPE 152618, 2012. [5] Meng Chunfang. Hydraulic fracture propagation in pre-fractured natural rocks. SPE 140429, 2011. [6] ZHOU Jian, CHEN Mian, JIN Yan, ZHANG Guang-qing. Experimental study on propagation mechanism of hydraulic fracture in naturally fractured reservoir. Acta Petrolei Sinica, 2007, 28(5): 109-113. (in Chinese) [7] Zhou and Xue, Experimental investigation of fracture interaction between natural fractures and hydraulic fracture in naturally fractured reservoirs. SPE 142890, 2011. [8] H.Gu, X.Weng, J.Lund, et al. Hydraulic fracture crossing natural fracture at nonorthogonal angles: a criterion and its validation. SPE 139984, 2012 [9] ZHANG Hong-tu, ZHE Xiao-li. Theory of inclusion and applications in the study of fracture. Acta Physica Sinica, 1981, 30(6): 761-773. (in Chinese) [10] JIN Yan, CHEN Mian, ZHOU Jian, GENG Yu-di. Experimental study on the effects of salutatory barrier on hydraulic fracture propagation of cement blocks. Acta Petrolei Sinica, 2008, 29(2): 300-303. (in Chinese) [11] HUANG Chun-ping, LI Zhong-hua. An approximate solution for the interaction forces between model I crack and an inclusion of arbitrary shape. Journal of Shanghai Jiaotong University, 2005, 39(1): 142-146. (in Chinese) [12] ZHANG Ming-huan, TANG Ren-ji. Interaction between crack and elastic inclusion. Applied Mathematics and Mechanics, 1995, 16(4): 289-300. (in Chinese) [13] DENG Yue-hong. Dimension stone strength and fractal characteristics of inner fault distribution. MINING R & D. 2001, 21(6): 13-15.

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