(1. State Key Laboratory of Hydraulic Engineering Simulation and Safety,Tianjin University,Tianjin 300350,China;2. China Silk Road Construction Investment Group Co.,Ltd.,Xi?an,Shaanxi 710075,China;3. State Key Laboratory of Intelligent Construction and Healthy Operation and Maintenance of Deep Underground Engineering,Shenzhen University,Shenzhen,Guangdong 518060,China;4. Guangdong Provincial Key Laboratory of Deep Earth Sciences and Geothermal Energy Exploitation and Utilization,Shenzhen University,Shenzhen,Guangdong 518060,China)
Abstract:In underground rock mass engineering,the dynamic disturbance propagates in the form of stress wave,and is affected by discontinuities such as joints in rock mass. In order to understand the effect of joint spatial parameters on the propagation of two-dimensional plane stress wave,the indirect stress wave separation method was extended to the case of multi-jointed rock mass,and an indoor experiment was carried out by pendulum plate tester. The results showed that the indirect stress wave separation method could be used to obtain the transmission and reflection characteristics of stress waves in oblique joints and joint sets. The incident angle of the stress wave had a significant effect on the reflected P-wave and the reflected S-wave. The increase of dimensionless joint spacing could reduce the reflection coefficient and transmission coefficient of P-wave obviously. With the increase of the joint intersection angle,the S-wave reflection coefficient and the P-wave transmission coefficient of the intersecting joint decreased,and the difference between the two increased gradually. When the joint crossing angle changed,the influence of joint spacing on the refection and transmission coefficient was dominant. The research results of this paper could deepen the understanding of the two-dimensional stress wave propagation law in jointed rock mass,and have guiding significance for geotechnical exploration and stability analysis of rock mass engineering.
沈 聪1,翟天琦1,黄超民2,朱建波3,4. 二维平面波通过节理岩体的传播规律研究[J]. 岩石力学与工程学报, 2024, 43(S2): 3960-3971.
SHEN Cong1,ZHAI Tianqi1,HUANG Chaomin2,ZHU Jianbo3,4. Study on propagation law of two-dimensional plane wave through jointed rock mass. , 2024, 43(S2): 3960-3971.
王鲁明,赵 坚,华安增,等. 节理岩体中应力波传播规律研究的进展[J]. 岩土力学,2003,24(增2):602-605.(WANG Luming,ZHAO Jian,HUA Anzeng,et al. The progress in study of regularity of a stress wave propagation in the jointed[J]. Rock Rock and Soil Mechanics,2003,24(Supp.2):602-605.(in Chinese))
[2]
PYRAK-NOLTE L J. The seismic response of fractures and the interrelations among fracture properties[J]. International Journal of Rock Mechanics and Mining Sciences and Geomechanics Abstracts,1996,33(8):787-802.
[3]
DAEHNKE A,ROSSMANITH H P. Reflection and refraction of plane stress waves at interfaces modelling various rock joints[J]. Fragblast,1997,1(2):111-231.
[4]
DAEHNKE A,ROSSMANITH H P. Reflection and refraction of plane stress waves at dissipative interfaces[C]// Proceedings of the 1st International Conference on Damage and Failure of Interfaces. Vienna,Austria:[s. n.],1997:315-320.
[5]
FAN S C,JIAO Y Y,ZHAO J. On modelling of incident boundary for wave propagation in jointed rockmasses using discrete element method[J]. Computers and Geotechnics,2004,31(1):57-66.
[6]
刘婷婷,李新平,李海波,等. 应力波在充填节理岩体中传播规律的数值研究[J]. 岩石力学与工程学报,2016,35(增2):3 552-3 560. (LIU Tingting,LI Xinping,LI Haibo,et al. Numerical study on stress wave propagation across filled joints[J]. Chinese Journal of Rock Mechanics and Engineering,2016,35(Supp.2):3 552-3 560.(in Chinese))
[7]
HOPKINS D L,MYER L R,COOK N G W. Seismic wave attenuation across parallel fractures as a function of fracture stiffness and spacing[J]. Eos Transaction AGU,1988,69(44):1 427-1 436.
[8]
ZHAO J,CAI J G,ZHAO X B,et al. Experimental study of ultrasonic wave attenuation across parallel fractures[J]. Geomechanics and Geoengineering,2006,1(2):87-103.
[9]
ZHU J B,ZHAO J. Obliquely incident wave propagation across rock joints with virtual wave source method[J]. Journal of Applied Geophysics,2013,88(1):23-30.
[10]
CHAI S B,LI J C,ZHANG Q B,et al. Stress wave propagation across a rock mass with two non-parallel joints[J]. Rock Mechanics and Rock Engineering,2016,49(10):4 023-4 032.
[11]
CHEN S G,ZHAO J. A study of UDEC modelling for blast wave propagation in jointed rock masses[J]. International Journal of Rock Mechanics and Mining Sciences,1998,35(1):93-99.
[12]
ZHU J B,DENG X F,ZHAO X B,et al. A numerical study on wave transmission across multiple intersecting joint sets in rock masses with UDEC[J]. Rock Mechanics and Rock Engineering,2013,46(6):1 429-1 442.
[13]
王占江,李孝兰,戈 琳,等. 花岗岩中化爆的自由场应力波传播规律分析[J]. 岩石力学与工程学报,2003,22(11):1 827-1 831. (WANG Zhanjiang,LI Xiaolan,GE Lin,et al. Free-field stress wave propagation induced by undergound chemical explosion in granite[J]. Chinese Journal of Rock Mechanics and Engineering,2003,22(11):1 827-1 831.(in Chinese))
[14]
何 翔,吴祥云,李永池,等. 石灰岩中爆炸成坑和地冲击传播规律的试验研究[J]. 岩石力学与工程学报,2004,23(5):725-729.(HE Xiang,WU Xiangyun,LI Yongzhi,et al. Testing study on crater formed by explosion and propagation laws of groundshock in limestone[J]. Chinese Journal of Rock Mechanics and Engineering,2004,23(5):725-729.(in Chinese))
[15]
王 伟,李小春. 不耦合装药下爆炸应力波传播规律的试验研究[J].岩土力学,2010,31(6):1 723-1 728.(WANG Wei,LI Xiaochun. Experimental study of propagation law of explosive stress wave under condition of decouple charge[J]. Rock and Soil Mechanics,2010,31(6):1 723-1 728.(in Chinese))
[16]
ZOU Y,LI J,ZHAO J. A novel experimental method to investigate the seismic response of rock joints under obliquely incident wave[J]. Rock Mechanics and Rock Engineering,2019,52(9):3 459-3 499.
[17]
朱建波,黄超民,翟天琦,等. 断续节理岩体波传播试验装置的研制及其标定[J]. 天津大学学报:自然科学与工程技术版,2022,55(6):553-561.(ZHU Jianbo,HUANG Chaomin,ZHAI Tianqi,et al. Development and calibration of wave propagation test device for non-persistent jointed rock mass[J]. Journal of Tianjin University:Science and Technology,2022,55(6):553-561.(in Chinese))
LI J,MA G. Analysis of blast wave interaction with a rock joint[J]. Rock Mechanics and Rock Engineering,2010,43(6):777-787.
[20]
李庶林,尹贤刚,王泳嘉,等. 单轴受压岩石破坏全过程声发射特征研究[J]. 岩石力学与工程报,2004,23(15):2 499-2 503.(LI Shulin,YIN Xiangang,WANG Yongjia,et al. Studies on acoustic emission characteristics of uniaxial compressive rock failure[J]. Chinese Journal of Rock Mechanics and Engineering,2004,23(15):2 499-2 503.(in Chinese))
[21]
ZOU Y,LI J,HE L,et al. Wave propagation in the vicinities of rock fractures under obliquely incident wave[J]. Rock Mechanics and Rock Engineering,2016,49(5):1 789-1 802.
[22]
PERRY C C. Plane-shear measurement with strain gages[J]. Experimental Mechanics,1969,DOI:1007/BF02327879