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Study on Strain Characterization and Failure Location of Rock Fracture Process Using Distributed Optical Fiber under Uniaxial Compression

机译:单轴压缩下分布式光纤岩石断裂过程应变表征及故障定位研究

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摘要

A rock fracture test is a very important method in the study of rock mechanics. Based on the Mechanics Test System (MTS), the dynamic strain response of the failure process of cylindrical granite specimens under uniaxial compression was observed by using distributed optical fiber strain sensors. Two groups of tests were designed and studied for rock sample fracturing. The main comparison and analysis were made between the distributed optical fiber testing technology and the MTS testing system in terms of the circumferential strain response curve and the evolution characteristics of strain with time. The strain characterization of distributed optical fiber in the process of rock fracturing was obtained. The results show that the ring strains measured by the distributed optical fiber sensor and the circumferential strain gauge were consistent, with a minimum ring strain error of 1.27%. The relationship between the strain jump or gradient band of the distributed optical fiber and the crack space on the sample surface is clear, which can reasonably determine the time of crack initiation and propagation, point out the location of the rock failure area, and provide precursory information about rock fracture. The distributed optical fiber strain sensor can realize the linear and continuous measurement of rock mass deformation, which can provide some reference for the study of macro damage evolution and the fracture instability prediction of field engineering rock mass.
机译:岩石骨折试验是岩石力学研究中的一种非常重要的方法。基于机械测试系统(MTS),通过使用分布式光纤应变传感器观察单轴压缩下圆柱花岗岩试样失效过程的动态应变响应。设计了两组测试,用于岩石样品压裂。在分布光纤测试技术和MTS测试系统方面,在圆周应变响应曲线和随时间的菌株的演化特性之间进行了主要的比较和分析。得到了岩石压裂过程中分布式光纤的应变特征。结果表明,由分布式光纤传感器和周向应变仪测量的环菌株一致,最小环应变误差为1.27%。分布式光纤的应变跳跃或梯度带之间的关系和样品表面上的裂缝空间是透明的,这可以合理地确定裂纹启动和传播的时间,指出岩石破坏区域的位置,并提供前兆有关岩石骨折的信息。分布式光纤应变传感器可以实现岩石质量变形的线性和连续测量,这可以为宏观损伤演化的研究和现场工程岩体的裂缝不稳定预测提供一些参考。

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