Numerical simulation of failure processes and acoustic emissions of rock specimens with different strengths
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摘要: 采用FLAC模擬了初始內聚力及內摩擦角對具有隨機材料缺陷單軸平面應變壓縮巖樣破壞過程及聲發射的影響;采用編寫的若干FISH函數規定隨機缺陷及統計發生破壞的單元數目.密實的巖石服從莫爾-庫侖剪破壞與拉破壞復合的破壞準則,破壞之后呈現應變軟化-理想塑性行為;缺陷在破壞之后經歷理想塑性行為.隨著密實巖石強度參數的提高,從應力峰值到殘余應力的應力降、軸向應變增量提高,貫通試樣的剪切帶出現滯后,試樣內部最終發生破壞的單元數降低.對于密實巖石強度參數高的試樣,缺陷全部發生破壞之后,密實巖石沒有立即發生破壞;應力峰值被達到之后,破壞的單元數增長不大.在加載過程中,聲發射數有顯著增加的三個區段.區段1、2及區段3的絕大部分位于峰前.在區段3的峰前階段,聲發射數的增加源于缺陷的長大、聚結、傳播和競爭.強度參數越高,區段3越長,區段3的峰值越低.這表明當密實巖石的強度參數較高時,密實巖石單元破壞相繼發生,破壞過程持續得較長.Abstract: For rock specimens with initially random material imperfections in uniaxial plane strain compression, the effects of initial cohesion and internal friction angle on the failure processes were modeled using FLAC. FISH functions were used to generate random imperfections and to remember the number of failed elements. For the intact rock exhibiting the linear strain-softening behavior beyond the occurrence of failure and then the ideal plastic behavior, the failure criterion is a composite Mohr-Coulomb criterion with tension cut-off. The imperfection undergoes the ideal plastic behavior beyond the occurrence of failure. As the strength parameters (initial cohesion and internal friction angle) increase, the stress drop and incremental axial strain from the peak stress to the residual stress increase; the occurrence of shear fractures intersecting the specimen is later and the final number of yielded elements decreases. For the intact rock with higher strength parameters, after all imperfections fail it does not fail immediately; instead, when the axial stress reaches a certain value it starts to yield and the increase in the number of failed elements is less apparent beyond the peak stress. In the loading process, the acoustic emissions are apparent in three stages. The first stage, the second stage and a majority of the third stage appear at pre-peak. Prior to the peak stress and in the third stage, the increase in the acoustic emissions results from the extension, coalescence and propagation of imperfections and the competition among imperfections. Higher strength parameters of the intact rock cause the third stage to be wider and the number of acoustic emissions to be lower, suggesting that the failure is more progressive and the failure duration is longer.
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Key words:
- rock /
- failure process /
- cohesion /
- internal friction angle /
- shear band /
- acoustic emission /
- random imperfection
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