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金属矿崩落法扰动范围预测新方法及应用
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作者 周科平 李亮 +3 位作者 林允 熊信 杨念哥 陈树林 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2023年第3期889-901,共13页
为量化金属矿崩落法扰动范围,提出一种基于岩石力学参数扰动范围的预测新方法。通过将岩石力学指标与随机介质理论相结合,建立扰动范围预计修正公式。基于扰动等效中心和扰动衰减球面,推导金属矿山开采扰动的二维安全判据。将该方法应用... 为量化金属矿崩落法扰动范围,提出一种基于岩石力学参数扰动范围的预测新方法。通过将岩石力学指标与随机介质理论相结合,建立扰动范围预计修正公式。基于扰动等效中心和扰动衰减球面,推导金属矿山开采扰动的二维安全判据。将该方法应用于6个矿山和尖山矿,并利用FLAC^(3D)模型对尖山矿进行数值模拟。经对比,预测值与实测值的后验差比值为0.0357,多因素交叉分析得到该方法对结果产生的相对误差仅为0.078。研究表明,该方法的预测精度高,且不会对安全性产生显著影响。 展开更多
关键词 扰动范围 修正公式 二维安全判据 数值模拟 多因素交叉分析
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Particle simulation of the failure process of brittle rock under triaxial compression 被引量:12
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作者 Ming Xia ke-ping zhou 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2010年第5期507-513,共7页
In order to investigate the failure process of brittle rock under triaxial compression through both experimental and numerical approaches, the particle simulation method was used in numerical simulations and the simul... In order to investigate the failure process of brittle rock under triaxial compression through both experimental and numerical approaches, the particle simulation method was used in numerical simulations and the simulated results were compared with those of the experiment. The numerical simulation results, such as fracture propagation, microcrack distribution, stress-strain response, and damage patterns, were discussed in detail. The simulated results under various confining pressures (0-60 MPa) are in good agreement with the experimental results. The simulated results reveal that rock failure is caused by axial splitting under uniaxial compression. As the confining pressure increases, rock failure occurs in a few localized shear planes and the rock mechanical behavior is changed from brittle to ductile. Consequently, the peak failure strength, microcrack numbers, and the shear plane angle increase, but the ratio of tensile to shear microcracks decreases. The damage formation during the compression simulations indicates that the particle simulation method can produce similar behaviors as those observed through laboratory compression tests. 展开更多
关键词 rock mechanics compression testing FAILURE fracture modes SIMULATION MICROCRACKS
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SPH-FEM simulations of microwave-treated basalt strength
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作者 Chun YANG Ferri HASSANI +2 位作者 ke-ping zhou Feng GAO Ameen TOPA 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第6期2003-2018,共16页
Microwave precondition has been highlighted as a promising technology for softening the rock mass prior to rock breakage by machine to reduce drill bit/cutter wear as well as inverse production rate.To numerically exp... Microwave precondition has been highlighted as a promising technology for softening the rock mass prior to rock breakage by machine to reduce drill bit/cutter wear as well as inverse production rate.To numerically explore the effect of numerical parameters on rock static strength simulation,and determine the numerical mechanical parameters of microwave-treated basalts for future drilling and cutting simulations,numerical models of uniaxial compression strength(UCS)and Brazilian tensile strength(BTS)were established with the coupling of smoothed particle hydrodynamics and finite element method(SPH-FEM).To eliminate the large rock strength errors caused by microwave-induced damage,the cohesion and internal friction angle of microwave-treated basalt specimens with the same microwave treatment parameters were calibrated based on a linear Mohr-Coulomb theory.Based on parametric sensitivity analysis of SPH simulation of UCS and BTS,experimental UCS and BTS values were simultaneously captured according to the same set of calibrated cohesion and internal friction angle data,and the UCS modeling results are in good agreement with experimental tests.Furthermore,the effect of microwave irradiation parameter on the basalt mechanical behaviors was evaluated. 展开更多
关键词 microwave irradiation microwave-assisted rock breakage rock mechanics smoothed particle hydrodynamics(SPH) parametric sensitivity analysis
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Relationship between loading angle and displacing angle in steel bolt shearing
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作者 Yu CHEN Ping CAO +1 位作者 ke-ping zhou Yun TENG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第4期876-882,共7页
When subjected to shear loading condition,a steel rock bolt will become bent in the field close to the loading point in situ.The bolt is deformed as the joint displacement increases,which can mobilize a normal load an... When subjected to shear loading condition,a steel rock bolt will become bent in the field close to the loading point in situ.The bolt is deformed as the joint displacement increases,which can mobilize a normal load and a shear load on the bolt accordingly.In this work,the relationship analysis between the displacing angle and loading angle is carried out.By considering elastic andplastic states of rock bolt during shearing,the rotation of bolt extremity can be calculated analytically.Thus,the loading angle isobtained from displacing angle.The verification of analytical results and laboratory results from reference research implies that theanalytical method is correct and working.In terms of in-situ condition,the direction of the load acting on steel bolt can be predictedwell according to the direction of the deformed rock bolt with respect to original bolt axis. 展开更多
关键词 steel rock bolt SHEAR displacing angle loading angle
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