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Dynamic Mechanical Behavior and Numerical Simulation of an Ancient Underground Rock Mass under Impact Loading

作     者:Baoping Zou Zhiping Liu Weifeng Jin Haonan Ding Zhanyou Luo 

作者机构:School of Civil Engineering and ArchitectureZhejiang University of Science and TechnologyHangzhou310023China 

出 版 物:《Computer Modeling in Engineering & Sciences》 (工程与科学中的计算机建模(英文))

年 卷 期:2023年第134卷第1期

页      面:517-539页

核心收录:

学科分类:08[工学] 0807[工学-动力工程及工程热物理] 0818[工学-地质资源与地质工程] 080104[工学-工程力学] 0705[理学-地理学] 0903[农学-农业资源与环境] 0815[工学-水利工程] 0801[工学-力学(可授工学、理学学位)] 

基  金:financial supports for this research project by the National Natural Science Foundation of China(No.41602308) supported by Zhejiang Provincial Natural Science Foundation of China under Grant No.LY20E080005 

主  题:Ancient underground caverns numerical simulation thermal-hydraulic-mechanical coupling dynamic impact tuff stability of surrounding rock 

摘      要:To study the dynamic mechanical properties of tuff under different environmental conditions,the tuff from an ancient quarry in Shepan Island was *** impact damage to the rock was tested using a triaxial dynamic impact mechanical testing system(TDIMTS)with different ground stresses,temperatures,and groundwater *** time-strain relationship,dynamic stress-strain relationship,energy dissipation law,energy-peak strain relationship,and the impact damage pattern of the tuff specimens under impact air pressures were *** TDIMTS experiment on ancient underground rock mass under impact loading was also simulated using the finite element analysis software LS-DYNA based on the Holmquist-Johnson-Cook(HJC)material *** dynamic failure process,failure pattern and peak stress of tuff specimen were *** simulation results obtained using the above methods were in good agreement with the experimental *** results of the dynamic experiment show that with the same local stress,groundwater pressure,and temperature,the damage to the tuff specimens caused by blasting and quarrying disturbances gradually increases as the impact pressure *** the same local stress,groundwater pressure,and temperature,the energy required to rupture the tuffs in ancient underground caverns is relatively small if the impact pressure is low accordingly,but as the impact pressure increases,the damage to the tuff caused by quarrying disturbance gradually *** damage gradually increases and the degree of damage to the tuff and the strain energy exhibit asymptotic growth when the tuff specimens are subjected to the greater strain energy,increasing the degree of rupturing of the *** addition,the average crushing size decreases with increasing strain *** comparing the simulation results with the experimental results,it was found that the HJC model reflected the dynamic impact performance of tuff specimen,and the simulation results showe

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