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Effects of weathering depth and thickness on rock failure:Experimental approach and particle flow code simulation
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作者 Vahab Sarfarazi Mehdi Torabi-Kaveh Arsham Moayedi Far 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第11期4638-4653,共16页
This study investigated the effects of weathering depth and thickness on the failure mechanisms of rock samples through experimental and numerical methods.The first configuration involved conducting artificial weather... This study investigated the effects of weathering depth and thickness on the failure mechanisms of rock samples through experimental and numerical methods.The first configuration involved conducting artificial weathering on limestone using the freezing and thawing(F-T)for 40 cycles.The mechanical parameters of the samples were measured at the end of the 40th cycle.In the second configuration,a series of specimens underwent salt crystallization(S-C)tests for 20 cycles.Experimental results were validated using discrete element method(DEM).Next,the weathered limestone model with dimensions of 108 mm54 mm were prepared.The weathering layers were tested at four different thicknesses(i.e.2.5 mm,5 mm,7.5 mm,and 10 mm)and three different positions(at the surface,5 mm under the rock surface,and 10 mm under the rock surface).According to the results,weathering depth and thickness have a considerable effect on the failure process.The results also showed a correlation between the values of compressive strength and failure mechanisms associated with the weathering layer.The numerical results revealed that the tension crack was the dominant factor.Additionally,with increasing weathering thickness,Young's modulus,crack initiation stress,and final strength decreased in constant weathering depth.The results also demonstrated that the failure progress of the numerical models was similar to that observed in the laboratory. 展开更多
关键词 LIMESTONE Weathering depth Weathering thickness Failure pattern particle flow code in two dimensions(PFC2D)
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Particle flow code simulation of intact and fissured granitic rock samples 被引量:13
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作者 Uxía Castro-Filgueira Leandro R.Alejano Diego Mas Ivars 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2020年第5期960-974,共15页
This study presents a calibration process of three-dimensional particle flow code(PFC3D)simulation of intact and fissured granite samples.First,laboratory stressestrain response from triaxial testing of intact and fis... This study presents a calibration process of three-dimensional particle flow code(PFC3D)simulation of intact and fissured granite samples.First,laboratory stressestrain response from triaxial testing of intact and fissured granite samples is recalled.Then,PFC3D is introduced,with focus on the bonded particle models(BPM).After that,we present previous studies where intact rock is simulated by means of flatjoint approaches,and how improved accuracy was gained with the help of parametric studies.Then,models of the pre-fissured rock specimens were generated,including modeled fissures in the form of“smooth joint”type contacts.Finally,triaxial testing simulations of 1 t 2 and 2 t 3 jointed rock specimens were performed.Results show that both elastic behavior and the peak strength levels are closely matched,without any additional fine tuning of micro-mechanical parameters.Concerning the postfailure behavior,models reproduce the trends of decreasing dilation with increasing confinement and plasticity.However,the dilation values simulated are larger than those observed in practice.This is attributed to the difficulty in modeling some phenomena of fissured rock behaviors,such as rock piece corner crushing with dust production and interactions between newly formed shear bands or axial splitting cracks with pre-existing joints. 展开更多
关键词 Numerical methods Artificially fissured samples Rock mass behavior particle flow code Parallel bond Flat-joint Smooth-joint
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Numerical investigation on permeability evolution behavior of rock by an improved flow-coupling algorithm in particle flow code 被引量:10
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作者 ZENG Wei YANG Sheng-qi +1 位作者 TIAN Wen-ling WEN Kai 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第6期1367-1385,共19页
Permeability is a vital property of rock mass, which is highly affected by tectonic stress and human engineering activities. A comprehensive monitoring of pore pressure and flow rate distributions inside the rock mass... Permeability is a vital property of rock mass, which is highly affected by tectonic stress and human engineering activities. A comprehensive monitoring of pore pressure and flow rate distributions inside the rock mass is very important to elucidate the permeability evolution mechanisms, which is difficult to realize in laboratory, but easy to be achieved in numerical simulations. Therefore, the particle flow code (PFC), a discrete element method, is used to simulate permeability behaviors of rock materials in this study. Owe to the limitation of the existed solid-fluid coupling algorithm in PFC, an improved flow-coupling algorithm is presented to better reflect the preferential flow in rock fractures. The comparative analysis is conducted between original and improved algorithm when simulating rock permeability evolution during triaxial compression, showing that the improved algorithm can better describe the experimental phenomenon. Furthermore, the evolution of pore pressure and flow rate distribution during the flow process are analyzed by using the improved algorithm. It is concluded that during the steady flow process in the fractured specimen, the pore pressure and flow rate both prefer transmitting through the fractures rather than rock matrix. Based on the results, fractures are divided into the following three types: I) fractures link to both the inlet and outlet, II) fractures only link to the inlet, and III) fractures only link to the outlet. The type I fracture is always the preferential propagating path for both the pore pressure and flow rate. For type II fractures, the pore pressure increases and then becomes steady. However, the flow rate increases first and begins to decrease after the flow reaches the stop end of the fracture and finally vanishes. There is no obvious pore pressure or flow rate concentration within type III fractures. 展开更多
关键词 rock mechanics fluid-solid coupling particle flow code (PFC) PERMEABILITY triaxial compression
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Failure mechanism and stability analysis of the Zhenggang landslide in Yunnan Province of China using 3D particle flow code simulation 被引量:11
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作者 SHI Chong LI De-jie +1 位作者 CHEN Kal-hua ZHOU Jia-wen 《Journal of Mountain Science》 SCIE CSCD 2016年第5期891-905,共15页
Based on the principle of 3D particle flow code,a numerical landslide run-out model is presented to simulate the failure process of the Zhenggang landslide(in southwestern China) under the effect of water after a rain... Based on the principle of 3D particle flow code,a numerical landslide run-out model is presented to simulate the failure process of the Zhenggang landslide(in southwestern China) under the effect of water after a rainfall.The relationship between the micro-mechanical parameters and the macro-shear strength of the grain material is determined through numerical calibrations.Then the rainfall effect is considered in numerical simulations and rain-induced sliding processes are performed,which help us to discuss the mechanism of deformation and failure of this landslide together with field observations.It shows the Zhenggang landslide would most likely be activated in Zone I and would gain momentum in Zone II.In order to prevent the potential disaster,a tailing dam is advised to be designed about 175 m downstream from the current landslide boundary of Zone II.Verified by field observations,the presented landslide model can reflect the failure mechanism after rainfall.It can also provide a method to predict the potential disaster and draft disaster prevention measures. 展开更多
关键词 Back analysis Deposit avalanche Dynamic process LANDSLIDE particle flow code
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Mechanical Behavior of Polyurethane Polymer Materials under Triaxial Cyclic Loading:A Particle Flow Code Approach 被引量:5
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作者 刘恒 WANG Fuming +1 位作者 石明生 TIAN Wenling 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第4期980-986,共7页
Polyurethane polymer grouting materials were studied with conventional triaxial tests via the particle flow code in two dimensions(PFC^(2D)) method, and the simulation results agreed with the experimental data. Th... Polyurethane polymer grouting materials were studied with conventional triaxial tests via the particle flow code in two dimensions(PFC^(2D)) method, and the simulation results agreed with the experimental data. The particle flow code method can simulate the mechanical properties of the polymer. The triaxial cyclic loading tests of the polymer material under different confining pressures were carried out via PFC^(2D) to analyze its mechanical performance. The PFC^(2D) simulation results show that the value of the elastic modulus of the polymer decreases slowly at first and fluctuated within a narrow range near the value of the peak strength; the cumulative plastic strain increases slowly at first and then increases rapidly; the peak strength and elastic modulus of polymer increase with the confining pressure; the PFC^(2D) method can be used to quantitatively evaluate the damage behavior of the polymer material and estimate the fatigue life of the materials under fatigue load based on the number and the location of micro-cracks. Thus, the PFC^(2D) method is an effective tool to study polymers. 展开更多
关键词 POLYMER particle flow code cyclic loading elastic modulus MICRO-CRACKS axial strain
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Effect of curing time on the mesoscopic parameters of cemented paste backfill simulated using the particle flow code technique 被引量:3
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作者 Lang Liu Jie Xin +4 位作者 Chao Huan Yu-jiao Zhao Xiang Fan Li-jie Guo KI-IL Song 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2021年第4期590-602,共13页
Several special mechanical properties,such as dilatancy and compressibility,of cemented paste backfill(CPB)are controlled by its internal microstructure and evolution.The mesoscopic structure changes of CPB during the... Several special mechanical properties,such as dilatancy and compressibility,of cemented paste backfill(CPB)are controlled by its internal microstructure and evolution.The mesoscopic structure changes of CPB during the development process were investigated.On the basis of the scanning electron microscopy(SEM)and mechanical test results of CPB,the particle size information of CPB was extracted,and a two-dimensional particle flow code(PFC)model of CPB was established to analyze the evolution rule of mesoscopic parameters during CPB development.The embedded FISH language in PFC was used to develop a program for establishing a PFC model on the basis of the SEM results.The mesoscopic parameters of CPB samples at different curing times,such as coordination number(C_(n)),contact force chain,and rose diagram,were obtained by recording and loading and used to analyze the intrinsic relationship between mesoscopic parameter variations and macroscopic mechanical response during CPB development.It is of considerable significance to establish the physical model of CPB using the PFC to reveal the mesoscopic structure of CPB. 展开更多
关键词 cemented paste backfill particle flow code method mesoscopic parameters FABRIC
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Simulation Study of Foundations Reinforced with Horizontal-Vertical Inclusions Using Particle Flow Code 被引量:2
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作者 侯娟 张孟喜 李培培 《Journal of Shanghai Jiaotong university(Science)》 EI 2013年第3期311-316,共6页
A two-dimensionM discrete element code, particle flow code (PFC2D), is employed to investigate foundations reinforced with horizontal-vertical (H-V) inclusions. The initial states and loading processes of both unr... A two-dimensionM discrete element code, particle flow code (PFC2D), is employed to investigate foundations reinforced with horizontal-vertical (H-V) inclusions. The initial states and loading processes of both unreinforced and H-V reinforced foundations are simulated by PFC2D method. The interface between particles and reinforcements, and the reinforcement mechanism of the H-V reinforced foundations are studied through stress distribution graphs, displacement vector graphs and contact force graphs. The simulation results demonstrate that the vertical elements of the H-V reinforcement keep the particles from being displaced under the applied load. The H-V reinforcement can distribute the load uniformly over a wider area, thereby improving the bearing capacity of soil foundation. 展开更多
关键词 reinforced foundation particle flow code (PFC2D) horizontal-vertical (H-V) reinforcement
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Microdamage study of granite under thermomechanical coupling based on the particle flow code 被引量:1
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作者 Chong SHI Yiping ZHANG +2 位作者 Yulong ZHANG Xiao CHEN Junxiong YANG 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2023年第9期1413-1427,共15页
The thermomechanical coupling of rocks refers to the interaction between the mechanical and thermodynamic behaviors of rocks induced by temperature changes.The study of this coupling interaction is essential for under... The thermomechanical coupling of rocks refers to the interaction between the mechanical and thermodynamic behaviors of rocks induced by temperature changes.The study of this coupling interaction is essential for understanding the mechanical and thermodynamic properties of the surrounding rocks in underground engineering.In this study,an improved temperature-dependent linear parallel bond model is introduced under the framework of a particle flow simulation.A series of numerical thermomechanical coupling tests are then conducted to calibrate the micro-parameters of the proposed model by considering the mechanical behavior of the rock under different thermomechanical loadings.Good agreement between the numerical results and experimental data are obtained,particularly in terms of the compression,tension,and elastic responses of granite.With this improved model,the thermodynamic response and underlying cracking behavior of a deep-buried tunnel under different thermal loading conditions are investigated and discussed in detail. 展开更多
关键词 thermomechanical coupling effect GRANITE improved linear parallel bond model thermal property particle flow code
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Study on disc cutter chipping of TBM based on field data and particle flow code simulation
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作者 Yadong Xue Yongqiang Fan +2 位作者 Xing Li Kai Shen Jiaxuan Wang 《Underground Space》 SCIE EI CSCD 2023年第2期122-139,共18页
Using tunnel boring machines to excavate high-strength intact rock masses is becoming more common.Due to the interactions between disc cutters and rocks,abnormal wear of disc cutters,especially cutter chipping,has bec... Using tunnel boring machines to excavate high-strength intact rock masses is becoming more common.Due to the interactions between disc cutters and rocks,abnormal wear of disc cutters,especially cutter chipping,has become a common phenomenon.Existing research has mainly focused on normal wear of disc cutters without addressing abnormal wear cases.This study used the disc cutter consumption data of a tunnel project in China to investigate the abovementioned problem based on field research.According to the fail-ure patterns and fracture surface characteristics,the cutter chipping patterns were mainly categorized into four types:granule chipping,patch chipping,primary collapse,and secondary collapse.To further simulate the evolution of disc cutter chipping,based on the linear plastic bond model,a new contact model called the modified plastic bond(MPB)model was proposed to solve the metal simulation prob-lem in Particle Flow Code software.To this end,a set of uniaxial tensile and compressive tests were initially conducted to verify the applicability of the MPB model.Then,a series of three-dimensional rock-cutting simulation tests were conducted to reflect the evolu-tionary processes involved in each type of cutter chipping.The cutter chipping mechanism and morphological characteristics were clas-sified and summarized in detail.The results revealed that the cutting speed and penetration growth led to a rising trend in the probability and intensity of the cutter chipping.The presence of initial defects also induced an adverse effect on the service life of the cutter.The results indicated suitable working conditions for the cutter and suggested ways to control tunneling parameters and avoid frequent cutter chipping cases. 展开更多
关键词 Tunnel boring machine Disc cutter Cutter chipping particle flow code Modified plastic bond model
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基于PFC-GBM方法的矿物组成对花岗岩单轴压缩力学特性影响 被引量:1
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作者 张庆豪 马瑞阳 +4 位作者 林鹏 谢辉辉 王朝阳 亢金涛 娄彦飞 《山东大学学报(工学版)》 北大核心 2025年第4期93-107,共15页
为研究花岗岩内各类矿物的体积分数、矿物粒径大小、矿物粒径分布非均匀性3个因素对花岗岩抗压力学特性的影响规律,采用GBM (grain-based model)方法对花岗岩微观矿物组成建模,确定了各因素影响抗压力学特性的强弱,在裂纹演化的角度揭... 为研究花岗岩内各类矿物的体积分数、矿物粒径大小、矿物粒径分布非均匀性3个因素对花岗岩抗压力学特性的影响规律,采用GBM (grain-based model)方法对花岗岩微观矿物组成建模,确定了各因素影响抗压力学特性的强弱,在裂纹演化的角度揭示各因素影响抗压力学特性的机理。研究结果表明:各参数与花岗岩强度均有较高的相关性,花岗岩抗压强度随石英、长石体积分数及平均粒径的增长呈上升趋势,随云母体积分数与非均质因子的增加呈下降趋势;矿物体积分数对强度影响由强到弱为石英、长石、云母体积分数,粒径参数对强度影响次序为平均粒径、非均质因子;矿物体积分数与晶内3种接触占比增减的相关性较高,平均粒径主要影响晶内与晶间接触占比,非均质因子则会导致同种与异种晶间接触占比发生变化,这3种方式都能够在不同程度上改变模型破裂所消耗的能量和裂纹发育路径,进而影响单轴抗压强度。 展开更多
关键词 花岗岩 矿物组成 GBM模型 particle flow code(PFC) 抗压强度 裂纹演化
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Structure-type rockburst in deep tunnels: Physical modeling and numerical simulation
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作者 Guo-Qiang Zhu Yan Zhang +3 位作者 Shaojun Li Yang-Yi Zhou Jialiang Zhou Minglang Zou 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第6期3502-3523,共22页
Structure-type rockbursts frequently occur in deep tunnels,with structural planes and stress conditions being critical factors in their formation.In this study,we utilized specially developed analogous materials that ... Structure-type rockbursts frequently occur in deep tunnels,with structural planes and stress conditions being critical factors in their formation.In this study,we utilized specially developed analogous materials that exhibit the high brittleness and strength characteristics of deep hard rock to construct physical models representing different types of structural planes,including composite,exposed,non-exposed,and throughgoing structural planes.Physical simulation experiments were conducted on structuretype rockbursts in deep horseshoe-shaped tunnels,focusing on strain differentiation characteristics,critical triggering conditions,critical crack opening displacement,the incubation process,the reduction effects of structural planes on failure intensity,and formation mechanisms.These experiments were complemented by acoustic and optical monitoring,as well as discrete element numerical simulations,to provide a comprehensive analysis.The results revealed that the most significant strain heterogeneity in the surrounding rock occurs at the tip of the structural plane along the tunnel's minimum principal stress direction,driven by the combined effects of tensile and shear forces.We quantitatively determined the critical stress and strain conditions for structure-type rockbursts and evaluated the intensity of rockbursts induced by different structural planes using critical crack opening displacement(COD)values,the uniformity coefficient,and the curvature coefficient.Analysis of acoustic emission events,including frequency,amplitude,and b-value,indicated that the macro-fracture process is governed by both the principal stress differential and the characteristics of the structural plane.Furthermore,using the bearing capacity reduction coefficient,we found that exposed structural planes have the most significant weakening effect on rock mass strength,followed by non-exposed and throughgoing structural planes.The analysis of average frequency(AF)and rise angle(RA)parameters revealed a close correlation between the failure modes of structure-type rockbursts,the rock mass structure,and the stress levels.These findings provide critical theoretical support for the prediction and prevention of structure-type rockburst disasters. 展开更多
关键词 Deep tunnel ROCKBURST Structural plane Strain heterogeneity Physical model test particle flow code(PFC)
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Triaxial compression test of MICP sand column and simulation of failure process
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作者 Siriguleng Bai Kai Li +1 位作者 Tala Bao Chi Li 《Biogeotechnics》 2025年第3期76-82,共7页
Microbially induced calcium carbonate precipitation(MICP)technology can induce calcium carbonate crystals with cementation and stable performance in the process of microbial metabolism or enzymization through the regu... Microbially induced calcium carbonate precipitation(MICP)technology can induce calcium carbonate crystals with cementation and stable performance in the process of microbial metabolism or enzymization through the regulation of environmental factors MICP can be used as a cementing agent to cement cohesionless sand particles to form the materials with the characteristics of higher strength,better durability and environmental friendli-ness,as well as a good engineering application prospect.In this paper,the shear strength of sand column was tested by triaxial compression tests,and the strength index was obtained.In order to further study the micro-strength mechanism and the failure process,based on the discrete element method,a numerical model of MICP cemented sand column was established considering the factors of matrix soil particle gradation,particle mor-phology,content ratio of induced calcium carbonate,pore distribution characteristics,inter-particle cementation and so on.The failure process of MICP cemented sand column under load was analysed by numerical simulation,and the reliability of the numerical model was tested by combining with the stress intensity curve of samples under test conditions.The results indicate that compared with the actual triaxial tests of MICP cemented sand column,although there are deviations in stress and strain,cohesion and internal friction angle,the numerical simulation shows similar development law and intensity amplitude,and the same failure trend.The work in this paper verifies the reliability of the numerical model and provides a theoretical basis for the subsequent analysis of the factors influencing the geotechnical mechanical properties of biomineralized materials. 展开更多
关键词 Biotreated geomaterial Microbially induced calcite precipitation Triaxial compression Consolidated sand particle flow code(PFC)simulation Failure mechanism
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Fracture damage and energy evolution of fissured coal subject to triaxial unloading condition
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作者 Zhijie Zhu Peng Wang +5 位作者 Xiaohan Yang Jan Nemcik Ting Ren Laigui Wang Jun Han Songsong Guan 《International Journal of Coal Science & Technology》 2025年第2期255-268,共14页
Fissured coal mass under triaxial unloading condition exhibits higher burst potential than the triaxial loading condition,which poses challenge to safety and productivity of resources extraction and underground space ... Fissured coal mass under triaxial unloading condition exhibits higher burst potential than the triaxial loading condition,which poses challenge to safety and productivity of resources extraction and underground space utilization.To comprehensively understand the mechanism of unloading-induced burst during excavation process,this study investigated the fracture and energy evolution of samples with different fissure types such as single,two parallel,and two coplanar-parallel using PFC2D modelling.Triaxial loading tests were conducted to determine the compressive strengths and other parameters.With increase of fissure inclination angle,the triaxial compressive strength decreases forβ=0°-30°,and then increase forβ=30°-90°.The strength of samples with two coplanar-parallel fissures is the highest.Fissure can significantly change the distribution of fracture and elastic energy.Secondary cracks were generated starting from both ends of the fissure.Forβ=0°-60°,low elastic strain energy area was produced around the fissure along the loading direction.The elastic strain energy is transferred to the outside of fissures.Forβ=75°-90°,only a small amount of high elastic strain energy was generated on both sides of the fissure.The fracture expansion under unloading conditions occurred due to tensile stress T caused by unloading differential rebound deformation and the shear stress on the fissure surface. 展开更多
关键词 Fracture damage Fissured coal Triaxial unloading particle flow code
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A meso-damage-based constitutive model for yellow sandstone under dry-wet cycles 被引量:1
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作者 Zhe Qin Runchang Zhang +3 位作者 Weizheng Mao Jihuan Han Zhiwen Li Sunhao Zhang 《Deep Underground Science and Engineering》 2024年第4期497-507,共11页
The mechanical properties of rocks weaken under dry-wet cycles.This weakening may significantly modify the safety reserve of underground caverns or reservoir bank slopes.However,meso-damage has not been carefully stud... The mechanical properties of rocks weaken under dry-wet cycles.This weakening may significantly modify the safety reserve of underground caverns or reservoir bank slopes.However,meso-damage has not been carefully studied based on micromechanical observations and analyses.Therefore,in this study,meso-damage of a yellow sandstone is investigated and a meso-damage-based constitutive model for dry-wet cycles is proposed.First,computed tomography scanning and uniaxial compression tests were conducted on yellow sandstones under different dry-wet cycles.Second,the evolution of rock mesostructures and the damage mechanism subjected to dry-wet cycles were simulated using the discrete element method with Particle Flow Code in 2 Dimensions(PFC2D)software.Third,a constitutive model was proposed based on the meso-statistical theory and damage mechanics.Finally,this constitutive model was verified with the experimental results to check its prediction capability.It is found that the radius and number of pore throats in the sandstone increase gradually with the number of dry-wet cycles,and the pore structure connectivity is also improved.The contact force of sandstone interparticle cementation decreases approximately linearly and the continuity of the particle contact network is continuously broken.The meso-deformation and strength parameters show similar declining patterns to the modulus of elasticity and peak strength of the rock sample,respectively.This meso-damage-based constitutive model can describe well the rock deforma-tion in the initial pressure density stage and the damage stage under the coupling effect of dry-wet cycles and loads. 展开更多
关键词 constitutive model damage coupling dry-wet cycles particle flow code rock mechanics
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PFC软件在建材矿山溜井落矿方面的模拟应用探讨 被引量:1
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作者 邓勇 陈亮 +1 位作者 王大海 吴海林 《中国水泥》 CAS 2024年第6期108-110,共3页
利用Itasca PFC(Particle Flow Code)软件对建材矿山的矿石溜井放矿过程进行模拟,通过对溜井内矿石运动模拟具体过程的详细分析,总结了矿石在溜井内的运动规律及其对井壁的冲击位置。通过模拟,优化溜井设计,提高溜井使用的安全性,减少... 利用Itasca PFC(Particle Flow Code)软件对建材矿山的矿石溜井放矿过程进行模拟,通过对溜井内矿石运动模拟具体过程的详细分析,总结了矿石在溜井内的运动规律及其对井壁的冲击位置。通过模拟,优化溜井设计,提高溜井使用的安全性,减少对井壁的冲击损伤。并对利用PFC软件进行此类模拟的优势进行了探讨。 展开更多
关键词 矿石溜井 放矿过程 Itasca PFC(particle flow code)软件 模拟 模拟溜井
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Crack mechanism of ground fissures in loess layer of Fenwei Basin, China
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作者 LI Cong LU Quanzhong +2 位作者 WANG Feiyong LUO Wenchao XU Qiang 《Journal of Mountain Science》 SCIE CSCD 2024年第5期1683-1696,共14页
The Fenwei Basin, covered by loess, experiences severe ground fissure disasters. These disasters disrupt the continuity of the loess and pose significant threats to engineering construction safety along transportation... The Fenwei Basin, covered by loess, experiences severe ground fissure disasters. These disasters disrupt the continuity of the loess and pose significant threats to engineering construction safety along transportation routes. Nevertheless, the crack characteristics and the influence zone of ground fissures in the loess layer remain inadequately investigated. To effectively prevent and control ground fissure disasters, physical model tests and the PFC(particle flow code) numerical simulation method are used to investigate the crack mechanism of buried ground fissures in the loess layer. The results show that there are two main cracks in the layer profile, which have a Y-shape morphology. As the dip angle of the preset cracks increased from 60° to 90°, the main deformation zone at the surface gradually shifted towards the footwall. The process of crack propagation from depth to surface is divided into five stages. Additionally, the results confirm the accuracy of the width of the rupture zone d2in the footwall calculated by the cantilever beam theory. These findings can offer theoretical guidance for determining the avoidance distance of ground fissures in loess regions, as well as for implementing disaster prevention and corresponding control measures for various stages of buried ground fissure propagation. 展开更多
关键词 Ground fissure Fenwei Basin Physical model test particle flow code Crack propagation
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Heterogeneities of grain boundary contact for simulation of laboratoryscale mechanical behavior of granitic rocks
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作者 Xiongyu Hu Marte Gutierrez Zhiwei Yan 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第7期2629-2644,共16页
From a practical point of view,grain structure heterogeneities are key parameters that control the rock response and still remains a challenge to incorporate in a quantitative manner.One of the less discussed topics i... From a practical point of view,grain structure heterogeneities are key parameters that control the rock response and still remains a challenge to incorporate in a quantitative manner.One of the less discussed topics in the context of the grain-based model(GBM)in the particle flow code(PFC)is the contact heterogeneities and the appropriate contact model to mimic the grain boundary behavior.Generally,the smooth joint(SJ)model and linear parallel bond(LPB)model are used to simulate the grain boundary behavior.However,the literature does not document the suitability of different models for specific problems.Another challenge in implementing GBM in PFC is that only a single bonding parameter is used at the grain boundaries.The aim of this study is to investigate the responses of a laboratory-scale specimen with SJ and LPB models,considering grain boundary heterogeneous and homogeneous contact parameters.Uniaxial and biaxial compression tests are performed to calibrate the response of Creighton granite.The stressestrain curves,volumetric dilation,inter-crack(crack in the grain boundary),and intra-crack(crack within the grain)development,and failure patterns associated with different contact models are examined.It was found that both the SJ and LPB models can reproduce the pre-peak behavior observed for a granitic rock type.However,the LPB model is unable to reproduce the post-peak behavior.Due to the large interlocking effect originating from the balls in contact and the ball size in the LPB model,local dilation is induced at the grain boundaries.This overestimates the volumetric dilation and residual shear strength.The LPB model tends to result in discontinuous inter-cracks and stress localization in the rock specimen,resulting in fine fragments at the rock surface during failure. 展开更多
关键词 Grain boundary contact Smooth joint(SJ)model Linear parallel bond(LPB)model Contact heterogeneities particle flow code(PFC) Granitic rock
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Influence of structural plane angle and roughness on Brazilian characteristics of composite disc specimens
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作者 SHAN Ren-liang DOU Hao-yu +5 位作者 NIE Ming-yue ZHENG Peng LI Geng-zhao PANG Yuan-yang BAI Yao SUN Peng 《Journal of Central South University》 CSCD 2024年第11期4232-4247,共16页
In this paper,Brazilian test was performed on disk samples of analogue materials with defined structural planes.The surface strain evolution process of the disk samples during loading was analyzed via digital image co... In this paper,Brazilian test was performed on disk samples of analogue materials with defined structural planes.The surface strain evolution process of the disk samples during loading was analyzed via digital image correlation.The damage evolution process was explored from a microscopic perspective by combining discrete element numerical simulation technology.The criterion of the failure mode of the disc specimen in the split state was theoretically deduced.The influence of structural surface roughness and loading inclination angle on the stress state at the center of the specimen was explored.The results showed that the failure modes of the samples could be divided into three typical modes as matrix failure,structural plane failure and combination failure.The rough structural plane improves the failure strength of the specimen by limiting its lateral deformation,and the degree of improvement weakens continuously with the increase of the inclination angle of the structural plane.As the inclination angle of the structural plane increases,the main type of microcracks in the structural plane changes from shear microcracks to tensile microcracks.This study contributes to a better understanding of macro-and meso-failure characteristics of rock masses with structural planes under a splitting state. 展开更多
关键词 analogue material structural plane Brazilian test failure mode particle flow code
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Dynamic behavior of rock during its post failure stage in SHPB tests 被引量:18
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作者 周子龙 赵源 +3 位作者 江益辉 邹洋 蔡鑫 李地元 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第1期184-196,共13页
In order to investigate the micro-process and inner mechanism of rock failure under impact loading, the laboratory tests were carried out on an improved split Hopkinson pressure bar (SHPB) system with synchronized m... In order to investigate the micro-process and inner mechanism of rock failure under impact loading, the laboratory tests were carried out on an improved split Hopkinson pressure bar (SHPB) system with synchronized measurement devices including a high-speed camera and a dynamic strain meter. The experimental results show that the specimens were in the state of good stress equilibrium during the post failure stage even when visible cracks were forming in the specimens. Rock specimens broke into strips but still could bear the external stress and keep force balance. Meanwhile, numerical tests with particle flow code (PFC) revealed that the failure process of rocks can be described by the evolution of micro-fractures. Shear cracks emerged firstly and stopped developing when the external stress was not high enough. Tensile cracks, however, emerged when the rock specimen reached its peak strength and played an important role in controlling the ultimate failure during the post failure stage. 展开更多
关键词 rock dynamics post failure stress equilibrium crack evolution particle flow code
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True triaxial hydraulic fracturing test and numerical simulation of limestone 被引量:10
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作者 YANG Wei-min GENG Yang +4 位作者 ZHOU Zong-qing LI Lian-chong DING Ruo-song WU Zhong-hu ZHAI Ming-yang 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第10期3025-3039,共15页
Hydraulic fracturing,as a key technology of deep energy exploitation,accelerates the rapid development of the modern petroleum industry.To study the mechanisms of hydraulic fracture propagation and rock failure mode o... Hydraulic fracturing,as a key technology of deep energy exploitation,accelerates the rapid development of the modern petroleum industry.To study the mechanisms of hydraulic fracture propagation and rock failure mode of the vertical well hydraulic fracturing,the true triaxial hydraulic fracturing test and numerical simulation are carried out,and the influence of the principal stress difference,water injection displacement,perforation angle and natural fracture on fracture propagation is analyzed.The results show that the fracture propagation mode of limestone is mainly divided into two types:the single vertical fracture and the transverse-longitudinal crossed complex fracture.Under high displacement,the fracturing pressure is larger,and the secondary fracture is more likely to occur,while variable displacement loading is more likely to induce fracture network.Meanwhile,the amplitude of acoustic emission(AE)waveform of limestone during fracturing is between 0.01 and 0.02 mV,and the main frequency is maintained in the range of 230−300 kHz.When perforation angleθ=45°,it is easy to produce the T-type fracture that connects with the natural fracture,while X-type cracks are generated whenθ=30°.The results can be used as a reference for further study on the mechanism of limestone hydraulic fracturing. 展开更多
关键词 true triaxial hydraulic fracturing acoustic emission particle flow code(PFC) perforation angle natural fracture
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