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基于抗转模型的颗粒材料宏-细观关系研究 被引量:14
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作者 王一伟 刘润 +1 位作者 孙若晗 许泽伟 《岩土力学》 EI CAS CSCD 北大核心 2022年第4期945-956,968,共13页
接触模型的宏-细观参数标定是成功使用离散元方法的关键。在离散元的接触模型中线性接触模型与抗转线性接触模型均可用于模拟砂性土的力学行为,其中抗转线性接触模型在模拟密砂的剪胀性方面具备优势。采用抗转线性接触模型对室内密实砂... 接触模型的宏-细观参数标定是成功使用离散元方法的关键。在离散元的接触模型中线性接触模型与抗转线性接触模型均可用于模拟砂性土的力学行为,其中抗转线性接触模型在模拟密砂的剪胀性方面具备优势。采用抗转线性接触模型对室内密实砂土三轴试验进行了离散元模拟,验证了抗转线性接触模型的可靠性;进而系统分析了颗粒间摩擦系数、刚度比和抗转动系数等细观参数与砂土峰值内摩擦角、残余内摩擦角、峰值剪胀角等宏观参数的相关关系并进行了验证;揭示了偏应力作用下,细观参数对密实砂土试样内部剪切带宽度与倾角变化的影响规律,提出了考虑剪胀角的剪切带倾角经验公式。通过研究建立了抗转线性接触模型宏-细观参数的量化关系并给出了标定参数的具体流程图,提出了快速标定宏观参数的方法并应用实例进行了验证,为采用抗转线性接触模型精准模拟密实砂土的力学特性提供依据。 展开更多
关键词 密实砂土 离散元模拟 抗转模型 宏-细观参数 剪切带 剪胀角
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基于球面对称设计的离散元细观参数定量确定方法 被引量:6
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作者 彭霞 饶秋华 +1 位作者 李卓 张杰 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2019年第11期2801-2812,共12页
采用球面对称设计法,通过宏观参数范围确定细观参数取值范围,得到多因素球面对称设计试验表,利用试验模拟计算结果和多元回归分析,建立岩石材料颗粒流PFC2D(particle flow code 2D)的宏-细观参数关系式。采用基于宏-细观参数关系式计算... 采用球面对称设计法,通过宏观参数范围确定细观参数取值范围,得到多因素球面对称设计试验表,利用试验模拟计算结果和多元回归分析,建立岩石材料颗粒流PFC2D(particle flow code 2D)的宏-细观参数关系式。采用基于宏-细观参数关系式计算得到的PFC2D细观参数,进行单轴压缩下完整岩石的应力-应变曲线和宏观力学参数、含多裂纹岩石试件断裂轨迹的模拟计算。研究结果表明:岩石的应力-应变曲线、宏观力学参数、断裂轨迹的计算结果与试验结果较吻合,从而验证了该宏-细观参数关系式的有效性;采用球面对称设计建立PFC2D宏-细观参数关系式的方法可推广应用于其他脆性材料,可为PFC定量分析复杂荷载条件下的材料细观破坏机理提供参考依据。 展开更多
关键词 宏-细观参数关系式 颗粒流 球面对称设计法 平行黏结模型 岩石
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基于颗粒流理论的煤与瓦斯突出数值模拟研究 被引量:10
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作者 王锐 修毓 +2 位作者 王刚 武猛猛 杜文州 《山东科技大学学报(自然科学版)》 CAS 2016年第4期52-61,共10页
针对煤与瓦斯突出机理的复杂性,基于颗粒流离散元理论,利用PFC3D(particle flow code)软件对煤体进行340组单轴压缩及巴西劈裂试验,建立了煤体宏观参数与颗粒流数值模拟所需细观参数之间的关系。基于寺河矿煤样单轴压缩和抗拉物理实验... 针对煤与瓦斯突出机理的复杂性,基于颗粒流离散元理论,利用PFC3D(particle flow code)软件对煤体进行340组单轴压缩及巴西劈裂试验,建立了煤体宏观参数与颗粒流数值模拟所需细观参数之间的关系。基于寺河矿煤样单轴压缩和抗拉物理实验的实测宏观参数,推算出模拟煤与瓦斯突出所需的细观参数。在PFC3D流固耦合理论的基础上,利用PFC模拟软件进行了煤与瓦斯突出的数值模拟,再现了煤体的堆积过程。研究表明:在突出准备阶段,煤壁深部瓦斯压力较高,突出孔洞附近瓦斯压力梯度较高;发动及发展阶段,平衡状态被破坏,形成口小腔大的突出孔洞,破坏范围由巷道高度的中间位置向顶底板处扩展;在突出过程中,工作面前方煤体靠近煤壁的暴露面处的最大主应力向量逐渐偏离垂直方向,且应力向量连线形成一个凸向煤壁深部的圆弧。 展开更多
关键词 颗粒流 煤与瓦斯突出 PFC3D 宏-细观参数
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Quantitative determination of PFC3D microscopic parameters 被引量:7
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作者 LI Zhuo RAO Qiu-hua 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第3期911-925,共15页
It is important to calibrate micro-parameters for applying partied flow code(PFC)to study mechanical characteristics and failure mechanism of rock materials.Uniform design method is firstly adopted to determine the mi... It is important to calibrate micro-parameters for applying partied flow code(PFC)to study mechanical characteristics and failure mechanism of rock materials.Uniform design method is firstly adopted to determine the microscopic parameters of parallel-bonded particle model for three-dimensional discrete element particle flow code(PFC3D).Variation ranges of microscopic of the microscopic parameters are created by analyzing the effects of microscopic parameters on macroscopic parameters(elastic modulus E,Poisson ratio v,uniaxial compressive strengthσc,and ratio of crack initial stress to uniaxial compressive strengthσci/σc)in order to obtain the actual uniform design talbe.The calculation equations of the microscopic and macroscopic parameters of rock materials can be established by the actual uniform design table and the regression analysis and thus the PFC3D microscopic parameters can be quantitatively determined.The PFC3D simulated results of the intact and pre-cracked rock specimens under uniaxial and triaxial compressions(including the macroscopic mechanical parameters,stress−strain curves and failure process)are in good agreement with experimental results,which can prove the validity of the calculation equations of microscopic and macroscopic parameters. 展开更多
关键词 quantitative relationship of microscopic and macroscopic parameters uniform design method three-dimensional particle flow code(PFC3D) ROCK
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Macro and meso characteristics evolution on shear behavior of rock joints 被引量:1
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作者 李凯辉 曹平 +1 位作者 张科 钟涌芳 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期3087-3096,共10页
Direct shear tests were conducted on the rock joints under constant normal load(CNL), while the acoustic emission(AE) signals generated during shear tests were monitored with PAC Micro-II system. Before and after shea... Direct shear tests were conducted on the rock joints under constant normal load(CNL), while the acoustic emission(AE) signals generated during shear tests were monitored with PAC Micro-II system. Before and after shearing, the surfaces of rock joints were measured by the Talysurf CLI 2000. By correlating the AE events with the shear stress-shear displacement curve, one can observe four periods of the whole course of shearing of rock joints. By the contrast of AE location and actual damage zone, it is elucidated that the AE event is related to the morphology of the joint. With the increase of shearing times, the shear behavior of rock joints gradually presents from the response of brittle behavior to that of ductile behavior. By combining the results of topography measurement, four morphological parameters of joint surface, S p(the maximum height of joint surface), N(number of islands), A(projection area) and V(volume of joint) were introduced, which decrease with shearing. Both the joint roughness coefficient(JRC) and joint matching coefficient(JMC) drop with shearing, and the shear strength of rock joints can be predicted by the JRC-JMC model. It establishes the relationship between micro-topography and macroscopic strength, which have the same change rule with shearing. 展开更多
关键词 rock joint shear behavior surface morphology acoustic emission joint roughness coefficient (JRC) joint matchingcoefficient (JMC)
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