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基于离散元—有限元耦合数值方法的白云岩地层盾构滚刀破岩能力研究
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作者 齐明山 王祥 +1 位作者 王春凯 陈光友 《工具技术》 北大核心 2025年第3期85-93,共9页
盾构滚刀的破岩能力是影响盾构掘进的关键因素之一。以贵阳地铁三号线为工程依托,结合实际工程地质概况和相关施工参数,建立离散元—有限元耦合精细化滚刀破岩模型,利用Python接口并基于PSO粒子群优化算法得到最优细观参数,研究盾构掘... 盾构滚刀的破岩能力是影响盾构掘进的关键因素之一。以贵阳地铁三号线为工程依托,结合实际工程地质概况和相关施工参数,建立离散元—有限元耦合精细化滚刀破岩模型,利用Python接口并基于PSO粒子群优化算法得到最优细观参数,研究盾构掘进过程中不同贯入度下的单、双刃滚刀组合,以及不同安装半径下单刃滚刀和正面滚刀组合对盾构滚刀破岩能力的影响,并结合理论预测模型进行验证。结果表明:在贯入度较小时,滚刀所受的垂直力呈线性增加趋势;随着贯入度增大,滚刀对岩体的破碎效果变好,最后趋于稳定;单刃滚刀旋转破岩时,随着安装半径的增大,滚刀所受的垂直力在波动中缓慢增大;正面滚刀组合破岩的过程是逐步破碎岩体并均匀剥离碎裂岩体的过程,组合破岩能在一定程度上降低滚刀所受的垂直力。通过滚入度和安装半径对滚刀力学性能和破岩效果分析和验证,为盾构隧道工程中滚刀破岩参数的设计提供参考。 展开更多
关键词 隧道工程 离散元—有限元耦合 盾构滚刀 安装半径 贯入度 破岩效果
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粗粒土力学特性的大型三轴试验及离散元—有限元耦合模拟 被引量:3
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作者 刘重宏 巨能攀 +1 位作者 周新 许烈 《成都理工大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第2期291-302,共12页
本文旨在探究粗粒土的力学特性,并揭示细观力学组构与宏观变形特征之间的内在关系。综合室内大型三轴试验及离散元—有限元耦合技术,建立还原大粒径块石含量及形状的粗粒土三维数值模型,基于柔性围压加载,考虑Rigid Block刚性块优化块... 本文旨在探究粗粒土的力学特性,并揭示细观力学组构与宏观变形特征之间的内在关系。综合室内大型三轴试验及离散元—有限元耦合技术,建立还原大粒径块石含量及形状的粗粒土三维数值模型,基于柔性围压加载,考虑Rigid Block刚性块优化块石的细观模型,采用PFC程序对粗粒土试样开展了大型三轴试验数值模拟研究,分析粗粒土试样的宏观变形特征及细观力学组构特性。试验研究表明:该试样呈现出应变强化效应,在围压柔性加载下,试样侧向鼓胀变形,试样中部发育“X”形剪切带,竖直方向接触力链逐渐加强,呈现贯通趋势。结合宏观变形特征和细观力学组构综合分析,发现试样在竖直方向由压缩引发的变形程度较试样径向方向由剪切破坏所引发的变形程度更为显著,且竖直各向异性变化程度大于水平各向异性变化程度,这表明细观力学组构与宏观变形特征的变化趋势具有明显的一致性。 展开更多
关键词 三轴试验 粗粒土 离散元—有限元耦合 细观组构
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Tunnel failure in hard rock with multiple weak planes due to excavation unloading of in-situ stress 被引量:12
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作者 CHEN Shao-jie FENG Fan +4 位作者 WANG Ya-jun LI Di-yuan HUANG Wan-peng ZHAO Xing-dong JIANG Ning 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第10期2864-2882,共19页
Natural geological structures in rock(e.g.,joints,weakness planes,defects)play a vital role in the stability of tunnels and underground operations during construction.We investigated the failure characteristics of a d... Natural geological structures in rock(e.g.,joints,weakness planes,defects)play a vital role in the stability of tunnels and underground operations during construction.We investigated the failure characteristics of a deep circular tunnel in a rock mass with multiple weakness planes using a 2D combined finite element method/discrete element method(FEM/DEM).Conventional triaxial compression tests were performed on typical hard rock(marble)specimens under a range of confinement stress conditions to validate the rationale and accuracy of the proposed numerical approach.Parametric analysis was subsequently conducted to investigate the influence of inclination angle,and length on the crack propagation behavior,failure mode,energy evolution,and displacement distribution of the surrounding rock.The results show that the inclination angle strongly affects tunnel stability,and the failure intensity and damage range increase with increasing inclination angle and then decrease.The dynamic disasters are more likely with increasing weak plane length.Shearing and sliding along multiple weak planes are also consistently accompanied by kinetic energy fluctuations and surges after unloading,which implies a potentially violent dynamic response around a deeply-buried tunnel.Interactions between slabbing and shearing near the excavation boundaries are also discussed.The results presented here provide important insight into deep tunnel failure in hard rock influenced by both unloading disturbance and tectonic activation. 展开更多
关键词 rock tunnel weak planes excavation unloading crack propagation energy evolution finite element method/discrete element method(FEM/DEM)
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