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一种改进GPU加速策略的物质点分析方法及其在滑坡模拟中的应用
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作者 王斌 陈鹏林 +3 位作者 王頔 徐顺心 许子凯 吴进东 《工程科学与技术》 北大核心 2025年第4期1-11,共11页
近年来物质点法发展成为岩土工程领域一种重要的大变形数值模拟方法,被广泛应用于滑坡、溃坝、隧道突水突泥等问题的研究。伴随着应用场景的规模化与复杂化,对于方法本身的精度要求和效率需求继而持续增加,导致其计算成本逐步上升,制约... 近年来物质点法发展成为岩土工程领域一种重要的大变形数值模拟方法,被广泛应用于滑坡、溃坝、隧道突水突泥等问题的研究。伴随着应用场景的规模化与复杂化,对于方法本身的精度要求和效率需求继而持续增加,导致其计算成本逐步上升,制约了物质点法进一步在大规模岩土工程问题中的应用。鉴于此,本文提出一种改进图形处理器(GPU)加速策略的物质点法,引入模块化编程思想,采用简洁的多组1维数组的方式进行数据存储结构和基于硬件层级的内存操作管理处理数据竞争,以提高物质点法的模拟效率,解决面向过程的GPU加速策略存在的扩展性问题,并形成高效且灵活的模拟构架。通过模拟铝棒坍塌试验和理想边坡失效过程,结果显示,基于改进GPU加速策略的物质点方法具有较好的并行性,较已有Taichi-GPU物质点法在性能上提升10%左右。最后,应用本文提出的物质点方法模拟再现新磨村滑坡的全过程,得出当物质点数目扩大2.5倍左右时,计算效率提升20倍左右。 展开更多
关键词 GPU加速 物质点法 滑坡 大变形数值模拟
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静压桩的桩侧土压力分布规律数值分析 被引量:2
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作者 马登辉 韩迅 +1 位作者 蔡正银 关云飞 《岩土力学》 EI CAS CSCD 北大核心 2024年第6期1863-1872,共10页
静压桩的贯入挤土效应导致桩侧土压力升高,探究桩贯入挤土导致的桩侧土压力变化对建立合理的桩贯入阻力计算方法具有积极的意义。因此,采用大变形数值模拟方法和南水本构模型对桩在砂土中的贯入过程进行了分析,探究了桩侧土压力系数K的... 静压桩的贯入挤土效应导致桩侧土压力升高,探究桩贯入挤土导致的桩侧土压力变化对建立合理的桩贯入阻力计算方法具有积极的意义。因此,采用大变形数值模拟方法和南水本构模型对桩在砂土中的贯入过程进行了分析,探究了桩侧土压力系数K的变化规律。结果表明:桩贯入过程中土体受力可划分为加载、卸载和应力稳定3个阶段,在桩端到达土体所在深度时土体的应力达到峰值,远离后土体发生应力卸载,最后趋于稳定;在深度方向的最大扰动范围为5D(D为桩直径),沿径向最大扰动范围为6D。桩贯入完成后的桩侧土压力沿深度方向近似表现为线性分布,在桩端处出现极值。桩径的变化对土压力的影响不显著,不同直径的桩侧壁土压力接近。随着界面摩擦系数的增加,桩侧土压力逐渐增大。基于数值分析结果提出了考虑桩−土界面摩擦系数的桩侧土压力计算方法。 展开更多
关键词 砂土 挤土效应 土压力系数 大变形数值模拟
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Case study on the mechanics of NPR anchor cable compensation for large deformation tunnel in soft rock in the Transverse Mountain area,China 被引量:1
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作者 LI Yong ZHENG Jing +3 位作者 HUO Shu-sen WANG Feng-nian HE Man-chao TAO Zhi-gang 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期2054-2069,共16页
A study was conducted to analyze the deformation mechanism of strongly weathered quartz schist in the Daliangshan Tunnel,located in the western Transverse Mountain area.A large deformation problem was experienced duri... A study was conducted to analyze the deformation mechanism of strongly weathered quartz schist in the Daliangshan Tunnel,located in the western Transverse Mountain area.A large deformation problem was experienced during the tunnel construction.To mitigate this problem,a support system was designed incorporating negative Poisson ratio(NPR)anchor cables with negative Poisson ratio effect.Physical model experiments,field experiments,and numerical simulation experiments were conducted to investigate the compensation mechanical behavior of NPR anchor cables.The large deformations of soft rocks in the Daliangshan Tunnel are caused by a high ground stress,a high degree of joint fracture development,and a high degree of surrounding rock fragmentation.A compensation mechanics support system combining long and short NPR anchor cables was suggested to provide sufficient counter-support force(approximately 350 kN)for the surrounding rock inside the tunnel.Comparing the NPR anchor cable support system with the original support system used in the Daliangshan tunnel showed that an NPR anchor cable support system,combining cables of 6.3 m and 10.3 m in length,effectively prevented convergence of surrounding rock deformation,and the integrated settlement convergence value remained below 300 mm.This study provides an effective scientific basis for resolving large deformation problems in deeply buried soft rocks in western transverse mountain areas. 展开更多
关键词 soft rock large deformation NPR anchor cable physical model numerical simulation compensation mechanics
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Anchoring effect and energy-absorbing support mechanism of large deformation bolt 被引量:14
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作者 ZHAO Tong-bin XING Ming-lu +2 位作者 GUO Wei-yao WANG Cun-wen WANG Bo 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第2期572-581,共10页
To research the anchoring effect of large deformation bolt,tensile and drawing models are established.Then,the evolution laws of drawing force,bolt axial force and interfacial shear stress are analyzed.Additionally,th... To research the anchoring effect of large deformation bolt,tensile and drawing models are established.Then,the evolution laws of drawing force,bolt axial force and interfacial shear stress are analyzed.Additionally,the influence of structure element position on the anchoring effect of large deformation bolt is discussed.At last,the energy-absorbing support mechanism is discussed.Results show that during the drawing process of normal bolt,drawing force,bolt axial force and interfacial shear stress all gradually increase as increasing the drawing displacement,but when the large deformation bolt enters the structural deformation stage,these three values will keep stable;when the structure element of large deformation bolt approaches the drawing end,the fluctuation range of drawing force decreases,the distributions of bolt axial force and interfacial shear stress of anchorage section are steady and the increasing rate of interfacial shear stress decreases,which are advantageous for keeping the stress stability of the anchorage body.During the working process of large deformation bolt,the strain of bolt body is small,the working resistance is stable and the distributions of bolt axial force and interfacial shear stress are steady.When a rock burst event occurs,the bolt and bonding interface cannot easily break,which weakens the dynamic disaster degree. 展开更多
关键词 rock burst large deformation bolt numerical simulation pull-out test anchoring effect energy-absorbing mechanism
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