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Dynamic soil-tunnel interaction in layered half-space for incident plane SH waves 被引量:7
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作者 Fu Jia Liang Jianwen Qin Lin 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2016年第4期715-727,共13页
The dynamic soil-tunnel interaction is studied by indirect boundary element method (IBEM), using the model of a rigid tunnel in layered half-space, which is simplified to a single soil layer on elastic bedrock, subj... The dynamic soil-tunnel interaction is studied by indirect boundary element method (IBEM), using the model of a rigid tunnel in layered half-space, which is simplified to a single soil layer on elastic bedrock, subjected to incident plane SH waves. The accuracy of the results is verified through comparison with the analytical solution. It is shown that soil-tunnel interaction in layered half-space is larger than that in homogeneous half-space and this interaction mechanism is essentially different from that of soil-foundation-superstructure interaction. 展开更多
关键词 underground tunnel layered half-space plane SH wave indirect boundary element method soil-tunnel interaction site dynamic characteristics
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Dynamic interaction of twin vertically overlapping lined tunnels in an elastic half space subjected to incident plane waves 被引量:5
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作者 Zhongxian Liu Yirui Wang Jianwen Liang 《Earthquake Science》 CSCD 2016年第3期185-201,共17页
The scattering of plane harmonic P and SV waves by a pair of vertically overlapping lined tunnels buried in an elastic half space is solved using a semi-analytic indirect boundary integration equation method. Then the... The scattering of plane harmonic P and SV waves by a pair of vertically overlapping lined tunnels buried in an elastic half space is solved using a semi-analytic indirect boundary integration equation method. Then the effect of the distance between the two tunnels, the stiffness and density of the lining material, and the incident frequency on the seismic response of the tunnels is investigated. Numerical results demonstrate that the dynamic interaction between the twin tunnels cannot be ignored and the lower tunnel has a significant shielding effect on the upper tunnel for high-frequency incident waves, resulting in great decrease of the dynamic hoop stress in the upper tunnel; for the low-frequency incident waves, in contrast, the lower tunnel can lead to amplification effect on the upper tunnel. It also reveals that the frequency-spectrum characteristics of dynamic stress of the lower tunnel are significantly different from those of the upper tunnel. In addition, for incident P waves in low-frequency region, the soft lining tunnels have significant amplification effect on the surface displacement amplitude, which is slightly larger than that of the corresponding single tunnel. 展开更多
关键词 Vertically overlapping lined tunnels Scattering Indirect boundary integration equation method(IBIEM) soil-tunnel dynamic interaction
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Soil pressure and pore pressure for seismic design of tunnels revisited: considering water-saturated, poroelastic half-space 被引量:4
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作者 Zhu Jun Liang Jianwen 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2020年第1期17-36,共20页
This paper describes a systematic study on the fundamental features of seismic soil pressure on underground tunnels, in terms of its magnitude and distribution, and further identifi es the dominant factors that signif... This paper describes a systematic study on the fundamental features of seismic soil pressure on underground tunnels, in terms of its magnitude and distribution, and further identifi es the dominant factors that signifi cantly infl uence the seismic soil pressure. A tunnel embedded in water-saturated poroelastic half-space is considered, with a large variety of model and excitation parameters. The primary features of both the total soil pressure and the pore pressure are investigated. Taking a circular tunnel as an example, the results are presented using a fi nite element-indirect boundary element(FE-IBE) method, which can account for dynamic soil-tunnel interaction and solid frame-pore water coupling. The effects of tunnel stiffness, tunnel buried depth and input motions on the seismic soil pressure and pore pressure are also examined. It is shown that the most crucial factors that dominate the magnitude and distribution of the soil pressure are the tunnel stiffness and dynamic soil-tunnel interaction. Moreover, the solid frame-pore water coupling has a prominent infl uence on the magnitude of the pore pressure. The fi ndings are benefi cial to obtain insight into the seismic soil pressure on underground tunnels, thus facilitating more accurate estimation of the seismic soil pressure. 展开更多
关键词 seismic soil pressure seismic pore pressure dynamic soil-tunnel interaction water-saturated POROELASTIC
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桥桩-土-隧道体系动力相互作用的振动台试验研究
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作者 许洪春 张亚楠 +1 位作者 赵东旭 白晓晓 《地震工程学报》 CSCD 北大核心 2024年第5期1063-1073,共11页
为研究地震作用下桥桩-土-隧道体系的动力响应特性,依托某实际工程,设计出8个试验工况,选取3种不同地震波类型及地震强度,开展几何相似比为1/30的振动台模型试验,并从体系的固有频率和加速度响应等方面进行分析。通过对比分析各个工况,... 为研究地震作用下桥桩-土-隧道体系的动力响应特性,依托某实际工程,设计出8个试验工况,选取3种不同地震波类型及地震强度,开展几何相似比为1/30的振动台模型试验,并从体系的固有频率和加速度响应等方面进行分析。通过对比分析各个工况,结果表明:桥桩的存在会削弱周围土体以及侧穿隧道的加速度响应,而隧道的存在则会放大场地土以及附近桥桩的加速度响应;不同类型的地震波对桥桩-土-隧道体系动力响应的影响不同。试验结论可为类似工程的抗震设计提供一定的理论指导。 展开更多
关键词 桥桩-土-隧道体系 动力相互作用 振动台试验 加速度响应
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土–结构动力相互作用分析打桩引起相邻隧道振动 被引量:24
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作者 李怡闻 周健 《岩土工程学报》 EI CAS CSCD 北大核心 2007年第1期60-65,共6页
某集装箱码头打桩施工紧邻拟建的大直径越江隧道,桩身长度达到50 m,隧道直径约18 m。为了分析打桩对该隧道可能产生的振动影响,采用有限元模拟打桩引起的隧道振动。该问题的本质是桩–土–隧道三者组成的体系在冲击荷载下的整体动力响... 某集装箱码头打桩施工紧邻拟建的大直径越江隧道,桩身长度达到50 m,隧道直径约18 m。为了分析打桩对该隧道可能产生的振动影响,采用有限元模拟打桩引起的隧道振动。该问题的本质是桩–土–隧道三者组成的体系在冲击荷载下的整体动力响应。桩与土、土与隧道之间的力学关系是这类问题的重点和难点。这种力学关系实质上是动荷载作用下的动力接触关系。利用ANSYS的瞬态分析和接触单元,通过对动力参数和接触参数进行合理设置,在验证了某工程实例的基础上,对该问题进行了有效的数值模拟,从而分析出隧道在打桩冲击荷载下的振动规律,为确定打桩间距、打桩深度以及打桩能量等重要参数提供参考。 展开更多
关键词 桩-土-隧道动力相互作用 动力接触 有限元分析
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土体-隧道群相互作用体系地震响应研究 被引量:13
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作者 王国波 王亚西 +1 位作者 于艳丽 陈斌 《中国公路学报》 EI CAS CSCD 北大核心 2015年第7期66-76,共11页
针对新出现的土-隧道群相互体系,以某实际紧邻多孔交叠盾构隧道工程为研究背景,建立了土体-隧道群相互作用体系计算模型,通过全面的参数分析探讨了该复杂体系的地震响应规律。考虑的主要影响因素包括土体方面(土的分层特性)和隧道方面(... 针对新出现的土-隧道群相互体系,以某实际紧邻多孔交叠盾构隧道工程为研究背景,建立了土体-隧道群相互作用体系计算模型,通过全面的参数分析探讨了该复杂体系的地震响应规律。考虑的主要影响因素包括土体方面(土的分层特性)和隧道方面(隧道的半径、空间间距、埋深),并采用等价线性化方法考虑了土体的非线性特性。结果表明:隧道的半径、埋深和空间间距对场地土和隧道的地震响应影响显著;对于复杂的土体-隧道群体系而言,由水平地震动引起的土体竖向加速度响应应引起足够的重视。 展开更多
关键词 隧道工程 地震响应 参数分析 土-隧道群动力相互作用体系
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Dynamic soil-tunnel interaction in layered half-space for incident P-and SV-waves 被引量:4
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作者 Jia Fu Jianwen Liang Lin Qin 《Earthquake Science》 CSCD 2015年第4期275-284,共10页
The dynamic soil-tunnel interaction is studied by the model of a rigid tunnel embedded in layered half-space, which is simplified as a single soil layer on elastic bedrock to the excitation of P- and SV-waves. The ind... The dynamic soil-tunnel interaction is studied by the model of a rigid tunnel embedded in layered half-space, which is simplified as a single soil layer on elastic bedrock to the excitation of P- and SV-waves. The indirect boundary element method is used, combined with the Green' s function of distributed loads acting on inclined lines. It is shown that the dynamic characteristics of soil-tunnel interaction in layered half-space are different much from that in homoge- neous half-space, and that the mechanism of soil-tunnel interaction is also different much from that of soil-founda- tion-superstructure interaction. For oblique incidence, the tunnel response for in-plane incident SV-waves is com- pletely different from that for incident SH-waves, while the tunnel response for vertically incident SV-wave is very similar to that of vertically incident SH-wave. 展开更多
关键词 Underground tunnel Layered half-space P-wave and SV-wave Indirect boundary element method soil-tunnel interaction ~ Site dynamic characteristics
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水下双层衬砌隧道对平面SV波散射问题的解 被引量:3
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作者 朱赛男 陈凯江 李伟华 《西安建筑科技大学学报(自然科学版)》 北大核心 2023年第2期217-226,共10页
将水层和水下土体分别视为无黏性流体和饱和多孔介质,基于无黏性流体波动理论和Biot饱和多孔介质波动理论,考虑水-饱和土-隧道动力相互作用,借助Hankel函数积分变换法,给出水下双层衬砌隧道对平面SV波散射问题的解.与以往研究中的“大... 将水层和水下土体分别视为无黏性流体和饱和多孔介质,基于无黏性流体波动理论和Biot饱和多孔介质波动理论,考虑水-饱和土-隧道动力相互作用,借助Hankel函数积分变换法,给出水下双层衬砌隧道对平面SV波散射问题的解.与以往研究中的“大圆弧假定”方法相比,Hankel函数积分变换法可以有效地将饱和土中散射波势函数的表达式从柱坐标系直接转换到直角坐标系下,更有利于水下双层衬砌隧道场地边界条件的处理.在解析解的基础上,重点分析内外衬砌刚度比和内外衬砌厚度比对水下双层衬砌隧道地震响应的影响.研究结果表明:(1)内外衬砌刚度比和厚度比的变化对隧道位移和孔压集中系数影响不明显;(2)随着内外衬砌刚度比的增加,内衬砌动应力集中系数明显增加;(3)随着内外衬砌厚度比的增加,内衬砌动应力集中系数减小. 展开更多
关键词 水下双层衬砌隧道 水-饱和土-隧道动力相互作用 散射问题 地震响应 SV波
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平面P_(1)波入射下双层衬砌对海底隧道地震响应的影响
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作者 朱赛男 陈艳华 +1 位作者 王宁 李伟华 《岩土工程学报》 EI CAS CSCD 北大核心 2023年第S02期122-127,共6页
将海水和海床土分别视为理想流体和饱和多孔介质,基于理想流体波动理论和Biot流体饱和多孔介质理论,考虑海水-海床土-隧道结构动力相互作用,利用波函数展开法和Hankel函数积分变换法,给出平面P1波入射下海底双层衬砌隧道地震响应的解析... 将海水和海床土分别视为理想流体和饱和多孔介质,基于理想流体波动理论和Biot流体饱和多孔介质理论,考虑海水-海床土-隧道结构动力相互作用,利用波函数展开法和Hankel函数积分变换法,给出平面P1波入射下海底双层衬砌隧道地震响应的解析解。与以往的“大圆弧假定”方法相比,Hankel函数积分变换法可以将海底双层衬砌隧道场地中的散射波场势函数从柱坐标系下直接转换到直角坐标系下,可以更好地处理海水层表面和水土交界面处边界条件。在解析解的基础上,分析内外衬砌刚度比和内外衬砌厚度比对海底双层衬砌隧道位移响应和应力响应的影响,对海底双层衬砌隧道的抗减震设计提出合理建议。研究结果表明:①海底双层衬砌隧道的应力响应明显小于同参数条件下的单层衬砌隧道;②内外衬砌刚度比和厚度比对隧道位移响应的影响与隧道衬砌位置有关;③随着内外衬砌刚度比和厚度比的增加,隧道外衬砌应力响应均有减小趋势;④综合内外衬砌刚度比和厚度比对隧道位移响应和应力响应影响,海底双层衬砌隧道抗减震设计时,隧道内外衬砌刚度比和厚度比的选取范围分别建议为E_(2)/E_(1)≤3和δ_(2)/δ_(1)≤2。 展开更多
关键词 海底双层衬砌隧道 海水-海床土-隧道结构动力相互作用 散射问题 解析解 地震响应
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