期刊文献+
共找到6篇文章
< 1 >
每页显示 20 50 100
列车震动荷载对边坡稳定性的影响分析 被引量:3
1
作者 李华东 邹超群 《岩土工程技术》 2018年第4期177-182,共6页
以某高速铁路隧道出口边坡为研究对象,在边坡工程地质条件、岩体结构特征及变形破坏特征调查分析的基础上,阐明了边坡的变形破坏模式为受卸荷结构面控制的块体顺坡向滑塌破坏。通过建立边坡的三维数值模型,对比分析了边坡在天然工况(施... 以某高速铁路隧道出口边坡为研究对象,在边坡工程地质条件、岩体结构特征及变形破坏特征调查分析的基础上,阐明了边坡的变形破坏模式为受卸荷结构面控制的块体顺坡向滑塌破坏。通过建立边坡的三维数值模型,对比分析了边坡在天然工况(施工平台及隧道开挖前)和列车震动荷载工况下,沿隧道走向剖面上的应力、变形及剪应变增量变化特征,并分析了施工平台开挖及列车震动荷载对边坡稳定性的影响,得出了施工平台开挖及列车震动荷载,可能在开挖面附近及坡内软岩夹层中引起局部的变形破坏,对边坡整体稳定性影响较小的结论。 展开更多
关键词 列车震动荷载 边坡 变形破坏模式 稳定性
下载PDF
基于RTLCA的高铁运行震动下RC桥结构劣化分析
2
作者 崔铁军 马云东 《应用力学学报》 CAS CSCD 北大核心 2016年第1期162-167,189-190,共6页
为了解高铁列车产生振动对钢筋混凝土桥(RC桥)结构可靠性劣化的影响,分析桥的寿命、可用性、极限失效概率,首次使用基于可更新的生命周期分析法(RTLCA),模拟了桥结构可靠性劣化过程。过程模拟考虑了桥是可维护的,并假设劣化只来源... 为了解高铁列车产生振动对钢筋混凝土桥(RC桥)结构可靠性劣化的影响,分析桥的寿命、可用性、极限失效概率,首次使用基于可更新的生命周期分析法(RTLCA),模拟了桥结构可靠性劣化过程。过程模拟考虑了桥是可维护的,并假设劣化只来源于列车行驶产生的震动。研究结果表明,不同失效概率值(a值)对系统可用性、系统寿命、系统极限失效概率均有影响,且形式上与现有文献得到的趋势相似。对文中提到的实例桥参数进行分析得到:极限失效概率大约在120年趋于稳定;小的失效概率值有利于长期的桥结构使用,可预计桥的明显退化波动时间段为30年~40年。 展开更多
关键词 高速铁路 RC桥 列车运行震动 RTLCA 结构劣化 过程模拟
原文传递
沈阳站地下旅客通道变形缝渗漏整治施工 被引量:1
3
作者 朱灿 黄艳春 吴丽华 《辽宁建材》 2004年第6期52-53,共2页
本文对沈阳站地下旅客通道渗漏的原因分析、整治原则、方案制定、材料选用、施工工艺进行了比较全面的论述。
关键词 列车震动 地表积水 注浆堵漏 密封 变形 时效
下载PDF
鞍山站地下通道封涌堵漏结合加固补强引发的思考
4
作者 于洪庆 《辽宁建材》 2007年第7期41-42,共2页
本文通过在鞍山站地下旅客通道渗漏、喷涌修缮中,堵漏封涌与结构加固补强、装饰抹灰与防水整体考虑综合整治,进一步引发对房屋病害整治的科学思考。
关键词 假变形缝 列车震动 渗漏喷涌 封涌堵漏 加固补强 埋管注浆 应急处置 综合整治
下载PDF
Running safety and seismic optimization of a fault-crossing simply-supported girder bridge for high-speed railways based on a train-track-bridge coupling system 被引量:4
5
作者 JIANG Hui ZENG Cong +3 位作者 PENG Qiang LI Xin MAXin-yi SONG Guang-song 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2449-2466,共18页
Bridges crossing active faults are more likely to suffer serious damage or even collapse due to the wreck capabilities of near-fault pulses and surface ruptures under earthquakes.Taking a high-speed railway simply-sup... Bridges crossing active faults are more likely to suffer serious damage or even collapse due to the wreck capabilities of near-fault pulses and surface ruptures under earthquakes.Taking a high-speed railway simply-supported girder bridge with eight spans crossing an active strike-slip fault as the research object,a refined coupling dynamic model of the high-speed train-CRTS III slab ballastless track-bridge system was established based on ABAQUS.The rationality of the established model was thoroughly discussed.The horizontal ground motions in a fault rupture zone were simulated and transient dynamic analyses of the high-speed train-track-bridge coupling system under 3-dimensional seismic excitations were subsequently performed.The safe running speed limits of a high-speed train under different earthquake levels(frequent occurrence,design and rare occurrence)were assessed based on wheel-rail dynamic(lateral wheel-rail force,derailment coefficient and wheel-load reduction rate)and rail deformation(rail dislocation,parallel turning angle and turning angle)indicators.Parameter optimization was then investigated in terms of the rail fastener stiffness and isolation layer friction coefficient.Results of the wheel-rail dynamic indicators demonstrate the safe running speed limits for the high-speed train to be approximately 200 km/h and 80 km/h under frequent and design earthquakes,while the train is unable to run safely under rare earthquakes.In addition,the rail deformations under frequent,design and rare earthquakes meet the safe running requirements of the high-speed train for the speeds of 250,100 and 50 km/h,respectively.The speed limits determined for the wheel-rail dynamic indicators are lower due to the complex coupling effect of the train-track-bridge system under track irregularity.The running safety of the train was improved by increasing the fastener stiffness and isolation layer friction coefficient.At the rail fastener lateral stiffness of 60 kN/mm and isolation layer friction coefficients of 0.9 and 0.8,respectively,the safe running speed limits of the high-speed train increased to 250 km/h and 100 km/h under frequent and design earthquakes,respectively. 展开更多
关键词 high-speed train train-track-bridge interaction fault-crossing ground motion train operation safety speed limit track structure optimization
下载PDF
Dynamic effect of heavy-haul train on seismic response of railway cable-stayed bridge 被引量:5
6
作者 ZHU Zhi-hui GONG Wei +3 位作者 WANG Kun LIU Yu DAVIDSON Michael T JIANG Li-zhong 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期1939-1955,共17页
This paper focuses on understanding and evaluating the dynamic effect of the heavy-haul train system on the seismic performance of a long-span railway bridge. A systematic study on the effect of heavy-haul trains on b... This paper focuses on understanding and evaluating the dynamic effect of the heavy-haul train system on the seismic performance of a long-span railway bridge. A systematic study on the effect of heavy-haul trains on bridge seismic response has been conducted, considering the influence of vehicle modeling strategies and dynamic characteristics of the seismic waves. For this purpose, the performance of a long-span cable-stayed railway bridge is assessed with stationary trains atop it, where the heavy-haul vehicles are modeled in two different ways: the multi-rigid body model with suspension system and additional mass model. Comparison of the bridge response in the presence or absence of the train system has been conducted, and the vehicle loading situation, which includes full-load and no-load, is also discussed. The result shows that during the earthquake, the peak moment of the main girder and peak stress of stay cables increase by 80% and by 40% in the presence of fully loaded heavy-haul trains, respectively. At the same time, a considerable decrease appears in the peak acceleration of the main girder. This proves the existence of the damping effect of the heavy-haul train system, and this effect is more obvious for the fully loaded vehicles. Finally, this paper proposes an efficient vehicle modeling method with 2 degrees of freedom(DOF) for simplifying the treatment of the train system in bridge seismic checking. 展开更多
关键词 train-bridge interaction heavy-haul train cable-stayed bridge EARTHQUAKE live load
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部