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1.
不同循环荷载作用下软黏土动力特性对比试验研究   总被引:1,自引:1,他引:0       下载免费PDF全文
研究交通循环荷载作用下路基软黏土的长期沉降和动力力学性质对路基设计具有重要意义。本文通过GDS动三轴实验,研究(不排水条件下)振动波形、排水条件以及动应力比三因素对于软黏土动应变和动孔压的影响。试验结果显示:排水条件对饱和软黏土的动应变和动孔压影响最大,在部分排水条件下动孔压逐渐消散,动应变迅速发展。振动波形对软黏土动应变和动孔压影响较大,单向纯压半正弦波作用下软黏土的动应变和动孔压较容易达到最大值。在较少的振次内动应力比对孔压影响较大,但在归一化的孔压模型中,动应力比对孔压影响较小。通过以上分析,本文建立包含循环振次和纯压因素的孔压增长模型。  相似文献   

2.
针对高速铁路列车荷载激励输入特性及无砟轨道路基在动载作用下的动力响应问题,建立了轨道—路基三维有限元数值模型,确立了单元结构类型、路基本构模型及结构材料参数的选取方法及依据。根据列车荷载分布特点及其激励输入特性,采用2车厢8轮对车辆离散模型,通过Fourier变换获得了相邻车厢两个转向架通过轨道时轨下扣件点的反力时程曲线,在此基础上利用实测数据验证了模型的合理性和适用性。以运行速度300 km/h,轴重为170 kN的高速列车为例,分别计算CRTSⅡ型板式无砟轨道路基及双块式无砟轨道路基的竖向动应力、竖向动位移及动加速度,揭示上述响应规律与轨道路基结构之间的相关性。  相似文献   

3.
我国众多铁路干线分布于深季节冻土地区。铁路路基土层的冻融状态随着季节的交替变化而改变,相应的列车行驶时引起的路基动应力分布也有所不同。考虑路基土体的参振效应,通过改进车辆-轨道-路基垂向耦合动力学模型获取不同季节列车行驶振动荷载时程,进而通过动力有限元数值模拟方法,研究季节变化对列车行驶引起的路基动应力分布规律的影响。研究表明:路基土中的动应力幅值及其沿路基深度的分布规律与该时期路基土的冻融状态密切相关,基于此结论,提出深季节冻土地区不同季节铁路冻土下限范围内路基动应力的简化计算方法。该研究对于优化季节性冻土地区铁路路基设计方法,完善路基长期动力稳定性能评价方法等具有重要意义。  相似文献   

4.
以南京大胜关长江大桥为研究对象,建立其车桥耦合动力分析模型,采用逐步积分法求解动力方程,以动力系数作评判标准,讨论行车速度、阻尼比、行车方向、车辆数、吊杆布置方式等参数对动力性能的影响.结果表明:动力系数随行车速度的提高而增大;吊杆索力的动力系数与无应力索长成反比;随着阻尼比的增大,各构件动力系数均有所降低;同向行驶时...  相似文献   

5.
高速铁路新型路堑基床结构动力响应分析   总被引:3,自引:2,他引:1       下载免费PDF全文
研制出一种新的防排水结构层用以控制膨胀土路基的含水率变化,从而达到对新建云—桂高速铁路膨胀土地段整治的目的。本文采用FLAC~(3D)有限差分软件研究该新型路堑基床结构(基床中设置新型防排水结构层)在列车荷载作用下动力响应规律,并利用现场试验结果对数值研究结果进行验证。研究表明:新型基床中道砟和新型防排水结构层对动应力衰减贡献较大;新型防排水结构层对竖向动应力、剪应力衰减作用明显,增强了基床结构的动力稳定性;新型基床结构能够更有效地控制基床的动位移;新型基床中振动速度和加速度随深度的增加而减小,道砟对振动速度和加速度的衰减作用明显。新型路堑基床结构振动速度和动应力的现场实测与数值分析规律基本一致,且实测值与计算值大小相近。研究成果可为特殊土地区高速铁路基床的设计、施工及其动力响应研究提供参考。  相似文献   

6.
车高凤  钟秀梅  马金莲  柴少峰  王平 《地震工程学报》2021,43(5):1208-1213,1243
土体动力特性主要与其受力状态、土体加载类型、试验控制方式以及荷载等参数有关。以往非饱和黄土累积变形试验研究通过单向动应力加载方式开展相关研究,并不能真实反映土体受力状态。现运用WF-12440型动三轴-空心圆柱扭剪试验系统,通过单向荷载和双向荷载两种不同的动应力加载方式,进行黄土的长期重复载荷试验,对比不同动应力加载方式对非饱和黄土累积变形发展特征的影响。试验结果发现:黄土在单向荷载或双向荷载作用下,其软化指数均随着循环次数的增加,呈非线性减小的趋势,在相同循环振次时,土体软化指数随着动应力幅值的增大而减小;黄土在不同加载方式作用下,软化指数减小速率在循环振次100次以内较快,后期随振次增加,土体软化速率逐渐趋于平稳;黄土在双向荷载作用下,当轴向动荷载较小时,径向荷载的施加,将加速黄土的软化程度,随着轴向动荷载的增大,径向荷载对黄土软化的影响逐渐减弱,其对于黄土变形的影响存在一临界轴向循环动应力。本研究的开展,可更准确地进行不同荷载耦合变化下,黄土场地震陷评估或路基土体变形计算,实现有效控制路基的整体稳定和工后沉降量,以期根据路基土参数预测后期沉降,极具重要的科研和工程意义。  相似文献   

7.
针对广西上林县原状红黏土开展一系列循环加载动三轴试验,分析天然含水率、围压与固结应力比等对红黏土动力特性,包话动应力-动应变关系、动弹性模量以及阻尼比等的影响来研究循环荷载作用下红黏土的动力特性。试验结果表明:广西原状红黏土动应力-动应变关系曲线接近双曲线;由于初始剪应力的影响,达到相同的动应变,在均压固结下所需的动应力比在偏压固结下所需动应力要小;动弹性模量随着动应变的增加而减小,且减小幅度随应变增加逐渐减小,初始应力状态对动弹性模量的影响最为显著;固结应力比、围压、含水率和振动次数等对阻尼比均有影响,综合反映在阻尼比随动应变增加而减小,阻尼比离散性较大,取值范围在0.05~0.20之间。利用Konder双曲线模型对试验数据进行拟合,得到相关参数,可为广西地区原状红黏土动力特性设计和数值计算提供一定的理论和参数支持。  相似文献   

8.
橡胶材料具有廉价、阻尼大、弹性变形较好等优点,将废旧轮胎颗粒加入路基填料中可在减少环境污染的同时提高路基抗震性能。本文通过橡胶砂基本物性试验和动三轴试验研究了不同混合比橡胶砂的减震性能,分析对比了不同混合比橡胶砂和纯砂的动弹性模量、阻尼比、动强度、内摩擦角及动应力-应变滞回曲线的变化规律。得出结论:橡胶砂动弹性模量受动应变影响较大,当动应变较大时橡胶砂的弹性模量大于纯砂;掺入橡胶颗粒可提高纯砂的阻尼比和动强度;实际工程应用中需要考虑橡胶砂混合比的影响。  相似文献   

9.
冲击载荷下孔洞附近的动应力集中   总被引:1,自引:0,他引:1  
本文用微闪系统研究了冲击载荷作用下,半无限弹性平面中五种型式孔洞附近的动应力分布和动应力集中问题。文中分析了弹性波对孔洞的绕射过程,并测定了几种型式孔洞周边的动应力分布和动应力集中系数随时间的变化规律。  相似文献   

10.
基于动三轴试验建立的冻结、融化状态青藏铁路粉质黏土的累积塑性应变模型,考虑路基土体动应力的作用,二次开发适用于青藏铁路高温极不稳定多年冻土区路基长期永久变形的蠕变法则,并在既有的黏弹塑性本构模型将其引入,计算列车荷载作用下青藏铁路路基的永久变形。分析结果显示:(1)列车荷载作用下距离路基顶面不同埋深土体的累积动力永久应变随着等效振次的增加而增加,并且先期的增长速度较快,最终趋于稳定,长期沉降在路基中心处最大,最终在路基距离轨道最远处几乎为零;(2)随着列车速度的增加,路基中心永久变形逐渐增大;(3)随着列车轴重的增加,路基中心永久变形逐渐增大,并且随着埋深的增加,列车轴重对路基永久变形的影响逐渐变小;(4)随着冻结深度的增加,路基表面累积塑性变形呈降低趋势;随着融化深度的增加,路基表面累积永久变形增加。  相似文献   

11.
铁路大跨度简支钢桁梁桥车-桥耦合振动研究   总被引:3,自引:0,他引:3       下载免费PDF全文
陈敦  王根会  穆彦虎  彭惠 《地震工程学报》2017,39(5):820-828,852
桥梁作为线路工程中不可或缺的重要枢纽,对列车通过桥梁时,桥梁和车辆之间相互作用的问题迫切需要做出解答,特别是针对铁路钢桁梁,并考虑大跨度简支特性的车-桥耦合振动问题研究更具有一定的理论与实际意义。以黄韩侯铁路新黄河特大桥156 m简支钢桁梁桥作为工程背景,建立车辆动力模型、桥梁有限元模型并考虑轮轨关系,以蛇形运动和轨道不平顺作为系统的自激激励源,利用大型有限元软件ANSYS以及UM(Universal Mechanism)动力学分析软件联合进行仿真分析,实现单个机车、编组客车和编组货车以设计时速通过桥梁时对大跨度简支钢桁梁桥车-桥耦合振动的研究。经过计算分析得出:大跨度钢桁梁桥的横向刚度相对较小;不同编组情况以设计时速通过桥梁时,车辆和桥梁的各项动力响应参数均在规范允许的范围之内;编组货车通过桥梁时,桥梁跨中横向、竖向加速度较之其他编组情况要大。  相似文献   

12.
Model testing in laboratory, as an effective alternative to field measurement, provides valuable data to understand railway׳s dynamic behaviors under train moving loads. This paper presents comprehensive experimental results on track vibration and soil response of a ballastless high-speed railway from a full-scale model testing with simulated train moving loads at various speeds. A portion of a realistic ballastless railway comprising slab track, roadbed, subgrade, and subsoil was constructed in a larger steel box. A computer-controlled sequential loading system was developed to generate equivalent vertical loadings at the track structure for simulating the dynamic excitations due to train׳s movements. Comparisons with the field measurements show that the proposed model testing can accurately reproduce dynamic behaviors of the track structure and underlying soils under train moving loads. The attenuation characteristics of dynamic soil stresses in a ballastless slab track is found to have distinct differences from that in a ballasted track. The model testing results provide better understanding of the influence of dynamic soil–structure interaction and train speed on the response of track structure and soils.  相似文献   

13.
深季节冻土区列车行驶路基振动数值模拟研究   总被引:1,自引:0,他引:1  
分析大庆深季节冻土区铁路路基的冬季现场加速度监测结果,获得了列车经过时铁路路基冻结地表振动加速度的时程特性及其衰减规律,并运用动力有限元方法进行了动力响应分析。研究结果表明:①随着列车行驶速度的增大,路基振动加速度亦增大,且重载货车振动响应大于高速客车;②列车行驶引起的路基振动加速度幅值,随着距线路中心距离的增加而迅速衰减;③应用有限元方法分析列车行驶路基振动特性是可行的。本文为研究深季节冻土区铁路路基振动特性提供了一种分析方法,对加深了解深季节冻土区铁路路基振动特性具有重要意义。  相似文献   

14.
The vibration characteristics and attenuation of the subgrade caused by passing trains in a seasonally frozen region of Daqing, China are investigated. Three field experiments were conducted during different times through the year, in normal, freezing and thawing periods, respectively, and the influence of the season, train speed and train type, is described in this paper. The results show that: (l) the vertical component is the greatest among the three components of the measured vibration near the rail track, and as the distance to the railway track increases, the dominant vibration depends on the season. (2) Compared with the vibration in the normal period, the vertical and longitudinal vibrations increase while the lateral vibration decreases in the freezing period. However, in the thawing period, the vertical and longitudinal vibrations decrease, and the lateral vibration increases. (3) As train speeds increase, the subgrade vibration increases. (4) The vibration induced by a freight train is greater than by a passenger train. These observations provide a better understanding of the vibration and dynamic stability of the subgrade and may be useful in developing criteria for railway and building construction in cold regions.  相似文献   

15.
Prediction and control of the permanent settlement of a track caused by traffic loading from trains is crucial to high-speed railway design and maintenance. In this study, a unified prediction model of accumulative deformation of geomaterials used in railway construction subjected to cyclic loadings is introduced and calibrated using physical model testing. Based on this versatile model, a calculation approach to determine the track structure settlement under repeated loadings caused by the movement of the wheel axle of the train is proposed. Regression analysis on the physical model testing is adopted to determine the parameters involved in the computational approach. Comparison of model test data and computed results shows that the parameters obtained from the back-analysis are consistent throughout the various testing conditions, and the proposed calculation approach is capable of satisfactorily predicting the accumulative settlement of the railway roadbed and subgrade soil for various axle loads and loading cycles. A case study of a high-speed railway is performed to demonstrate the feasibility of the proposed approach in realistic engineering applications. The computation results from the settlement development of a roadbed and subgrade soil are presented and discussed.  相似文献   

16.
针对多年冻土区青藏铁路列车荷载振动作用下的动稳定性,通过对北麓河和二道沟三个典型铁路路基横断面振动响应的二分量加速度观测,对比分析客运列车和货运列车引起的路基振动特性和衰减规律,研究不同防护形式路基的列车振动响应。结果表明,路基上的振动作用主要集中在40~80Hz频率范围内;防护形式对路基的列车动力响应有明显影响,热棒加碎石路基动力响应最小,其次为碎石防护路基,未采取任何防护的路基铁轨上的动力响应最大,建议对未采取防护的路基进行防护。分析结论为青藏铁路列车作用下的路基动稳定性评估提供实测依据,对多年冻土区的路基稳定性研究提供参考。  相似文献   

17.
Xinjiang Line of New Eurasian Continental Bridge is the important lifeline project inwestern China. Various disasters, such as flood, strong wind, sandstorm, and roadbed disasters,have been seriously affecting the railway transportation. The field investigation and analysis on thedata collected since 1959 show that: serious floods often occurred when the rain intensity reached25 mm/h or 30 mm/d; the critical wind speed for turning over a train is between 35 m/s and 67 m/s,and such cases happened in draught places of mountain opening and trunk valley; the angle be-tween wind direction and railway is closely related to the thickness of accumulative sand along thelines; roadbed disasters taking the form of side-slope sliding, roadbed sinking and silt turning uptook place in spring when the temperature rapidly rose to 10-15℃ from zero and precipitationcame forth or when the thickness of snow cover on shade slope reached above 20 cm in winter;the disasters taking place in the 1990s were far stronger than those of the 1980s and the order ofhazard intensity along the Xinjiang Line is Urumqi>Shihezi>Kuitun>Liuyuan>Shanhan>Hami.  相似文献   

18.
基于离心机模型试验的非饱和土地基沉降特征分析   总被引:1,自引:0,他引:1  
非饱和土结构复杂,沉降理论计算还不完善,导致地基沉降的计算值与沉降实测值往往有较大的差异。地基沉降是高速铁路客运专线路基的主要控制因素之一,通过离心机模型试验,对高速铁路非饱和土地基沉降特征进行分析,获得地基的荷载—沉降—时间关系曲线。研究结果表明:非饱和土地基在路基填筑期沉降完成较快,施工期可完成总沉降的75%,经过5~6个月短期放置可完成总沉降的90%左右,其工后沉降满足无砟轨道沉降控制要求,该研究结果可为非饱和土沉降理论分析提供参考。  相似文献   

19.
在地铁隧道附近,对于环境振动要求较高的特殊建筑物和精密仪器,地铁列车走行时引起的振动影响不容忽视。基于动力反应分析理论,通过建立有限元模型,并以实际测得的列车走行时地铁和轻轨在路基附近的加速度波形作为振动输入,模拟分析了正在规划修建的北京地铁8号线开通后将对附近某实验大楼内仪器可能造成的振动影响,同时对实验楼附近地铁振动的衰减规律进行了初步分析,为实验楼和仪器台是否应采取避振措施提供了参考依据。  相似文献   

20.
A dynamic model test(CL = 4) at different velocities of train,namely different loading frequencies,is carried out to study the dynamic characteristics of a high-speed railway tunnel invert and its foundation soils.Not only are the accelerations,dynamic coefficients,dynamic stresses of the invert and foundation soils emphatically analyzed,their relationship with the velocity of the train are discussed in detail.Through laboratory testing,the attenuation of vibration propagating from up the rails is obtained and the calculation formula of the speed influence coefficient of the tunnel invert is preliminarily established.The depth of the foundation soils influenced by vibration is also determined in this study.It is shown that the responses of the tunnel invert and foundation soils to vibration are slightly increased with the velocity of the train;circumferential stresses in the bottom of the invert are tensile stresses and maximum stresses appear under the foot of the rails;the dynamic soil pressures of the foundation decrease quickly with the distance away from the tunnel invert and an exponential relationship exists between them.  相似文献   

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