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The improvement in the operation speed of the transportation project means the progress and development of the construction technologies in transportation projects. In this paper, the following factors restricting the further improving of the speed of high speed railway are analyzed: as the operation speed increases, the trains in the dense atmosphere are subject to the wind induced resistance and various resistances caused by the friction between the wheels and the rails and by the irregularity of tracks, and the noise will also increase with a high power. Therefore, the economy and safety issues involved in the operation have become the main factors restricting the further improving of the speed of high speed railway. A scheme of vacuum pipelines of underwater vacuum tunnel and/or subwater bridge is proposed in this paper: the pipelines and cars are sealed and vacuated to form the quasi vacuum. The transportation system of the vacuum maglev train at ultrahigh speed with the HTS maglev technology can achieve the operation speed more than 4 times that of the existing HSR train (about 1 200 km/h). Key technologies for constructing the vacuum maglev tunnels/subwater bridges in respect of construction plans, vacuating and sealing, as well as maglev trains are introduced in this paper. The subjects to be further studied on the vacuum HTS maglev tunnels (pipelines) are analyzed from the aspects of technology, management, construction costs, operation expenses, candidate project, airtight materials for cars and evacuation in case of emergencies. It is recommended that "cross sea maglev train in vacuum tunnel" should be developed in the eco tourism project between the coastal cities and their neighboring islands and a series of necessary technical tests should be conducted during the trial operation, so as to obtain related experience. Based on the experience and lessons learned, the transportation system at ultrahigh speed may be implemented for strait crossing projects in China. Finally, a brief introduction to the research on HSR trains at ultrahigh speed in countries such as China, the United States and the Netherlands is presented in this paper. The development of vacuum pipeline transportation can drive the development of China′s transportation modes in a faster, safer and more energy efficient manner, facilitating the development of the fifth generation of transportation industry and its driving role in the social and economic development, and promoting the integration and progress of the economy of China or even the world at a higher speed. 相似文献
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盾构在软土深部地层进行主动开挖时,开挖所采取的地层损失率差异,会使得深部地层土体产生不同的位移以及应力变化,从而对软土深部地层的主动土拱效应产生差异影响。通过调整计算模型中的主动开挖土体范围,设定7种不同的地层损失率,建立地层损失与软土主动土拱效应比例之间的对应关系。通过分析可得: 1)盾构在4倍直径埋深条件下进行主动开挖时,在隧道上方1~2倍直径范围内形成主动土拱作用区域; 2)主动开挖所采取的地层损失率越大,开挖后拱顶处所受到的主动土压力荷载越小,土拱效应发挥越充分,且当地层损失率到达一定值时,盾构开挖所产生的主动土拱效应比例逐渐趋近于稳定临界值。 相似文献
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基于BIM的公路隧道运维管理系统设计与开发 总被引:1,自引:0,他引:1
近年来,我国公路隧道建设里程快速增长,但在隧道运维管理中存在技术落后、管理人员配置不足等问题。针对管理中存在的问题,本文提出将BIM(building information modeling,建筑信息模型)引入公路隧道的运维管理,通过制定具体实施规划及设计系统架构,实现可视化的公路隧道运维管理。以浙江省41省道岭下隧道工程为依托,建立基于BIM的公路隧道运维管理平台,为公路隧道运维管理提供一种直观、便捷的管理方式,提高公路隧道的信息化管理水平。 相似文献
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小直径盾构施工中管片纵向应力监测研究 总被引:1,自引:0,他引:1
为了探索小直径盾构法隧道在施工过程中管片纵向应力的变化规律,对北京槐房再生水厂污水隧道管片纵向应力进行了现场监测:将第976环、第1 054环管片分别设为第1和第2监测断面,2监测断面各预埋5个纵向应力计,各监测断面从本监测断面管片安装后即开始监测,当盾构掘进至第1 129环时停止监测。研究表明:1)在管片离开盾尾50环后,其纵向应力波动值小于管片拼装期间应力值的5%。2)在盾构掘进期间,管片距离盾构越远,其纵向压应力值越小。3)在管片拼装期间,管片距离盾构越远,其纵向压应力经历了先增大后减小的过程。4)管片距离盾构108环后,该管片纵向压应力趋近于0.2~0.3 MPa。5)随着盾构推进,管片纵向应力经历了4个阶段的变化过程,即周期性剧烈波动阶段—动态稳定阶段—逐渐衰减阶段—趋于稳定阶段。 相似文献
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FLAC3D有限元软件内置4种渗流模型,直接决定计算结果正确与否。渗流场在三维空间中分布复杂,难以根据计算公式定量选用何种模型,不同文献渗流模型选择标准也不相同。为了找到简单、快速、合理的选择方法,有必要对4种渗流模型进行受力分析。以一100 m×100 m×10 m各项同性弹性立方体为例,基于4种渗流模型设计4种工况。通过对比和分析各工况下总应力和孔隙水压分布情况,主要结论如下: 1)模型A、模型C外荷载均由土颗粒骨架承担,其余2种模型流体也参与受力; 2)流体分担外荷载的比例与刚度系数和时间有关; 3)FLAC3D流固耦合过程正是通过调整刚度比、打开和关闭力学-流体进程来实现的。目前我国流固耦合计算基本基于FLAC3D有限元软件,文中结论适用于基础、隧道、基坑等工程,可供相关从业人士借鉴参考。 相似文献
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盾构井在盾构吊装期间,侧向压力主要由临时环梁承担,开孔周边受力情况较为复杂。本文通过对地铁车站盾构井处临时环梁进行三维建模计算,并与传统二维计算结果进行对比,得出如下结论: 1)二维计算存在局部弯矩过大及配筋过于保守等缺点,有一定的优化余地; 2)相对于二维计算,三维整体建模计算结果更加合理,得出的结构尺寸及配筋结果对于类似工程具有一定的参考意义。 相似文献