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151.
基于FLAC3D有限差分软件,建立密贴交叉组合地铁地下车站结构的三维计算模型,研究强震作用下密贴交叉组合地铁地下车站结构的三维非线性地震反应特性,并与单一浅彬深埋地铁地下车站结构的地震反应特性进行比较。研究结果表明:密贴交叉组合车站结构中,由于上下层车站相互作用影响,对上下层车站的相对水平位移均具有放大作用;上层车站的加速度放大系数小于浅埋车站,而下层车站的加速度放大系数略比深埋车站的大,且变化率较大的部位均发生在密贴交叉部位;下层车站的存在,时上层车站结构的应力有一定的消弱作用,但是由于两车站结构相互作用影响,在两车站交叉部位出现应力集中,致使交叉部位应力出现明显的放大效应。  相似文献   
152.
在富水地区的节理岩体中开挖隧道会打破原有的渗流平衡,形成新的渗流场,造成突水等灾害。考虑流固耦合作用,运用离散元理论,建立垂直交叉节理岩体模型,以洞周测点的流量为指标,从地应力、水位高度和节理法向刚度等方面进行隧道开挖后节理岩体渗流场重分布的影响因素研究,并从开挖前后节理隙宽和水压力变化分析影响产生的原因,结论可为进一步研究围岩稳定性和突水灾害等提供参考。  相似文献   
153.
为有效解决隧道建模标准化、三维实体精确化、施工管理信息化等问题,以邹平县广富隧道为例、Autodesk平台为基础,根据设计图纸内容对隧道整体结构进行细分,形成一套成熟的隧道建模规则命名体系。采用Civil 3D+Dynamo+Revit软件交互实施体系,实现对隧道建模的精细控制;采用中建八局BIM协同管理平台对施工全过程进行信息化管理,该平台优势在于以Autodesk平台精细模型的各构件为信息源,并以此为选择基础,提出对项目生产、质量、安全、设计、资料等的全方位管理;同时,模型、资料、审批信息等内容相互关联,真正实现工程资料闭合。  相似文献   
154.
This paper presents a simplified numerical model capable of analysing the interaction between the structural dynamic response of elastic-plastic struck plate wall of a fluid tank subjected to wedge impact and the resulting fluid motion. The Variational Finite Difference Method (VFDM) is applied to analyse the structural dynamics of the struck plate and 2-D linear potential flow theory is used to study the resulting fluid motion and its effects on the structural dynamics of the struck plate. Experiments of a wedge indenter impacting with both empty and 90% filled tanks are carried out to study the structural deformation of the struck plate. The accuracy of the developed numerical model is validated with published results and experimental results, and good agreement is achieved. Through the comparison of the impact behaviour of empty and partially filled water tank, it is found that the resulting water motion helps to reduce the structural deformation of the struck plate since part of the impact energy is dissipated by the resulting water motion. Parametric studies are performed to investigate the effect of impact velocity and water level on the structural dynamics of the struck plate of a partially filled water tank. A case study is also conducted to demonstrate the potential application of the proposed method in analysing ship-ice impact problems.  相似文献   
155.
研究基于智能船厂的三维电子地图开发技术,开发三维电子地图相关组件并实现地图瓦片化、动态加载、位置校准、地图缓存等功能,通过直观的地理实景模拟表现方式快速搭建智能船厂三维电子地图服务,为管理者提供设备、人员和中间产品等信息检索服务,有效提升船厂数字化、智能化、信息化程度,可为构建船厂资源管理和工装管理智能化提供技术支撑,进一步挖掘生产和管理环节潜力,推进船舶行业信息化建设。  相似文献   
156.
从信号培训系统目前存在的问题出发,提出一种虚实互动的机制来构建信号培训系统的方法。研究结果表明,本方法可以针对目前信号培训的特点,建立能够适应不同线路环境,满足不同实物设备组成方式和实训实操要求的信号培训系统。  相似文献   
157.
地聚物作为一种低碳环保、应用潜力广阔的无机结合料,其与不同表面构造集料的界面交互作用直接影响地聚物混凝土的力学性能和耐久性。充分考虑集料矿物晶向的各向异性,采用分子动力学模拟(Molecular Dynamics, MD)从原子分子层次的作用模式和强度分析,模拟了地聚物主要水化成分N-A-S-H、C-A-S-H和集料矿物化学成分SiO2、CaCO3不同晶面的静态界面相互作用,并采用单轴拉伸方法从纳米尺度下讨论了不同界面交互的动态力学行为。模拟结果表明:CaCO3各晶面表现出比SiO2更强的表面能和表面浸润性,并与C-A-S-H、N-A-S-H的界面相互作用势和拉伸应力更强,但CaCO3晶面各向异性明显,性能稳定性不及SiO2。地聚物与集料矿物的相互作用势主要由静电势提供,由于矿物界面静电作用及浸润特征,交互区水分子聚集,氢键作用明显,同时水分子与Ca2+、Na+进行配位形成水合离子,有助于离子在矿物表面迁移、沉淀与成核生长,增强界面空间位阻效应。在单轴拉伸模拟中,地聚物与集料矿物界面拉伸失效机制包括2个阶段:第1阶段(0 nm<界面位移d<0.15 nm)主要克服界面交互的静电作用,第2阶段(0.15 nm≤d≤0.3 nm)主要克服氢键作用。MD模拟有助于从分子尺度揭示地聚物与集料界面作用机制,为进一步研究地聚物混凝土材料优化、交互界面强化及损伤等提供了新方法和理论依据。  相似文献   
158.
地下结构地震反应分析需考虑结构-地基的动力相互作用,其中场地土层的自由场反应分析是确定地震输入的关键问题。以往地下工程实例表明,在结构动力时程计算中,能否有效模拟无限地基边界对结构抗震分析有很大的影响。基于某地下综合体项目进行抗震评估,采用黏弹性人工边界模拟自由场震动响应,克服工程中传统分析里不能模拟场地无限域的缺点。为地下结构的动力时程分析提供可靠数值依据。  相似文献   
159.
Roughly 90% of all natural vibrations have epicenters in offshore zones and may cause destruction of submarine and floating structures. Such excitations can influence the safe performance of facilities set up on the seabed, like tunnels, jacket legs and subsea oil pipelines. Some researches on this theme have been carried out to demonstrate the importance of seaquake analyses and their effects have been underlined. The present study intends to numerically simulate a two-dimensional fluid-structure interaction (FSI) problem in order to examine the dynamic response of submarine tunnel under real horizontal earthquakes. Pressure is considered as independent nodal variables to represent the fluid flow effects and the induced time-dependent acceleration in porous medium equation is incorporated in the analysis and the tunnel shell is considered as flexible. This work highlights the importance of the input ground motion frequency content that governs the development of the induced seismic stress/strain around the lining of the tunnel. The results demonstrate that for deep sea the increment rate of the circumferential stress caused by surface gravity waves is below 7% when compared to the no-wave interface condition. Moreover, it is confirmed that long-period record may amplify the overall response of the system (up to 60%) specially the lateral and vertical displacements, as well as the principal stress to a lesser extent. The developed numerical model can attend to further analysis of tunnels embedded in a half-space in conjunction with fluid undergoing the severe long-period earthquakes.  相似文献   
160.
In this study, Submerged Floating Tunnel (SFT)-mooring-train coupled dynamics is solved in the time domain to investigate their dynamic and hydro-elastic interactions under wave and earthquake excitations. The SFT is modeled by the rod-FE (finite element) theory, and it is connected to mooring lines through dummy-connection-mass and linear and rotational springs. A 3D rigid-multi-body dynamic model is developed for train dynamics that consists of seven rigid bodies. The tunnel-train interaction is taken into consideration based on the wheel-rail correspondence assumption and the simplified Kalker linear creep theory. The developed computer simulation program is validated through comparisons with commercial programs and published results when possible. In the case of earthquake-induced dynamics of the coupled system, the effects of soil conditions, tunnel length, mooring interval, seismic-wave propagation, and seaquake are investigated. The magnitudes of the SFT downward motions induced by the moving train are small compared with the motions induced by earthquakes. The earthquake causes transient SFT responses especially at their lowest wet natural frequencies while high-frequency motions are induced by seaquake effect. Structural damping and seismic propagation play an important role in dynamic responses. The interaction of the tunnel and moving train is also evaluated for various train speeds in terms of the derailment and offload factors and riding-comfort criterion. For the given SFT and train designs, the offload factor and riding-comfort criterion can slightly exceed their limits at certain earthquake conditions with the speed as high as 70 m/s, which can be adjusted by reducing train speed.  相似文献   
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