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51.
超大跨度缆索承重桥梁结构体系   总被引:5,自引:0,他引:5  
梁鹏  肖汝诚  夏旻  刘浩 《公路交通科技》2004,21(5):53-56,69
设计和建造跨海连岛大桥是新世纪桥梁工程面临的巨大挑战。超大跨度桥梁并不只是常规概念的外推,需要与之对应的结构体系。从根本上改变缆索承重桥梁的缆索体系,可以突破跨度极限。本文指出了常规结构体系向更大跨度发展的制约因素,从缆索体系的角度介绍了超大跨度斜拉桥、悬索桥以及斜拉 悬索组合桥可能采用的各种体系。这些体系试图在静力、动力方面能远远超出现有限制范围,极大地提高桥梁的跨越能力。同时,新体系的采用也给材料、设计和施工提出了很大的挑战。  相似文献   
52.
将笔者曾提出的搭板罩面方法用于处理板底脱空问题,通过与直接罩面法对比,分析搭板罩面法处理旧水泥混凝土路面板底脱空的效果,有限元计算表明搭板罩面法能有效地改善裂缝顶的剪应力集中,文中还针对这种处治方法的薄弱点提出了相应的改善措施,计算结果表明该法理论上是可行的。  相似文献   
53.
采用原位等效静荷载试验方法,检测和验证13m跨简支钢筋混凝土单块板,铰缝处理前后结构的受力性能,铰缝处理前后单板挠度分别为1/307、1/786,单板经铰缝处理满足了正常使用要求。  相似文献   
54.
桥头搭板结构分析   总被引:4,自引:0,他引:4  
将桥头间搭板简化为具有局部脱空的Winkler地基梁,针对不同的端部支承条件,对它在移动车辆荷载作用下的受力状况进行了全面分析,绘制了几种典型搭板的最大弯矩影响线图,给出了可用于搭板设计的诺模图。  相似文献   
55.
重型汽车荷载作用下简支梁桥的动力反应分析   总被引:5,自引:1,他引:5  
基于结构动力学理论,视桥梁与车辆为一个相互作用的整体系统,建立了桥梁在移动车辆荷载作用下振动的计算模式。在分析中,汽车采用2轴模型,桥梁结构模拟为梁单元,统一列出车桥系统的动力方程,编制了计算程序。对实际预应力混凝土简支箱梁桥在重型汽车作用下的动力冲击效应进行了计算,并与轻型汽车荷载作用下产生的动力冲击系数进行了比较。  相似文献   
56.
Estimation of urban network link travel times from sparse floating car data (FCD) usually needs pre-processing, mainly map-matching and path inference for finding the most likely vehicle paths that are consistent with reported locations. Path inference requires a priori assumptions about link travel times; using unrealistic initial link travel times can bias the travel time estimation and subsequent identification of shortest paths. Thus, the combination of path inference and travel time estimation is a joint problem. This paper investigates the sensitivity of estimated travel times, and proposes a fixed point formulation of the simultaneous path inference and travel time estimation problem. The methodology is applied in a case study to estimate travel times from taxi FCD in Stockholm, Sweden. The results show that standard fixed point iterations converge quickly to a solution where input and output travel times are consistent. The solution is robust under different initial travel times assumptions and data sizes. Validation against actual path travel time measurements from the Google API and an instrumented vehicle deployed for this purpose shows that the fixed point algorithm improves shortest path finding. The results highlight the importance of the joint solution of the path inference and travel time estimation problem, in particular for accurate path finding and route optimization.  相似文献   
57.
佘云龙 《中国造船》2012,53(Z1):175-178
对STAAD.Pro软件在海洋工程模块建造的加工设计阶段的应用进行了探讨。通过STAAD.Pro软件的可视化操作平台,对实际海洋工程模块进行建模、加载、计算和分析,通过计算得出模块的质量和质心位置,并根据规范对模块进行整体强度校核,从而对海洋工程模块的吊点布置及其吊装过程起到实际的指导作用。  相似文献   
58.
The fluid-structure interaction of oblique irregular waves with a pontoon-type very large floating structure (VLFS) edged with dual horizontal/inclined perforated plates has been investigated in the context of the direct time domain modal expansion theory. For the hydroelastic analysis, the boundary element method (BEM) based on time domain Kelvin sources is implemented to establish water wave model including the viscous effect of the perforated plates through the Darcy’s law, and the finite element method (FEM) is adopted for solving the deflections of the VLFS modeled as an equivalent Mindlin thick plate. In order to enhance the computing efficiency, the interpolation-tabulation scheme is applied to assess rapidly and accurately the free-surface Green function and its partial derivatives in finite water depth, and the boundary integral equation of a half or quarter VLFS model is further established taking advantage of symmetry of flow field and structure. Also, the numerical solutions are validated against a series of experimental tests. In the comparison, the empirical relationship between the actual porosity and porous parameter is successfully applied. Numerical solutions and model tests are executed to determine the hydroelastic response characteristics of VLFS with an attached anti-motion device. This study examines the effects of porosity, submerged depth, inclined angle and gap distance of such dual perforated anti-motion plates on the hydroelastic response to provide information regarding the optimal design. The effects of oblique wave angle on the performance of anti-motion and hydroelastic behavior of VLFS are also emphatically examined.  相似文献   
59.
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   
60.
水中悬浮隧道交通荷载模拟方法研究   总被引:1,自引:0,他引:1  
梁波  蒋博林 《隧道建设》2017,37(10):1232-1238
为研究水中悬浮隧道交通荷载的合理模拟方法以及交通荷载对隧道结构的影响,借鉴铁路、公路交通荷载的模拟方法,综合考虑车辆轮载、路面不平度、行车速度以及外部激励荷载等影响因素的共同作用,提出水中悬浮隧道交通荷载的模拟表达式。通过数值模拟计算,分析悬浮隧道交通荷载的变化特征,并研究不同交通荷载模拟方法对悬浮隧道结构振动位移响应的影响。结果表明:文章提出的交通荷载模拟方法计算结果符合移动振动荷载的波动性和周期性特征。在对结构振动位移响应影响方面,固定均布荷载相当于静载,移动集中荷载和移动振动荷载时的位移变化幅值相对固定均布荷载时的大且影响相似,但移动振动荷载时的振幅稍大,体现了交通荷载中动荷载部分对结构振动位移响应的影响,更适合用来模拟悬浮隧道中的交通荷载。  相似文献   
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