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For the longitudinally coupled ballastless turnout on Leida bridge on Wuhan-Guangzhou passenger dedicated line (PDL) in China, a turnout (cross over)-track slab-bridge deck-pier integrated finite element model was established, in which two No.18 jointless turnouts with movable frogs in form of crossover, longitudinally coupled ballastless track, bridges and piers were regarded as one system. Based on this model, the additional forces and displacement regularities of turnouts, track slab, bridges and piers u... 相似文献
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为了分析车辆以不同速度和不同载质量行驶于不同波长、振幅和坡度的波形路面时,车辆对路面的动载荷作用,根据綦万高速公路路面平整度的实测结果,得到描述波形路面的参数即波长和振幅,编制路面文件,在ADAMS中模拟波形路面,并以现有某红岩重型卡车为研究对象,利用ADAMS多体动力学分析软件建模仿真,建立其车架、悬架和驾驶室等的多体动力学模型,对整车模型进行仿真计算,揭示了车辆动载与路面不平度之间的关系,提出了降低车轮动载荷的方法。 相似文献
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基于海浪干扰滤波器的UUV近水面深度控制 总被引:1,自引:0,他引:1
针对UUV在近水面航行过程中海浪波动对深度计测量造成较大干扰进而影响深度控制效果的问题,设计一种带有海浪干扰滤波器的UUV深度控制方法。分析UUV海试中深度控制性能,选取合适的参数设计海浪干扰滤波器并验证了其滤波效果。考虑到PID控制器参数选择难的问题,采用遗传算法对其控制参数实现在线自整定。最后将实时海浪加入到UUV深度控制系统进行仿真实验,并将仿真结果与海试数据对比,结果表明本文提出的方法可有效的抑制海浪干扰,改善UUV近水面深度控制效果,具有一定的工程实际意义。 相似文献
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中朝鸭绿江界河公路大桥主桥为主跨636m的双塔双索面钢箱梁斜拉桥,边跨设置辅助墩,其跨径布置为86 +229 +636 +229 +86=1266m.本桥结构采用半飘浮体系,索塔与主梁间设置竖向支座和横向抗风支座,纵向设置粘滞阻尼器;过渡墩设置竖向拉压支座和横向抗风支座;辅助墩设置竖向拉压支座,钢箱梁内同时设置压重.主要介绍该桥施工阶段塔梁临时固结计算和设计. 相似文献
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Dynamic behavior and instability of clamped-clamped pipes conveying fluid with longitudinal fins are studied in this paper. The analysis is done for pipes made of both homogeneous and functionally graded materials (FGM). In the FGM case, the materials of pipe and fins are assumed to be graded through the radial direction based on a power-law distribution. The Hamiltonian principle and Euler-Bernoulli beam assumptions are employed to derive the governing differential equations of the pipe system. Different fin configurations are investigated and the effects of several parameters including power‐law index, fluid velocity, number of fins, thickness and height of the fins are analyzed. Natural frequencies of the pipe and critical flow velocities are determined for various values of parameters. Numerical results show that the stability of the system is significantly affected by the power‐law index and fin dimensions. Among different fin configurations studied in this paper, the addition of non-horizontal fins provides significant improvement in the stability of both homogeneous and FGM pipes conveying fluid and consequently, can be considered as an effective “dynamic stabilizer” for the pipe system. In contrast to non-horizontal fins, the horizontal fins improve the stability of pipes conveying fluid, slightly. 相似文献
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Stress evaluation of a submerged floating tunnel (SFT) is an issue important for determining the section dimensions required to resist environmental loads. However, the complex interaction between an SFT and surrounding fluid has confined most research on SFTs to longitudinal global time-history analyses based on Morison's equation [1]. Even though these analyses give sufficient information in the longitudinal direction, too little information about the circumferential direction compels an SFT section to be designed conservatively. This means that SFT design requires additional information on the structural behavior of the tunnel in the circumferential direction for efficient design. Accordingly, a supplementary approach by which to obtain structural responses in the circumferential direction is introduced in this paper. Upon consideration of the static responses equivalent to the dynamic behavior, three-dimensional (3-D) finite-element analyses of an SFT were performed by application of static loads corresponding to dynamic loads equivalent to those of wave, current and earthquake. The validation of each equivalent static load was supported by the results from comparison of the tension forces in mooring lines obtained using OrcaFlex [2] and ABAQUS [3]. These were used mainly for longitudinal dynamic analysis and 3-D stress evaluation, respectively, of an SFT. Based on the stresses obtained in the longitudinal and circumferential directions, the selection of suitable section dimensions for an SFT is considered. 相似文献