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Application of dynamic vibration absorbers on a double-deck circular railway tunnel to minimize the radiated vibration energy flow induced by a moving load

机译:动态减振器在双层圆形铁路隧道上的应用,以最小化移动载荷引起的辐射振动能量流动

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The aim of this study is to investigate the efficiency of Dynamic Vibration Absorbers (DVAs) as a vibration abatement solution for railway-induced vibrations in the framework of a double-deck circular railway tunnel infrastructure. Specifically, it is studied the efficiency of an optimized set of DVAs placed on the interior floor which has the objective of reducing the vibration energy flow radiated by the tunnel infrastructure when a moving harmonic point load is circulating along the track which is located at the upper floor of the double-deck tunnel. A previously developed analytical model of the superstructure-tunnel-ground system is employed to calculate the energy flow due to a moving harmonic point load over the track. The model describes the dynamics of the interior floor using the thin plate theory and considers the Pipe-in-Pipe (PiP) model to describe the coupled tunnel-soil system. The track model consists of two Euler-Bernoulli beams, as a model of the rails, coupled with the interior floor with continuous springs, which model the sets of direct fastening systems. In the basis of this model, a Genetic Algorithm (GA) is used to obtain the optimal parameters of the DVAs set for the minimization of the vibration energy flow radiated by the tunnel. The parameters of the DVAs set to be optimized are the mass, stiffness, damping ratio and position of the DVAs. The results indicate that the DVAs would be an effective solution for the abatement of the vibration energy flow induced by this kind of infrastructure.
机译:本研究的目的是探讨动态减振器(DVA)的效率作为铁路圆形铁路隧道基础设施框架中的铁路引起的振动的振动减排解决方案。具体地,研究放置在内部地板上的优化DVA的效率,当移动的谐波点负载沿着位于上部的轨道循环时,其具有减少隧道基础设施辐射的振动能量流的目的。双层隧道的地板。以前开发了超结构 - 隧道接地系统的分析模型,用于计算由于轨道上移动的谐波点负荷而导致的能量流量。该模型描述了使用薄板理论的内部地板的动态,并考虑管道管(PIP)模型来描述耦合隧道土系统。轨道模型由两个Euler-Bernoulli梁组成,作为轨道的型号,与内部地板连接,其具有连续弹簧,其模拟了一组直接紧固系统。在该模型的基础上,遗传算法(Ga)用于获得用于最小化隧道辐射的振动能量流的DVA的最佳参数。要优化的DVAS的参数是质量,刚度,阻尼比和DVA的位置。结果表明,DVA将是减少这种基础设施引起的振动能量流的有效解决方案。

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