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An Idea to Simulate the Environmental Vibration Caused by Urban Rail Traffic

机译:模拟城市轨道交通引起的环境振动的想法

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In most studies, the vibration source is modeled as random vibration with a given power spectral density at the nearest point from the rail, and the effect on buildings and human beings is further calculated by a two dimensional calculation. However, from 3 dimensional point of view, it is far away from the fact that the effect is come from many points along the rail while the trains move through rapidly. Two-step is defined to simulate environmental vibration. In the first step, the train-track system is simplified as a series of subsystems. Taking into account the track power irregularity, each subgrade reaction under ballast block was calculated when trains move on the track. All the forces constitute point source array to simulate the source. In the second step, the foundation is simulated as isotropic layered media, combined with artificial boundary conditions in the calculation border region, using the decoupling finite element method to calculate the surface environmental vibration. The simulation result was compared with those from field observation in Beijing, China. The result is quite close to the field observation data, and provides a good foundation for further study on environmental vibration impact to buildings and human beings.
机译:在大多数研究中,振动源被建模为在距轨道最近的位置具有给定功率谱密度的随机振动,并且通过二维计算进一步计算了对建筑物和人的影响。但是,从3维角度来看,当火车快速通过时,其影响来自铁路沿线的许多点,这一事实相去甚远。定义了两步来模拟环境振动。第一步,将火车轨道系统简化为一系列子系统。考虑到轨道功率的不规则性,计算了列车在轨道上行驶时道ball下的每个路基反应。所有力构成点源阵列以模拟源。第二步,将基础模拟为各向同性的分层介质,并在计算边界区域中结合人工边界条件,使用解耦有限元方法来计算表面环境振动。将模拟结果与中国北京的实地观察结果进行了比较。该结果与现场观测数据非常接近,为进一步研究环境振动对建筑物和人类的影响提供了良好的基础。

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