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首页> 外文期刊>Journal of Sound and Vibration >Vibration control of beams on elastic foundation under a moving vehicle and random lateral excitations
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Vibration control of beams on elastic foundation under a moving vehicle and random lateral excitations

机译:运动车辆和随机横向激励下弹性地基上梁的振动控制

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The formulation of three-dimensional dynamic behavior of a Beam On Elastic Foundation (BOEF) under moving loads and a moving mass is considered. The weight of the vehicle is modeled as a moving point load, however the effect of the lateral excitation is considered by modeling: (case 1) a lateral moving load with random intensity for wind excitation and (case 2) a moving mass just in lateral direction of the beam for earthquake excitation. A Dirac-delta function is used to describe the position of the moving load and the moving mass along the beam. The beam foundations are considered as elastic Winkler-type in two perpendicular transverse directions. This model is proposed to investigate the bending response of the rails under the effect of traveling vehicle weight while a random excitation such as earthquake or wind takes place. The results showed the importance of considering the effect of earthquake/wind actions as in bending stress of the beam on elastic foundations. The effect of different regions (different support stiffness) and different velocities of the vehicle on the response of the beam are investigated in mentioned directions. At the end, a linear optimal control algorithm with displacementvelocity feedback is proposed as a solution to suppress the response of BOEFs. By the method of modal analyses and taking into account enough number of vibration modes, state-space equation is obtained, then sufficient number of actuators was chosen for each direction. Stochastic analyses were performed in lateral direction in order to illustrate a comprehensive view for the response of the beam under the random moving load in both controlled and uncontrolled systems. Furthermore, the efficiency of control algorithm on critical velocities is verified by parametric analyses in the vertical direction with the constant moving load for different regions.
机译:考虑了在移动载荷和移动质量下弹性基础上的梁(BOEF)的三维动态行为的公式。车辆的重量被建模为移动点载荷,但是通过建模来考虑横向激励的影响:(情况1)具有随机强度的风激励的横向运动载荷,以及(案例2)仅横向运动的质量地震激发光束的方向。 Dirac-delta函数用于描述沿梁的移动负载和移动质量的位置。在两个垂直横向方向上,梁基础被认为是弹性Winkler型。提出该模型以研究在行驶车辆重量的作用下,在发生地震或风等随机激励时轨道的弯曲响应。结果表明,考虑地震/风作用的影响以及梁在弹性基础上的弯曲应力中的重要性。在上述方向上研究了不同区域(不同的支撑刚度)和车辆的不同速度对梁响应的影响。最后,提出了一种具有位移速度反馈的线性最优控制算法作为抑制BOEFs响应的解决方案。通过模态分析的方法并考虑到足够数量的振动模式,获得了状态空间方程,然后为每个方向选择了足够数量的执行器。为了说明在受控系统和非受控系统中随机移动载荷作用下梁响应的全面视图,在横向方向上进行了随机分析。此外,通过在不同区域具有恒定移动载荷的垂直方向上的参数分析,验证了控制算法对临界速度的效率。

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