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Theoretical study on a dual-beam model for detection of track/bridge frequencies and track modulus by a moving vehicle

机译:移动车辆检测轨道/桥梁频率和轨道模量的双梁模型的理论研究

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A theory is presented for retrieving the track/bridge frequencies and track modulus from an instrumented vehicle moving over a dual-beam model to simulate the track-bridge system. The dual beams are connected by uniform spring-dashpot units to simulate the effects of sleepers and ballast, etc. Based on the dual-beam model, the response of the vehicle is firstly derived in closed form, along with that for the vehicle-track contact point. The dual frequencies solved relate to the track and bridge frequencies. Compared with the vehicle spectrum, the contact-point (CP) spectrum is superior in that it is free of the vehicle and driving frequencies. Using the first "plus" frequency of the dual-beam system, the track modulus can be computed by a simple formula. The proposed technique is numerically validated against the key parameters involved. It is concluded that: (1) the first "plus" frequency can be retrieved from the contact-point spectrum as an outstanding peak; (2) track irregularity has an adverse, but tolerable, effect on retrieval of track modulus; (3) as a trade-off between efficiency and accuracy, the vehicle is suggested to move at a moderate speed; and (4) the proposed technique may be affected by track damping, but remains good for tracks with infinite length.
机译:提出了一种从仪表车辆中检索轨道/桥梁频率和轨道模量,从双梁模型中移动以模拟轨道桥系统。双光束通过均匀的弹簧 - 划线单元连接,以模拟睡眠机和镇流器等的效果。基于双光束模型,车辆的响应首先以封闭的形式推导,以及用于车辆轨道接触点。解决的双频涉及轨道和桥梁频率。与车辆频谱相比,接触点(CP)光谱优异的是,它没有车辆和驱动频率。使用双光束系统的第一“加”频率,可以通过简单的公式计算轨道模量。该提出的技术与涉及的关键参数进行了数量验证。得出结论:(1)可以从接触点谱检索第一“加”频率作为突出的峰值; (2)轨道不规则性具有不利,但可容忍,对轨道模量的检索有效果; (3)作为效率和准确性之间的权衡,建议以适度的速度移动; (4)所提出的技术可能受轨道阻尼的影响,但对于具有无限长度的轨道仍然有益。

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