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A Study on Dynamic Amplification Factor and Structure Parameter of Bridge Deck Pavement Based on Bridge Deck Pavement Roughness

机译:基于桥面铺装粗糙度的桥面铺装动力放大系数和结构参数研究

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In order to study the coupled influence of deck pavement roughness and velocity on dynamic amplification factor, a 2-DOF 1/4 vehicle model is employed to establish the vehicle-bridge-coupled vibration system. The random dynamic load of running vehicle simulated by software MATLAB is applied on bridge deck pavement (BDP) through ANSYS software. Besides, the influence of BDP parameters on control stress under static load and random vibration load is analyzed. The results show that if the surface of BDP is smooth, the dynamic magnification coefficient would first increase and then decrease with increasing of vehicle velocity and reach its maximum value when ?=?20?m/s; if the surface of BDP is rough, the maximal and minimum values of the dynamic amplification coefficient (DAC) occur, respectively, when the velocity reaches 10?m/s and 15?m/s. For a composite bridge deck with the cushion layer, the thickness of asphalt pavement should be not too thick or thin and better to be controlled for about 10?cm; with the increasing of cushion layer thickness, the control stress of deck pavement is all decreased and show similar change regularity under effect of different loads. In view of self-weight of structure, the thickness of the cushion layer is recommended to be controlled for about 4?cm.
机译:为了研究桥面路面粗糙度和速度对动力放大系数的耦合影响,采用2-DOF 1/4车辆模型建立了车桥耦合振动系统。通过ANSYS软件,将由MATLAB软件模拟的行驶车辆的随机动态载荷应用于桥面铺装(BDP)。此外,分析了BDP参数对静态载荷和随机振动载荷下控制应力的影响。结果表明,如果BDP的表面光滑,则动态放大系数将随着车速的增加而先增大然后减小,并且当α=θ20μm/ s时达到最大值。如果BDP的表面粗糙,则当速度达到10?m / s和15?m / s时,分别会出现动态放大系数(DAC)的最大值和最小值。对于带有垫层的复合桥面板,沥青路面的厚度不应太厚或太薄,最好控制在10?cm左右。随着垫层厚度的增加,桥面铺装的控制应力全部减小,并且在不同荷载作用下呈现出相似的变化规律。考虑到结构的自重,建议将缓冲层的厚度控制在4?cm左右。

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