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Dynamic analysis of a large span specially shaped hybrid girder bridge with concrete-filled steel tube arches

机译:钢管混凝土拱桥大跨度异型混合梁桥动力分析

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In the present study, the dynamic property of a specially shaped hybrid girder bridge with concrete-filled steel tube (CSFT) arches is investigated based on experimental and numerical methods, especially under moving vehicles. Before the inauguration of this bridge, a dynamic field test was conducted. A refined three-dimensional finite element model is built to represent the complex structural mechanic property of the bridge. The vehicle-bridge coupled vibration (VBCV) model with a 16 DOF vehicle model is established to simulate the dynamic behavior of the bridge with moving vehicles. The FE model is updated, and the VBCV model for the bridge is verified, taking advantage of the aforementioned measured data. The result indicates that the proposed VBCV numerical model can closely reproduce the measured response and can be used to simulate the dynamic behavior of the bridge under various conditions. The impact effect, ride and pedestrian comfort, and related parameters analysis for the bridge with moving vehicles are studied by numerical simulations and experimental tests. The results indicate that the impact factor formula from design standards significantly underestimates the dynamic impact effect, which may result in an unfavorable influence on the bridge safety. Several conclusions are drawn for this bridge, and further research that is needed for this new bridge type is discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本研究中,基于实验和数值方法,特别是在移动车辆的情况下,研究了钢管混凝土(CSFT)拱形异型混合梁桥的动力特性。在这座桥落成之前,进行了动态现场测试。建立了改进的三维有限元模型来表示桥梁的复杂结构力学特性。建立了具有16 DOF车辆模型的车桥耦合振动(VBCV)模型,以模拟移动车辆桥梁的动态行为。利用前面提到的测量数据,可以更新FE模型,并验证桥梁的VBCV模型。结果表明,所提出的VBCV数值模型​​可以精确地再现所测得的响应,并可用于模拟桥梁在各种条件下的动态行为。通过数值模拟和实验测试研究了移动车辆桥梁的冲击效果,乘坐和行人舒适度以及相关参数分析。结果表明,设计标准中的影响因子公式大大低估了动态冲击效果,这可能会对桥梁安全性产生不利影响。对该桥得出了一些结论,并讨论了这种新型桥需要进行的进一步研究。 (C)2015 Elsevier Ltd.保留所有权利。

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