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Vehicle effects on seismic response of a simple-span bridge during shake tests

机译:车辆对单跨桥梁振动试验中地震响应的影响

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摘要

Presence of vehicles on a bridge has been observed many times during past earthquakes. Although in practice, the engineers may or may not include the live load contribution to seismic weight in design, current bridge design codes do not specify a certain guideline. A very limited research has been conducted to address this issue from design point of view. The focus of this research is to experimentally assess the effect of a vehicle on the seismic response of a bridge through a large-scale model. In this scope, a 12-meter long bridge, having a one lane deck with concrete slab on steel girders, has been shaken under five different ground motions obtained from recent earthquakes that occurred in Turkey, in its transverse direction, both with and without a vehicle on top of the deck. The measured results have indicated that top slab transverse acceleration and bearing displacements can reduce up to 18.7% in presence of a vehicle during seismic tests, which is an indication of reduction in substructure forces. The main reason for the reduction in seismic response of the bridge in the presence of live load can be ascribed to the increase in damping of the system due to mass damper-like action induced by the vehicle. This beneficial effect cannot be observed in vertical seismic response. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:在过去的地震中,已经多次观察到车辆在桥梁上的存在。尽管在实践中,工程师可能会或可能不会在设计中包括活荷载对地震重量的贡献,但当前的桥梁设计规范并未指定特定准则。从设计的角度来看,已经进行了非常有限的研究来解决这个问题。这项研究的重点是通过大型模型,通过实验评估车辆对桥梁地震响应的影响。在此范围内,在最近的一次土耳其横向地震中,有和没有地震作用时,都有五种不同的地震动,摇晃了一座十二米长的桥,桥上有一个在钢梁上带有混凝土板的单车道甲板。车辆在甲板上。测量结果表明,在地震试验中,有车辆存在时,楼板的横向加速度和轴承位移最多可减少18.7%,这表明下部结构力减小了。在存在活载的情况下,桥梁的地震响应降低的主要原因可以归因于由于车辆引起的类似质量阻尼器的作用,系统的阻尼增加。在垂直地震响应中无法观察到这种有益效果。版权所有(c)2014 John Wiley&Sons,Ltd.

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