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Synergic identification of prestress force and moving load on prestressed concrete beam based on virtual distortion method

机译:基于虚拟变形法的预应力混凝土梁预应力与运动荷载的协同识别

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摘要

In a prestressed concrete bridge, the magnitude of the prestress force (PF) decreases with time. This unexpected loss can cause failure of a bridge which makes prestress force identification (PFI) critical to evaluate bridge safety. However, it has been difficult to identify the PF non-destructively. Although some research has shown the feasibility of vibration based methods in PFI, the requirement of having a determinate exciting force in these methods hinders applications onto in-service bridges. Ideally, it will be efficient if the normal traffic could be treated as an excitation, but the load caused by vehicles is difficult to measure. Hence it prompts the need to investigate whether PF and moving load could be identified together. This paper presents a synergic identification method to determine PF and moving load applied on a simply supported prestressed concrete beam via the dynamic responses caused by this unknown moving load. This method consists of three parts: (i) the PF is transformed into an external pseudo-load localized in each beam element via virtual distortion method (VDM); (ii) then these pseudo-loads are identified simultaneously with the moving load via Duhamel Integral; (iii) the time consuming problem during the inversion of Duhamel Integral is overcome by the load-shape function (LSF). The method is examined against different cases of PFs, vehicle speeds and noise levels by means of simulations. Results show that this method attains a good degree of accuracy and efficiency, as well as robustness to noise.
机译:在预应力混凝土桥梁中,预应力(PF)的大小会随时间减小。这种意外损失会导致桥梁故障,从而使预应力识别(PFI)对于评估桥梁安全至关重要。但是,很难无损地确定PF。尽管一些研究表明了基于振动的方法在PFI中的可行性,但是在这些方法中具有确定的激振力的要求阻碍了在役桥梁上的应用。理想情况下,将正常的交通量视为一种刺激将是有效的,但是车辆造成的负载很难测量。因此,它提示需要研究是否可以同时确定PF和运动负载。本文提出了一种协同识别方法,通过未知移动荷载引起的动态响应,确定施加在简单支撑的预应力混凝土梁上的PF和移动荷载。该方法包括三个部分:(i)通过虚拟失真方法(VDM)将PF转换为位于每个梁单元中的外部伪负载; (ii)然后通过Duhamel积分同时识别这些伪载荷和运动载荷; (iii)通过负载形状函数(LSF)克服了Duhamel积分反演中的耗时问题。通过仿真,针对PF,车速和噪声水平的不同情况检查了该方法。结果表明,该方法具有较高的精度和效率,以及对噪声的鲁棒性。

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