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Automated UAV based multi-hazard assessment system for bridges crossing seasonal rivers

机译:基于自动化的UV基于UV的桥梁隧道季节性河流的多危害评估系统

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An automated unmanned aerial vehicle (UAV) based multi-hazard performance assessment system was developed to respond to rapid performance evaluation and performance prediction needs for river crossing reinforced concrete (RC) bridges. In the developed system, firstly the seasonally acquired UAV measurements were used to obtain the three-dimensional (3D) digital elevation models (DEMs) of the river bed. In conjunction with the flood simulation, the hydraulic model was verified with the previous flood event which corresponded to Q50 and the scour depths after a probable flood (Q500) were predicted by HEC-RAS software. Afterward, the 3D finite element model (FEM) of the bridge was constituted automatically with the developed code considering the scoured piles. The flood loads were exerted on the modeled bridge with regard to the HEC-RAS flood inundation map and relevant water depth estimations around the bridge piers. For the seismic evaluation, nonlinear time history analyses (THA) were conducted by using several scaled earthquake acceleration records that were acting in both principal axes of the bridge simultaneously as compatible with the region seismicity. The Bogacay-II Bridge that was located in Antalya, Turkey was selected as the case study. In the analyses, as the scour depth increased, the lateral displacements and the pile internal forces were observed to increase while the pier column internal forces kept approximately constant. Thus, it was monitored that the seismic displacement and load demands migrated from pier columns to piles with increasing scour. Therefore, the applicability of the proposed system was verified using the case study bridge.
机译:为基于自动的无人机(UAV)的多危害性能评估系统是开发出响应河流交叉钢筋混凝土(RC)桥梁的快速性能评估和性能预测需求。在发发系统中,首先,季节性获得的UAV测量用于获得河床的三维(3D)数字高度模型(DEM)。结合洪水仿真,用先前的洪水事件验证了液压模型,该洪水事件与Q50相对应的Q50,并且通过HEC-RAS软件预测了可能的洪水(Q500)后的冲刷深度。之后,考虑到填充桩的开发代码,桥的3D有限元模型(FEM)自动构成。关于HEC-RAS洪水淹没图和桥墩周围的相关水深估计,泛洪载荷施加在建模桥上。对于地震评估,通过使用几种缩放的地震加速度记录进行非线性时间历史分析(THA),该缩放的地震加速度记录同时以与区域地震性相容的同时用作桥的两个主要轴线。位于土耳其安塔利亚的Bogacay-II桥被选为案例研究。在分析中,随着冲刷深度的增加,观察到横向位移和桩内力,同时墩柱内部力保持近似恒定。因此,监测地震位移和负载需求从码头柱迁移到堆上,随着冲刷。因此,使用案例研究桥来验证所提出的系统的适用性。

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