基于无人机的季节性河流桥梁多灾害自动评估系统

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2021-01-01 DOI:10.12989/SSS.2021.27.1.035
Orkan Özcan, Okan Özcan
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引用次数: 4

摘要

针对跨江钢筋混凝土桥梁的快速性能评价和性能预测需求,研制了一种基于无人机的多灾种性能评价系统。在开发的系统中,首先利用季节采集的无人机测量数据获得河床三维数字高程模型(dem);结合洪水模拟,将水力模型与前期洪水事件Q50进行验证,并利用HEC-RAS软件预测可能发生洪水后的冲刷深度Q500。然后,根据制定的规范自动建立了考虑冲刷桩的桥梁三维有限元模型。根据HEC-RAS洪水淹没图和桥墩周围的相关水深估算,对模型桥梁施加洪水荷载。在地震评价方面,采用与区域地震活动性相适应的同时作用于桥梁两个主轴的多个尺度地震加速度记录进行了非线性时程分析。位于土耳其安塔利亚的Bogacay-II大桥被选为案例研究。分析结果表明,随着冲刷深度的增加,桩侧位移和桩内力增大,而桩柱内力基本保持不变。因此,监测到随着冲刷的增大,地震位移和荷载需求从墩柱向桩转移。因此,通过案例研究桥验证了所提出系统的适用性。
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Automated UAV based multi-hazard assessment system for bridges crossing seasonal rivers
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.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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