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Method for developing and updating deterioration models for concrete bridge decks using GPR data

机译:使用GPR数据开发和更新混凝土桥面板劣化模型的方法

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摘要

This study presents a workable procedure for developing and updating deterioration prediction models based on the results of a Non-Destructive Evaluation (NDE) technique, Ground Penetrating Radar (GPR). To this end, a system reliability based deterioration model was developed for a simply-supported reinforced concrete bridge deck, designed according to the Canadian Highway Bridge Design Code (CHBDC-S6). The superstructure element-level deteriorated conditions for different time intervals were applied in the non-linear finite element model developed for the entire bridge deck, and the system level reliability indices were estimated accordingly. The salt contamination was assumed to affect the top surface, soffits of the deck, and beams due to infusion of deicing salt material. The resulting primary deterioration model was updated based on a GPR test localized defect map that was obtained for an existing bridge with similar plan dimensions. The results indicate that the assumed conservative uniformly defected superstructure is reliable in this case, that is, the estimated reliability indices for the uniform and localized defect plans do not differ considerably.
机译:这项研究基于无损评估(NDE)技术,探地雷达(GPR)的结果,提出了开发和更新劣化预测模型的可行程序。为此,根据加拿大高速公路桥梁设计规范(CHBDC-S6)设计了一种用于简单支撑的钢筋混凝土桥梁桥面的基于系统可靠性的劣化模型。在为整个桥面开发的非线性有限元模型中,应用了不同时间间隔的上部结构单元级劣化条件,并据此估算了系统级可靠性指标。由于注入了除冰盐材料,盐污染被认为会影响顶面,甲板的下拱和梁。基于GPR测试局部缺陷图对生成的主要劣化模型进行了更新,该图是从具有类似计划尺寸的现有桥梁获得的。结果表明,在这种情况下,假设的保守均匀缺陷上部结构是可靠的,也就是说,均匀缺陷计划和局部缺陷计划的估计可靠性指标没有显着差异。

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