首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Effectiveness of 2-D and 2.5-D FDTD Ground-Penetrating Radar Modeling for Bridge-Deck Deterioration Evaluated by 3-D FDTD
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Effectiveness of 2-D and 2.5-D FDTD Ground-Penetrating Radar Modeling for Bridge-Deck Deterioration Evaluated by 3-D FDTD

机译:2-D和2.5-D FDTD探地雷达建模对3-D FDTD评估桥面退化的有效性

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Computational modeling effectively analyzes the wave propagation and associated interaction within heterogeneous reinforced concrete bridge decks, providing valuable information for sensor selection and placement. It provides a good basis for the implementation of the inverse problem in defect detection and the reconstruction of subsurface properties, which is beneficial for defect diagnosis. The objective of this study is to evaluate the effectiveness of lower order models in the evaluation of bridge-deck subsurfaces modeled as layered media. The two lower order models considered are a 2-D model and a 2.5-D model that uses the 2-D geometry with a compressed coordinate system to capture wave behavior outside the cross-sectional plane. Both the 2- and 2.5-D models are compared to the results obtained from a full 3-D model. A filter that maps the 3-D excitation signal appropriately for 2- and 2.5-D simulations is presented. The 2.5-D model differs from the 2-D model in that it is capable of capturing 3-D wave behavior interacting with a 2-D geometry. The 2.5-D matches results from the corresponding 3-D model when there is no variation in the third dimension. Computational models for air-launched ground-penetrating radar with 1-GHz central frequency and bandwidth for the detection of bridge-deck delamination are implemented in 2-, 2.5-, and 3-D using FDTD simulations. In all cases, the defect is identifiable in the results. Thus, it is found that in layered media (such as bridge decks) 2- and 2.5-D models are good approximations for modeling bridge-deck deterioration, each with an order of magnitude reduction in computational time.
机译:计算建模可以有效地分析非均质钢筋混凝土桥面板中的波传播及其相关的相互作用,从而为传感器的选择和布置提供有价值的信息。为在缺陷检测中实现反问题和重建地下特性提供了良好的基础,有利于缺陷诊断。这项研究的目的是评估低阶模型在建模为分层介质的桥面地下评估中的有效性。所考虑的两个较低阶模型是2-D模型和2.5-D模型,该模型使用带有压缩坐标系的2-D几何来捕获横截面外部的波浪行为。将2维和2.5维模型与从完整3维模型获得的结果进行比较。提出了一种滤波器,该滤波器可将3-D激励信号映射为适用于2-D和2.5-D模拟的信号。 2.5-D模型与2-D模型的不同之处在于,它能够捕获与2-D几何体相互作用的3-D波行为。如果三维尺寸没有变化,则2.5D匹配相应3D模型的结果。使用FDTD仿真,以2-D,2.5-D和3-D实现了具有1-GHz中心频率和带宽的空中发射探地雷达的计算模型,用于检测桥面分层。在所有情况下,结果中的缺陷都是可以识别的。因此,发现在分层介质(例如桥面板)中,2维和2.5维模型是建模桥面退化的良好近似方法,每个模型的计算时间减少了一个数量级。

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