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An effective approach for road asset management through the FDTD simulation of the GPR signal

机译:通过对GpR信号的FDTD模拟进行道路资产管理的有效方法

摘要

Ground-penetrating radar is a non-destructive tool widely used in many fields of application including pavement engineering surveys. Over the last decade, the need for further breakthroughs capable to assist end-users and practitioners as decision-support systems in more effective road asset management is increasing. In more details and despite the high potential and the consolidated results obtained over years by this non-destructive tool, pavement distress manuals are still based on visual inspections, so that only the effects and not the causes of faults are generally taken into account. In this framework, the use of simulation can represent an effective solution for supporting engineers and decision-makers in understanding the deep responses of both revealed and unrevealed damages. In this study, the potential of using finite-difference time-domain simulation of the ground-penetrating radar signal is analyzed by simulating several types of flexible pavement at different center frequencies of investigation typically used for road surveys. For these purposes, the numerical simulator GprMax2D, implementing the finite-difference time-domain method, was used, proving to be a highly effective tool for detecting road faults. In more details, comparisons with simplified undisturbed modelled pavement sections were carried out showing promising agreements with theoretical expectations, and good chances for detecting the shape of damages are demonstrated. Therefore, electromagnetic modelling has proved to represent a valuable support system in diagnosing the causes of damages, even for early or unrevealed faults. Further perspectives of this research will be focused on the modelling of more complex scenarios capable to represent more accurately the real boundary conditions of road cross-sections. udAcknowledgements - This work has benefited from networking activities carried out within the EU funded COST Action TU1208 “Civil Engineering Applications of Ground Penetrating Radar”.
机译:探地雷达是一种无损工具,广泛用于许多应用领域,包括路面工程勘测。在过去的十年中,对于能够帮助最终用户和从业人员作为更有效的道路资产管理中的决策支持系统的进一步突破的需求日益增长。更详细地讲,尽管这种无损检测工具具有很高的潜力,并且经过数年获得了巩固的结果,但路面遇险手册仍基于目视检查,因此通常只考虑影响而不是造成故障的原因。在此框架中,模拟的使用可以为支持工程师和决策者理解揭示的和未揭示的损害的深层反应提供一种有效的解决方案。在这项研究中,通过模拟通常用于道路勘测的不同勘测中心频率处的几种类型的柔性路面,来分析使用探地雷达信号的时域有限差分模拟的潜力。为此,使用了实现时域有限差分方法的数值模拟器GprMax2D,它被证明是检测道路故障的高效工具。更详细地,与简化的未扰动模型路面部分进行了比较,显示了具有理论预期的有希望的协议,并证明了检测损坏形状的良好机会。因此,电磁建模已被证明是诊断损坏原因的有价值的支持系统,即使对于早期或未发现的故障也是如此。这项研究的其他观点将集中在能够更准确地表示道路横截面实际边界条件的更复杂场景的建模上。 ud致谢-这项工作得益于欧盟资助的COST行动TU1208“探地雷达的土木工程应用”中开展的联网活动。

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