受损柔性路面上探地雷达信号衰减随深度的变化

D. Ranalli, M. Scozzafava, M. Tallini, S. Colagrande
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引用次数: 9

摘要

报告了对建在堤防和切割路段上的受损柔性路面进行的探地雷达调查的结果。进行调查是为了认识以下之间的相关性:(i)损害类型,(ii)路堤高度或切割路段深度,(iii)交通负荷和(iv)探地雷达扫描结果。研究了导致承载力损失的两种损伤类型:横向裂缝和分叉裂缝。选择了16个地点,描述了要分析的变量的不同组合。这些地点是在拉奎拉(意大利中部)地区的次要非城市道路中选择的。采用标称频率为1600 MHz的天线阵列,通过探地雷达定量分析(探地雷达信号衰减与深度的关系)来评估道路完整性。它调查了1.5 m深度的介质,这也是诱导交通应力影响的最大深度。从两组扫描(受影响和未受影响的部分)进行的结果进行比较,以确定GPR信号的变化。这些变化使得追踪道路路面与路堤高度、切割深度和交通负荷的损坏原因成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GPR signal attenuation vs. depth on damaged flexible road pavements
The findings of a GPR survey carried out on damaged flexible road pavements built on embankments and in cutting sections were reported. The survey was carried out to recognize correlations between: (i) types of damage, (ii) height of embankments or depth of cutting sections, (iii) traffic load and (iv) GPR scan results. Two types of damages, inducing loss of load bearing capacity, were investigated: transversal cracks and ramified cracks. Sixteen sites were chosen, describing the different combinations of the variables to be analyzed. The sites were selected among secondary non-urban roads in the area of L'Aquila (central Italy). Road integrity was evaluated by a GPR quantitative analysis (GPR signal attenuation vs. depth), using an antenna array with a nominal frequency of 1600 MHz. It investigates media till a depth of 1.5 m which is also the maximum depth of influence of the induced traffic stress. The results carried out from two sets of scans (affected and unaffected parts) were compared in order to identify GPR signal changes. These changes made it possible to trace the causes of the damage to the road pavement vs. embankment height, cutting depth and traffic load.
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