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Fiber Bragg Grating Sensors in Three Asphalt Pavement Layers

机译:三层沥青路面中的光纤布拉格光栅传感器

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In the present study, a new approach to the installation of fiber Bragg grating (FBG) sensors in three asphalt pavement layers (the surface layer and both base layers) was implemented for the first time in Belgium. Fiber Bragg grating sensors (FBGs) are diagnostic tools that accurately and efficiently monitor in situ structural behavior. However, nowadays, this technology is not commonly used in asphalt due to its application restrictions under installation and service conditions. FBGs are fragile and break easily under loading. Therefore, there is a need for suitable protection of FBG sensors if they are to be installed during the rough construction process and exposed to heavy-duty loading afterwards. The main objective of the present study is to show the FBG results only for the initial construction process, and, if successful, to continue studying this FBG monitoring system and to plan the next research step by adjusting the system for its application in heavy-duty pavements. Two approaches to FBG installation in three asphalt layers (placed at the bottom of each layer) were tested in the present study: (1) installation of FBGs in prefabricated asphalt specimens in the base layer, directly on the base, and (2) installation of FBGs on the surface of the previously constructed asphalt layer. Both innovative approaches allow the implementation of FBGs without sawing the whole layer into two parts. The obtained results proved a survival rate of 100% for the FBGs. It can be concluded that these new described methods of FBG installation—using a cross-section configuration to carry out strain measurements in two directions (transverse and longitudinal)—can be applied for the monitoring of heavy-duty pavements, while providing the possibility to further re-evaluate current pavement design methods used in Flanders (Belgium).
机译:在本研究中,比利时首次实施了在三个沥青路面层(表面层和两个基础层)中安装光纤布拉格光栅(FBG)传感器的新方法。布拉格光纤光栅传感器(FBG)是诊断工具,可准确有效地监控原位结构行为。但是,由于在安装和使用条件下的应用限制,如今该技术已不常用在沥青中。 FBG易碎,在负载下容易断裂。因此,如果要在粗略的施工过程中安装FBG传感器,然后再承受重负荷,则需要对FBG传感器进行适当的保护。本研究的主要目的是仅显示FBG的初始施工过程结果,如果成功,将继续研究此FBG监控系统,并通过调整该系统在重型应用中的应用来计划下一步的研究步骤人行道。在本研究中测试了在三个沥青层(放置在每一层的底部)中安装FBG的两种方法:(1)将FBG安装在基础层中直接在基础上的预制沥青样本中,以及(2)安装先前构造的沥青层表面上的FBG的数量。两种创新方法都可以实现FBG,而无需将整个层分为两部分。获得的结果证明了FBG的存活率为100%。可以得出结论,这些新描述的FBG安装方法-使用横截面配置在两个方向(横向和纵向)上进行应变测量-可以用于监控重型路面,同时提供以下可能性:进一步重新评估法兰德斯(比利时)目前使用的路面设计方法。

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