Department of Information Engineering, Electronics and Telecommunications (DIET), Sapienza University of Rome, 00184 Roma, Italy.
Department of Engineering for Innovation, Complesso Ecotekne-Corpo O, University of Salento, 73100 Lecce, Italy.
Sensors (Basel). 2022 Aug 25;22(17):6398. doi: 10.3390/s22176398.
The aim of this work is to propose two different and integrated sensors for the structural health monitoring of concrete beams. In particular, a diffused sensing element and a split ring resonator network are presented. The first sensor is able to detect the variations in the dielectric properties of the concrete along the whole beam length, for a diffuse monitoring both during the important concrete curing phase and also for the entire life cycle of the concrete beams. The resonators instead work punctually, in their surroundings, allowing an accurate evaluation of the permittivity both during the drying phase and after. This allows the continuous monitoring of any presence of water both inside the concrete beam and at points that can be critical, in the case of beams in dams, bridges or in any case subject to a strong presence of water which could lead to deterioration, or worse, cause serious accidents. Moreover, the punctual sensors are able to detect the presence of cracks in the structure and to localize them.
这项工作的目的是提出两种不同且集成的传感器,用于混凝土梁的结构健康监测。特别是,提出了一种漫射传感元件和一个分裂环谐振器网络。第一个传感器能够检测混凝土沿整个梁长度的介电特性的变化,用于漫射监测,包括在重要的混凝土养护阶段以及混凝土梁的整个生命周期。而谐振器则是在其周围进行有针对性的工作,允许在干燥阶段及其后对介电常数进行精确评估。这允许连续监测混凝土梁内部以及在水可能存在的关键点处的任何水分存在情况,例如在水坝、桥梁或任何受到强烈水存在影响的地方,这可能导致恶化,甚至更糟的是,导致严重事故。此外,这些点状传感器能够检测结构中的裂缝的存在并定位它们。