Department of Engineering for Innovation, University of Salento, 73100 Lecce, Italy.
Department of Information Technology and Electrical Engineering (DIETI), University of Naples Federico II, 80125 Naples, Italy.
Sensors (Basel). 2021 Jul 16;21(14):4872. doi: 10.3390/s21144872.
This work presents a microwave reflectometry-based system for monitoring large concrete structures (during the curing process and also while the structure is in use), through the combined use of punctual and diffused sensing elements. In particular, the adoption of punctual probes on a reference concrete specimen allows the development of an innovative and accurate calibration procedure, useful to obtain the value of the water content on a larger structure made of the same material. Additionally, a wire-like diffused sensing element can be permanently embedded in buildings and used to monitor the structure along the entire length of the sensing element. The adopted diffused sensing element can be used not only to detect dielectric variation during the curing process, but also throughout the service life of the structure. The combined use of punctual and diffused sensing elements represents an important innovation from a procedural point of view, able to provide detailed and quantitative information on the health status of the structure both during and after construction.
本工作提出了一种基于微波反射计的系统,用于通过使用点状和漫射传感元件的组合来监测大型混凝土结构(在养护过程中和结构使用过程中)。特别是,在参考混凝土试件上采用点状探头允许开发一种创新和精确的校准程序,该程序有助于获得由相同材料制成的更大结构的含水量值。此外,线状漫射传感元件可以永久地嵌入建筑物中,并用于沿着传感元件的整个长度监测结构。所采用的漫射传感元件不仅可以在养护过程中检测介电变化,而且还可以在结构的整个使用寿命内进行检测。点状和漫射传感元件的组合使用从程序的角度来看是一个重要的创新,能够提供关于结构在施工期间和之后的健康状况的详细和定量的信息。