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Using Custom Fiber Bragg Grating-Based Sensors to Monitor Artificial Landslides

机译:使用基于光纤布拉格光栅的定制传感器来监测人造滑坡

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摘要

Four custom fiber Bragg grating (FBG)-based sensors are developed to monitor an artificial landslide located in Nanjing, China. The sensors are composed of a rod and two FBGs. Based on the strength of the rods, two sensors are referred to as “hard sensors” (Sensor 1 and Sensor 2), the other two are referred to as “soft sensors” (Sensor 3 and Sensor 4). The two FBGs are fixed on each sensor rod at distances of 50 cm and 100 cm from the top of the rod (an upper FBG and a lower FBG). In the experiment presented in this paper, the sensors are installed on a slope on which an artificial landslide is generated through both machine-based and manual excavation. The fiber sensing system consists of the four custom FBG-based sensors, optical fiber, a static fiber grating demodulation instrument (SM125), and a PC with the necessary software. Experimental data was collected in the presence of an artificial landslide, and the results show that the lower FBGs are more sensitive than the upper FBGs for all four of the custom sensors. It was also found that Sensor 2 and Sensor 4 are more capable of monitoring small-scale landslides than Sensor 1 and Sensor 3, and this is mainly due to their placement location with respect to the landslide. The stronger rods used in the hard sensors make them more adaptable to the harsh environments of large landslides. Thus, hard sensors should be fixed near the landslide, while soft sensors should be placed farther away from the landslide. In addition, a clear tendency of strain variation can be detected by the soft sensors, which can be used to predict landslides and raise a hazard alarm.
机译:开发了四种基于光纤布拉格光栅(FBG)的定制传感器,以监测位于中国南京的人工滑坡。传感器由一根杆和两个FBG组成。根据杆的强度,将两个传感器称为“硬传感器”(传感器1和传感器2),将另外两个传感器称为“软传感器”(传感器3和传感器4)。两个FBG固定在每个传感器杆上,距离杆顶部50 cm和100 cm(上FBG和下FBG)。在本文提出的实验中,传感器安装在斜坡上,在斜坡上通过机器和人工开挖都产生了人工滑坡。光纤传感系统包括四个基于FBG的定制传感器,光纤,一台静态光纤光栅解调仪(SM125)和一台装有必要软件的PC。在存在人工滑坡的情况下收集了实验数据,结果表明,对于所有四个定制传感器,较低的FBG均比较高的FBG敏感。还发现传感器2和传感器4比传感器1和传感器3更能监测小规模滑坡,这主要是由于它们相对于滑坡的放置位置。硬传感器中使用的更坚固的测杆使它们更适合大型滑坡的恶劣环境。因此,硬传感器应固定在滑坡附近,而软传感器应放置在距滑坡较远的位置。另外,可以通过软传感器检测到明显的应变变化趋势,该趋势可用于预测滑坡并发出危险警报。

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