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Monitoring of lateral displacements of a slope using a series of special fibre Bragg grating-based in-place inclinometers

机译:使用一系列基于布拉格光栅的特殊光纤就地测斜仪监测斜坡的横向位移

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摘要

Traditional in-place inclinometers are widely used for monitoring displacements inside a slope. However, these traditional inclinometers have several disadvantages such as electromagnetic interference, signal loss for long distance transmission, gravity dependence and poor durability. Scholars have proposed fibre Bragg grating (FBG)-based in-place inclinometers which can overcome these limitations. However, all such in-place inclinometers are based on the relative displacement between two tips of the rigid segment, but the deformation of the segment is not considered in the calculation, which is not consistent with the actual condition. The error of measurement is due to linear superposition. According to classical indeterminate beam theory, the authors developed a new type of FBG-based in-place inclinometers where the deformation of the segment is coordinated with the casings installed in boreholes. This type of FBG-based in-place inclinometer has been fabricated and calibrated in the laboratory. The measured displacement data are in good agreement with theoretical results obtained using equations derived by the authors based on classical beam theory. After the laboratory calibration, a series of FBG-based in-place inclinometers have been installed in one vertical borehole in a slope in China. Monitoring data of all FBG wavelengths have been collected in rainy and dry seasons, and have been analysed in this paper. It has been found that the slope moves quickly in the rainy season and remains stable in the dry season.
机译:传统的就地测斜仪被广泛用于监测斜坡内部的位移。然而,这些传统的倾角仪具有若干缺点,例如电磁干扰,用于长距离传输的信号损失,重力依赖性以及较差的耐用性。学者们提出了可以克服这些限制的基于光纤布拉格光栅(FBG)的就地测斜仪。但是,所有此类就地测斜仪都是基于刚性段的两个尖端之间的相对位移,但是在计算中未考虑段的变形,这与实际情况不符。测量误差归因于线性叠加。根据经典的不确定梁理论,作者开发了一种新型的基于FBG的就地测斜仪,其中,节段的变形与安装在井眼中的套管相协调。这种基于FBG的就地测斜仪已经在实验室中进行了制造和校准。测得的位移数据与作者基于经典梁理论推导的方程所获得的理论结果非常吻合。经过实验室校准后,一系列基于FBG的就地测斜仪已安装在中国斜坡的一个垂直井眼中。已经在雨季和旱季收集了所有FBG波长的监测数据,并对其进行了分析。已经发现,斜坡在雨季移动迅速,而在旱季保持稳定。

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