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Role of the interface between distributed fibre optic strain sensor and soil in ground deformation measurement

机译:分布式光纤应变传感器与土壤接口在地面变形测量中的作用

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Recently the distributed fibre optic strain sensing (DFOSS) technique has been applied to monitor deformations of various earth structures. However, the reliability of soil deformation measurements remains unclear. Here we present an integrated DFOSS- and photogrammetry-based test study on the deformation behaviour of a soil foundation model to highlight the role of strain sensing fibre-soil interface in DFOSS-based geotechnical monitoring. Then we investigate how the fibre-soil interfacial behaviour is influenced by environmental changes, and how the strain distribution along the fibre evolves during progressive interface failure. We observe that the fibre-soil interfacial bond is tightened and the measurement range of the fibre is extended under high densities or low water contents of soil. The plastic zone gradually occupies the whole fibre length when the soil deformation accumulates. Consequently, we derive a theoretical model to simulate the fibre-soil interfacial behaviour throughout the progressive failure process, which accords well with the experimental results. On this basis, we further propose that the reliability of measured strain can be determined by estimating the stress state of the fibre-soil interface. These findings may have important implications for interpreting and evaluating fibre optic strain measurements, and implementing reliable DFOSS-based geotechnical instrumentation.
机译:最近,分布式光纤应变感测(DFOSS)技术已经应用于监测各种地球结构的变形。然而,土壤变形测量的可靠性仍然不清楚。在这里,我们提出了一种基于DFOSS和摄影测量的基于摄影测量的测试研究,突出了土壤基础模型的变形行为,以突出基于DFOSS的岩土监测中应变传感纤维土界面的作用。然后,我们研究了纤维 - 土壤界面行为如何受环境变化的影响,以及如何在渐进式界面故障期间沿纤维的应变分布如何发展。我们观察到纤维 - 土壤界面键被收紧,纤维的测量范围延长了土壤的高密度或低水含量。当土壤变形累积时,塑料区逐渐占据整个纤维长度。因此,我们得出了一种理论模型来模拟整个渐进式故障过程中的纤维 - 土壤界面行为,这与实验结果很好。在此基础上,我们进一步提出了通过估计纤维土界面的应力状态来确定测量应变的可靠性。这些发现可能对解释和评估光纤应变测量并实现可靠的基于DFOSS的岩土工程来具有重要意义。

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