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Monitoring of soil nailed slope stabilizations using distributed fiber optic sensing

机译:使用分布式光纤传感监测土钉边坡的稳定性

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Soil nailing systems are a common way to stabilize slopes and construction pits. Their design is usually based on the mechanical equilibrium of a rigid body motion and therefore, only tensile stresses are considered and accompanying forces like bending (shear stresses) in the soil nails are neglected. Continuous strain measurements along nails could verify this assumption, but may not be performed using conventional sensing technologies. This paper reports about monitoring of a soil nailed slope stabilization using distributed fiber optic sensing. Soil nails in different anchoring horizons were instrumented and autonomously monitored over several weeks, in which the construction pit was excavated continuously. After the excavation, the final load bearing capacity of one selected nail was determined within a classical geotechnical load test. In addition to the field measurements, the bending behavior of the instrumented nail system was analyzed under laboratory conditions. The presented studies demonstrate the high potential of distributed fiber optic sensing systems and their capability to extend traditional measurement methods in foundation engineering applications.
机译:土钉系统是稳定边坡和施工坑的常用方法。它们的设计通常基于刚体运动的机械平衡,因此,仅考虑了拉应力,而忽略了土钉中的伴随力,例如弯曲(剪切应力)。沿指甲的连续应变测量可以验证这一假设,但可能无法使用常规传感技术执行。本文报道了使用分布式光纤传感监测土钉边坡稳定性的方法。在几个星期内,对不同锚固层中的土钉进行了测量并进行了自动监测,在这些土钉中不断开挖了施工坑。开挖后,在经典的岩土工程荷载测试中确定了一个选定钉子的最终承载力。除了现场测量外,还可以在实验室条件下分析仪器钉系统的弯曲行为。提出的研究证明了分布式光纤传感系统的巨大潜力及其在基础工程应用中扩展传统测量方法的能力。

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