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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Augmenting the in-situ rock bolt pull test with distributed optical fiber strain sensing
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Augmenting the in-situ rock bolt pull test with distributed optical fiber strain sensing

机译:使用分布式光纤应变感测增强原位岩石螺栓试验

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摘要

A high spatial resolution distributed optical fiber strain sensing technology is demonstrated to advance the assessment of support element behaviour during in-situ pull tests. A technique to instrument typical tendon support elements with a fiber optic sensor is discussed and was trialed at an underground salt mine through a series of pull tests on instrumented rebar elements. It is shown that a continuous strain profile can be measured along the length of a support element under pull test load, which, in turn, allows the interfacial shear stress distribution and deformation of the support element to be resolved. In comparison to load and displacement measurements solely at the support element head, which is what is traditionally reported for in-situ pull tests, the optical fiber strain sensor is found to provide significantly more insight into the mechanistic behaviour of the support element by readily measuring highly variable strain distributions and by quantifying the load development length of the support element. The sensor arrangement allowed the conventional handling and installation procedures to be followed without any implication to the integrity of the sensor. Accordingly, an instrumented reinforcement element can be installed with minimal interruption to on-going mining/construction procedures at the given project.
机译:高空间分辨率分布式光纤应变传感技术被证明在原位拉动试验期间推进支持元件行为的评估。讨论了用光纤传感器仪器典型肌腱支撑元件的技术,并通过仪表钢筋元素上的一系列拉动测试在地下盐矿试验。结果表明,可以沿着拉动试验载荷的支撑元件的长度测量连续应变曲线,这又允许待解析的界面剪切应力分布和载体元件的变形。相当于仅在支撑元件头部的负载和位移测量,这是传统上报告的原位拉动测试,发现光纤应变传感器通过容易测量来提供更明显地深入了解支撑元件的机械行为高度可变应变分布,并通过量化支撑元件的负载开发长度。传感器装置允许遵循传统的处理和安装过程,而不会对传感器的完整性施加任何意义。因此,仪表化的加强元件可以安装在给定项目的正在进行的挖掘/施工过程中的最小中断。

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