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Monitoring displacement distribution within the rock mass during a plate load test

机译:监测板载试验期间岩体内的位移分布

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A fiber optic sensor system has been developed specifically for monitoring displacements within geomaterials. Optic fiber Bragg gratings were fixed to the sides of a slender piece of plastic rod as a means for displacement measurements. An attempt was made to monitor the local displacements within an artificial soft rock sample in a laboratory model plate load test. Two 8 mm diameter fiber optic sensored Delrin rods were inserted into the rock mass at various depths below the model foundation. The amount and distribution of the displacements caused by the plate load were measured through the flexural strains occurred in the fiber optic sensors. Initial results have indicated that the technique was capable of detecting relative displacements at least for the case of a model plate load test. Reasonable relationship between moduli and strains could be derived from these displacement measurements and estimated average stresses based on Boussinesq theory. This paper describes the laboratory set up of the sensor system; present the results of the plate load test and discusses the implications in the use of fiber optic sensors for field local displacement measurements.
机译:已经专门开发了光纤传感器系统,用于监测岩土内的位移。光纤布拉格光栅固定在塑料棒的纤维棒的侧面,作为置换测量的手段。尝试在实验室模型板负载测试中监测人造软岩样内的局部位移。在模型基础以下的各种深度下插入两种8毫米直径的光纤传感德雷氏棒。通过光纤传感器中发生的弯曲菌株测量由板载引起的位移的量和分布。初始结果表明,该技术能够为模型板负载测试的情况进行至少检测相对位移。根据BoussinesQ理论,可以从这些位移测量和估计的平均应力来源于Moduli和菌株之间的合理关系。本文介绍了传感器系统的实验室建立;介绍板载试验的结果,并探讨了用于现场局部位移测量的光纤传感器的影响。

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