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Experimental Research on Strain Transfer Behavior of Fiber-Optic Cable Embedded in Soil Using Distributed Strain Sensing

机译:利用分布式应变感应嵌入土壤中纤维电缆应变转移行为的实验研究

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The strain transfer between fiber-optic cable and soil plays a critical role in the deformation characteristics of a cable-soil interface. Existing findings cannot provide a clear understanding of the effects of key influencing factors including horizontal confining pressures, anchorage property of cables, and saturation of soils on the strain transfer and shear characteristics at the interface. A group of pullout tests of cables in soil were conducted to examine the strain transfer efficiency using the optical frequency domain reflectometry (OFDR) technique. Two kinds of cables were pulled out from sandy soil and sand-gravel-clay mixtures under the confining pressures of 0-1.2 MPa. Typical strain-hardening behavior was observed for cables with confining pressure and anchorage, and the interface shear strength could not be evaluated within the strain measurement range. To address this problem, the so-called interface shear coefficient was adopted, and the key influential factors were discussed quantitatively. The interface shear coefficient keeps a linear relationship with the confining pressure, and that of the anchored cable in saturated backfill mixtures is 2-3 times than that of the unanchored cable. These findings will guide the methods of gaining reliable data for revealing the failure mechanism of geostructures via distributed strain sensing.
机译:光纤电缆和土壤之间的应变转移在电缆土界面的变形特性中起着关键作用。现有调查结果无法清楚地了解关键影响因素的影响,包括水平限制压力,电缆的锚固性能和界面应变转移和剪切特性的土壤饱和度。通过光学频域反射仪(OFDR)技术进行土壤中电缆的一组拉出试验,以检查应变转移效率。在0-1.2MPa的限制压力下从砂土和砂砾 - 粘土混合物中拉出两种电缆。观察到具有限制压力和锚固的电缆的典型应变硬化行为,并且在应变测量范围内无法评估界面剪切强度。为了解决这个问题,采用所谓的界面剪切系数,数量地讨论了关键的影响因素。界面剪切系数与限制压力保持线性关系,饱和回填混合物中的锚固电缆的关系比未定向电缆的锚固电缆为2-3次。这些调查结果将指导通过分布式应变感测量的揭示出几空的可靠数据的方法。

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