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首页> 外文期刊>Bulletin of engineering geology and the environment >Analysis of the strain process of soil slope model during infiltration using BOTDA
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Analysis of the strain process of soil slope model during infiltration using BOTDA

机译:利用BOTDA分析入渗过程中土坡模型的应变过程。

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摘要

Rainfall infiltration can be a major cause of slope failure. In the present paper, an indoor soil slope model was bui a distributed sensing fiber was designed based on Brillouin optical time-domain analysis (BOTDA). Two soil moisture probes were planted and a rainfall infiltration test was simulated to acquire the data of slope infiltration and deformation progress under rainfall infiltration. Time domain volumetric moisture content of the slope as well as the vertical and horizontal strain changes were monitored. The moisture content results showed the infiltration path and had obvious ascent at the sliding surface of the slope. The fiber results showed that there existed an apparent strain concentration near the shear section of the slope and strain conversion zone; the soil deformation law had a close spatial relationship with the infiltration path in the soil. In addition to the accurate determination of the sliding surface, a secondary shear surface was also detected by the BOTDA system. These results provide valuable information pertaining to the sliding mechanism and prediction of slope failure.
机译:降雨入渗可能是边坡破坏的主要原因。本文建立了室内土坡模型。基于布里渊光学时域分析(BOTDA)设计了分布式传感光纤。种植了两个土壤湿度探头,并模拟了降雨入渗试验,以获取坡度入渗和降雨入渗下变形过程的数据。监测斜坡的时域体积含水量以及垂直和水平应变的变化。含水率结果显示了入渗路径,并且在斜坡的滑动表面上具有明显的上升。纤维结果表明,在边坡和应变转换区的剪切段附近存在明显的应变集中。土壤变形规律与土壤入渗路径具有密切的空间关系。除了可以精确确定滑动表面之外,BOTDA系统还可以检测到次级剪切表面。这些结果提供了有关滑动机制和边坡破坏预测的有价值的信息。

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