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Fabrication and performance evaluation of a novel FBG-based effective stress cell for directly measuring effective stress in saturated soils

机译:基于FBG的有效应激细胞的制备和性能评价,直接测量饱和土中有效应力

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摘要

Generally, effective stresses of saturated soils are determined by subtracting the measured pore-water pressure from the total earth pressure. In this paper, a novel FBG-based effective stress cell (FBG-ESC) for directly measuring effective stress in saturated soils is fabricated. Because of the counteraction of pore-water pressures acting on the front and back surface, the deflection of sensing plate is induced by the average pressure of soil particles only and thus the effective stress is directly measured. The good performance of FBG-ESC in saturated CDG soil under a multi-stage loading has been validated by comparison with the calculated results. Moreover, the FBG-ESC has been applied in a physical model to monitor the evolution of effective stress in saturated clayey soil subjected to complex loadings. The results demonstrate that the FBG-ESC can be also utilized in marine environment. (C) 2020 Elsevier Ltd. All rights reserved.
机译:通常,通过从总接地压力减去测量的孔隙水压力来确定饱和土壤的有效应力。 本文制造了一种用于直接测量饱和土壤中有效应力的新型FBG的有效应力电池(FBG-ESC)。 由于作用在前后表面上的孔隙压力的抗衡,感测板的偏转仅被土壤颗粒的平均压力诱导,从而直接测量有效应力。 通过与计算结果的比较,通过比较了在多阶段负载下饱和CDG土壤中FBG-ESC在饱和CDG土壤中的良好性能。 此外,FBG-ESC已经应用于物理模型,以监测对复杂载荷的饱和粘土土壤中有效应力的演变。 结果表明,FBG-ESC也可以在海洋环境中使用。 (c)2020 elestvier有限公司保留所有权利。

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