饱和砂土和粘土在不排水循环剪切作用下的孔隙水压力响应

IF 2.4 Q2 GEOSCIENCES, MULTIDISCIPLINARY VIETNAM JOURNAL OF EARTH SCIENCES Pub Date : 2021-12-01 DOI:10.15625/2615-9783/16764
An, Hiroshi, Nhan, Tien, Thien
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引用次数: 1

摘要

在本研究中,观察了在不同试验条件下进行不排水循环剪切的松散细粒砂(Nam O砂)和软粉质粘土(Hue粘土)饱和试样的孔隙水压力变化。循环剪切试验在相对较宽的剪切应变幅度范围(g=0.05%-2%)、不同的循环次数(n=10、50150和200)和不同的剪切方向(单向和双向,相差q=0o、45o和90o)下进行。实验结果表明,在相同的循环剪切条件下,顺化粘土的孔隙水压力积累速度较慢,表明顺化粘土比Nam O砂具有更高的循环剪切阻力。当g³0.4%时,标称相对密度为50%的Nam O砂试样很容易液化,同时,无论本研究中使用的循环剪切条件如何,Hue粘土的软试样都不会液化。孔隙水压力产生的阈值循环次数通常随着g的增加而减少,同时这种性质的阈值累积剪切应变大多接近0.1%。此外,通过使用这个新的应变路径参数,在评估Nam O砂和Hue粘土在不排水单向和双向循环剪切作用下的孔隙水压力积累时,它变得更加有利。
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Pore water pressure responses of saturated sand and clay under undrained cyclic shearing
In this study, changes in the pore water pressure were observed for saturated specimens of a loose fined-grain sand (Nam O sand) and a soft silty clay (Hue clay) subjected to undrained cyclic shearing with different testing conditions. The cyclic shear tests were run for relatively wide range of shear strain amplitude (g = 0.05%-2%), different cycle numbers (n = 10, 50, 150 and 200) and various shear directions (uni-direction and two-direction with phase difference of q = 0o, 45o and 90o). It is indicated from the experimental results that under the same cyclic shearing condition, the pore water pressure accumulation in Hue clay is at a slower rate, suggesting a higher cyclic shear resistance of Hue clay than that of Nam O sand. Liquefaction is reached easily in nominally 50% relative density specimens of Nam O sand when g ³ 0.4%, meanwhile soft specimen of Hue clay is not liquefied regardless of the cyclic shearing conditions used in this study. The threshold number of cycles for the pore water pressure generation generally decreases with g meanwhile, the threshold cumulative shear strain for such a property mostly approaches 0.1%. In addition, by using this new strain path parameter, it becomes more advantageous when evaluating the pore water pressure accumulation in Nam O sand and Hue clay subjected to undrained uni-directional and two-directional cyclic shears.
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来源期刊
VIETNAM JOURNAL OF EARTH SCIENCES
VIETNAM JOURNAL OF EARTH SCIENCES GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
3.60
自引率
20.00%
发文量
0
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