Please use this identifier to cite or link to this item: https://dspace.ctu.edu.vn/jspui/handle/123456789/95902
Title: Pore water pressure responses of saturated sand clay under undrained cyclic shearing
Authors: Tran, Thi Phuong An
Matsuda, Hiroshi
Tran, Thanh Nhan
Nguyen, Thi Thanh Nhan
Pham, Van Tien
Do, Quang Thien
Keywords: Cyclic shear
Effective stress
Nam O sand
Pore water pressure
Hue clay
Issue Date: 2022
Series/Report no.: Vietnam Journal of Earth Sciences;Vol.44, No.02 .- P.181-194
Abstract: 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.
URI: https://dspace.ctu.edu.vn/jspui/handle/123456789/95902
ISSN: 0866-7187
Appears in Collections:Vietnam journal of Earth sciences

Files in This Item:
File Description SizeFormat 
_file_
  Restricted Access
5.1 MBAdobe PDF
Your IP: 18.118.186.143


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.