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Effects of Pore Water Volume on K-0 for Sand Subject to Freezing and Thawing

Authors
Kim IncheolLee DonghunKim, YejinYUN, TAE SUPLee, Jun Hwan
Issue Date
Mar-2021
Publisher
American Society of Civil Engineers
Citation
Journal of Geotechnical and Geoenvironmental Engineering - ASCE, v.147, no.3
Journal Title
Journal of Geotechnical and Geoenvironmental Engineering - ASCE
Volume
147
Number
3
URI
https://yscholarhub.yonsei.ac.kr/handle/2021.sw.yonsei/6485
ISSN
1090-0241
1943-5606
Abstract
In this study, the coefficient of lateral earth pressure at rest (K-0) for sand subject to freezing and thawing was investigated, focusing on the effect of pore water volume. Unfrozen (UF), frozen (FR), and thawed (TH) conditions were all addressed and considered in the investigation. Experimental testing programs were established and conducted to characterize the values of K-0 for different degrees of saturation (Sr) and relative densities. The effects of freezing and thawing on K-0 were significant for the fully saturated condition of S-r=100%, whereas they were negligible for partially saturated or unsaturated conditions. For FR condition, the values of K-0 were low during the early loading stage and increased gradually as sigma(v)' increased due to the breakage of pore ice. The lower K-0 values for FR condition were more significant for higher S-r. After thawing, a net volume increase was observed for S-r=100%, thereby an increase in K-0 took place. This phenomenon was suggested as an important aspect for the stability of retaining structures during thawing periods. The computerized tomography images and the shear wave velocities for UF and TH conditions confirmed the effect of S-r on K-0. A K-0 estimation method considering the effect of freezing and thawing was proposed, showing an improved prediction of K-0.
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