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Evaluation of Thawing and Stress Restoration Method for Artificial Frozen Sandy Soils Using Sensors

Authors
Kim, JongchanLee, Jong-SubArnold, CodyKim, Sang Yeob
Issue Date
3월-2021
Publisher
MDPI
Keywords
artificial ground freezing; frozen soils; liquefaction; stress restoration; thawing
Citation
SENSORS, v.21, no.5, pp.1 - 18
Indexed
SCIE
SCOPUS
Journal Title
SENSORS
Volume
21
Number
5
Start Page
1
End Page
18
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/128451
DOI
10.3390/s21051916
ISSN
1424-8220
Abstract
Undisturbed frozen samples can be efficiently obtained using the artificial ground freezing method. Thereafter, the restoration of in situ conditions, such as stress and density after thawing, is critical for laboratory testing. This study aims to experimentally explore the effects of thawing and the in situ stress restoration process on the geomechanical properties of sandy soils. Specimens were prepared at a relative density of 60% and frozen at -20 degrees C under the vertical stress of 100 kPa. After freezing, the specimens placed in the triaxial cell underwent thawing and consolidation phases with various drainage and confining stress conditions, followed by the shear phase. The elastic wave signals and axial deformation were measured during the entire protocol; the shear strength was evaluated from the triaxial compression test. Monotonic and cyclic simple shear tests were conducted to determine the packing density effect on liquefaction resistance. The results show that axial deformation, stiffness, and strength are minimized for a specimen undergoing drained thawing, restoring the initial stress during the consolidation phase, and that denser specimens are less susceptible to liquefaction. Results highlight that the thawing and stress restoration process should be considered to prevent the overestimation of stiffness, strength, and liquefaction resistance of sandy soils.
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공과대학 (건축사회환경공학부)
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