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Evaluation of preconsolidation stress by shear wave velocity

Authors
Yoon, Hyung-KooLee, ChanghoKim, Hyun-KiLee, Jong-Sub
Issue Date
4월-2011
Publisher
TECHNO-PRESS
Keywords
compressibility; consolidation; fabric change; preconsolidation stress; shear wave velocity; void ratio
Citation
SMART STRUCTURES AND SYSTEMS, v.7, no.4, pp.275 - 287
Indexed
SCIE
SCOPUS
KCI
OTHER
Journal Title
SMART STRUCTURES AND SYSTEMS
Volume
7
Number
4
Start Page
275
End Page
287
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/112787
DOI
10.12989/sss.2011.7.4.275
ISSN
1738-1584
Abstract
The behaviors of saturated soils such as compressibility and permeability are distinguished by preconsolidation stress. Preconsolidation stress becomes an important design parameter in geotechnical structures. The goal of this study is to introduce a new method for the evaluation of preconsolidation stress based on the shear wave velocity at small strain, using Busan, Incheon, and Gwangyang clays in Korea. Standard consolidation tests are conducted by using an oedometer cell equipped with bender elements. The preconsolidation stresses estimated by shear wave velocity are compared with those evaluated by the Casagrande, constrained modulus, work, and logarithmic methods. The preconsolidation stresses estimated by the shear wave velocity produce very similar values to those evaluated by the Onitsuka method (one of the logarithmic methods), which yields an almost real preconsolidation stress. This study shows that the shear wave velocity method provides a reliable method for evaluating preconsolidation stress and can be used as a complementary method.
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LEE, Jong Sub
공과대학 (건축사회환경공학부)
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