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Case Studies of PSDDF for Phased Placement of Dredged Soils

Authors
Lee, DongseopPark, SangwooStark, Timothy D.Kim, YoungukChoi, Hangseok
Issue Date
1-10월-2013
Publisher
TAYLOR & FRANCIS INC
Keywords
dredged material placement; non-linear finite strain consolidation; phased placement; PSDDF
Citation
MARINE GEORESOURCES & GEOTECHNOLOGY, v.31, no.4, pp.348 - 359
Indexed
SCIE
SCOPUS
Journal Title
MARINE GEORESOURCES & GEOTECHNOLOGY
Volume
31
Number
4
Start Page
348
End Page
359
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/101912
DOI
10.1080/1064119X.2012.680680
ISSN
1064-119X
Abstract
Use of Terzaghi's one-dimensional consolidation theory is not suitable for consolidation of highly deformable soft clays such as dredged soils. To model this condition, it is necessary to consider non-linear finite strain consolidation behavior, i.e., changes in compressibility and permeability with increasing stress. A one-dimensional non-linear finite strain numerical model, Primary Consolidation, Secondary Compression, and Desiccation of Dredged Fill (PSDDF), has been used to predict the stress-dependent settlement of fine-grained dredged materials. In this paper, two case studies of using PSDDF are discussed to illustrate the applicability and accuracy of PSDDF. The first case study involves PSDDF simulations of laboratory-phased placement of a marine clay dredged from Busan, Korea. PSDDF results are in good agreement with the corresponding results of the laboratory large strain consolidation tests. The other involves estimating the service life of the Craney Island Dredged Material Management Area near Norfolk, Virginia, in the United States. The excellent agreement between measured and calculated values shows that PSDDF is a reliable tool for predicting settlement of dredged material.
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CHOI, HANG SEOK
공과대학 (건축사회환경공학부)
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