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소산 실험을 이용한 관입 장비의 교란 효과 추정Evaluation of Disturbance Effect of Penetrometer by Dissipation Tests

Other Titles
Evaluation of Disturbance Effect of Penetrometer by Dissipation Tests
Authors
윤형구홍성진이우진이종섭
Issue Date
2008
Publisher
대한토목학회
Keywords
압밀; CPT; DMT; 유효 반경; 현장 속도 프로브; 간극수압 소산; consolidation; CPT; DMT; effective radius; field velocity probe; pore pressure dissipation
Citation
대한토목학회 논문집C, v.28, no.6, pp.339 - 347
Indexed
KCI
Journal Title
대한토목학회 논문집C
Volume
28
Number
6
Start Page
339
End Page
347
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/124769
ISSN
1015-6348
Abstract
The penetration of the probe produces the excess pore pressure due to the disturbance. The objective of this study is to evaluate the disturbance zone by using the dissipation of the excess pore water pressure, which was generated due to the penetration of the penetrometer with different size. The CPT, DMT and FVP (Field Velocity Probe) are adopted for in-situ tests. The tests are carried out in the construction site of north container pier of Busan new port, Korea where is accelerating the consolidation settlement using plastic board drains (PBD) and surcharges by crushed gravels. The coefficient of consolidation (Ch) and soil properties are deduced by the laboratory test. The in-site tests are performed after the predrilling the surcharge zone at the point of 90% degree of consolidation. To minimize the penetration effect, the horizontal distance between penetration tests is 3m, the change of the pore pressure is monitored at the fixed depth of 24m. The coefficient of consolidation (Ch) and the t50s are calculated based on the laboratory test and the in-situ data, respectively. The equvalent radi based on the t50 shows that the FVP and the DMT produce the smallest and the greatest equivalent radi, respectively.
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