• Title/Summary/Keyword: piezocone dissipation test

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Evaluation of Applicability of Dilatometer Dissipation Test Method for Estimating Horizontal Coefficient of Consolidation in Korean Soft Deposits (딜라토메터를 이용한 수평압밀계수 추정법의 국내 지반 적용성 평가)

  • 이승래;김영상;성주현
    • Journal of the Korean Geotechnical Society
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    • v.17 no.4
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    • pp.153-160
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    • 2001
  • 딜라토메터를 이용한 현장 수평압밀계수 추정법의 국내 점토지반 및 실트질 지반에의 적용성을 평가하기 위해 국내 점토지반과 실트지반에 대하여 각각 딜라토메터 관입시험 및 소산시험을 수행하였다. 소산시험 결과로부터 DMT-C법 [p$_2$-log t법과 C-√t법]과 DMT-A법을 이용하여 수평압밀계수를 추정하여 상호 비교하였으며 다른 실험방법에서 얻어진 결과들과도 함께 비교하고 평가하였다. 비교대상으로는 동일지반의 현장 피에조콘 소산시험으로 얻어진 수평압밀계수 및 불교란시료에 대하여 수행된 로셀압밀실험 및 일차원 실내압밀실험 결과가 함께 이용되었다. 연구결과 C-√t법을 제외한 p$_2$-log t법과 DMT-A법은 국내 점토지반에 대하여 상호일치하는 결과를 줄 뿐 아니라 피에조콘 결과와도 비교적 잘 일치하는 수평 압밀계수를 측정하였으며 다른 결과와 비교할 때 신뢰성 있는 결과를 주었다. 그러나 실트질 지반에 대하여는 p$_2$-log t법만이 적용 가능할 것으로 판단된다.

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Determination of Horizontal Coefficient of Consolidation from the Self-boring Pressuremeter Holding Test by Considering Pore Pressure Dissipation Trend (간극수압 소산경향을 고려한 자가굴착식 프레셔메터로부터의 수평압밀계수 결정법)

  • 김영상
    • Journal of the Korean Geotechnical Society
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    • v.20 no.3
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    • pp.151-159
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    • 2004
  • This paper describes a systematic way of identifying the horizontal coefficient of consolidation of clayey soil by applying an optimization technique to the early part of dissipation data measured from the self-boring pressuremeter strain holding test. An analytical solution developed by Randolph & Wroth (1979) was implemented in normalized form to express the build-up of excess pore pressures as a function of the rigidity index and subsequent dissipation of excess pore pressures around a pressuremeter Horizontal coefficient of consolidation was determined by minimizing the differences between theoretical and measured excess pore pressure curves over 50% degree of dissipation range using optimization technique. The effectiveness of the proposed back-analysis method was examined against the real fled performances obtained from pressuremeter strain holding tests at Gimje and Yangsan site. It is shown that the proposed back-analysis method can evaluates the rational horizontal coefficient of consolidation, which is similar to those obtained from the piezocone dissipation test. Furthermore, proposed method can evaluate appropriate coefficient of consolidation for soil under partially drained condition.

A Study on Factors Influencing to Coefficient of Consolidation in Horizontal Direction (수평압밀계수의 영향인자에 관한 연구)

  • Kim, Chang-Seop;Park, Byung-Soo;Yoo, Nam-Jae
    • Journal of Industrial Technology
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    • v.28 no.B
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    • pp.81-89
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    • 2008
  • This paper is results of investigating the dominant factors influencing to coefficient of consolidation in horizontal direction of Korean marine clays and their correlations through literature review. From the results of analyzing data obtained from field tests such as piezocone penetration and dilatometer tests as well as laboratory tests, coefficient of consolidation in the horizontal direction was found to increase with increase of stiffness index of soil while it decreases with the increase of dissipation time of pore pressure developed during field tests. In general, the coefficient of consolidation in the horizontal direction tends to increase with increase of undrained shear strength and preconsolidation pressure although correlation between them are relatively low. Friction ratio has a high correlation with coefficient of consolidation in the horizontal direction in case of friction ratio being greater than 1.0. For methods of estimating coefficient of consolidation in the horizontal direction with different testing device, values obtained from methods of P2-logt and DMT-A with dilatometer were quite similar to values from piezocone penetration test. Consistency of soil is quite proportional to coefficient of consolidation in the horizontal direction. Clear correlation between coefficients of consolidation in the horizontal and the vertical directions could not be found. coefficient of consolidation in the horizontal direction estimated from the results of field test tends to be 1.13~3.11 times greater than that obtained from laboratory tests.

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Application of Optimum Design Technique in Determining the Coefficient of Consolidation Using Piezocone Test (피에조 콘 시험을 이용정회원, 한국과학기술원 토목공학과 부교수, 정회원, 한국과학기술원 토목공학과 박사 후 과정한 망일계수 결정시 최적화 기법의 적용)

  • Kim, Yeong-Sang;Lee, Seung-Rae;Kim, Yun-Tae
    • Geotechnical Engineering
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    • v.13 no.4
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    • pp.95-108
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    • 1997
  • For normally consolidated clay, several researchers have developed a number of theoretical time factors to determine the coefficient of consolidation However, depending on the assumptions and analytical techniques, it could considerably vary even for a specific degree of consolidation. In this paper, a method is proposed to determine a consistent coefficient of consolidation over all ranges of degree of consolidation by applying the concept of the Optimum Design Technique. The initial excess pore pressure distribution is assumed to be obtainable by the successive spherical cavity expansion theory. The dissipation of pore pressure is simulated by means of two dimensional linear-uncoupled axisymmetric consolidation analysis. The minimization of the differences between the measured and the predicted excess pore pressures was carried by BFGS unconstrained optimum design algorithm with one dimensional golden section search technique. By analyzing numerical and real field examples, it can be found that the adopted optimum technique gives a consistent and convergent results.

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Compressibility Characteristics of Pusan Clays (부산점토의 압축특성)

  • ;;Pham Huy Giao
    • Proceedings of the Korean Geotechical Society Conference
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    • 2000.11a
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    • pp.361-368
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    • 2000
  • In other to examine the compressibility characteristics of cohesive soils in the mouth of the Nakdong river, the oedometer tests were peformed on undisturbed and reconstituted samples obtained by continuous boring typically at 3 different sites. It is meaningful to compare the consolidation behavior of natural clays with a reference state because the natural clays are depending on the stress history, sedimentary environment and geological history. In this study, the insitu state of the Pusan clays was investigated using the concepts of ISL(Nagaraj, 2000) and ICL and SCL(Burland, 1990). And for the purpose of confirming the existence of the underconsolidated clays, a standpipe type piezometer test and a dissipation test by piezocone were performed at their sites. Consequently, the Pusan clays were evaluated as normally consolidated clays.

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Determination of OCR on the Deltaic Clay of the Nakdong River (낙동강 삼각주 점토에 대한 과압밀비의 평가)

  • 정성교;김규종;이대명;조기영
    • Journal of the Korean Geotechnical Society
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    • v.15 no.4
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    • pp.85-97
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    • 1999
  • For a deltaic clay in the mouth of the Nakdong river, OCR was investigated through methods using the results of field measurement, laboratory and field soil tests. As a result, OCRs were obtained around the range of 0.95 to 1.20 by analysis of field measurements, although they were estimated around the values of 0.4 to 0.7 by the results of conventional consolidation tests for the clay. From the dissipation test it was found out that the excess pore pressures scarcely existed in the clay deposit and then the soil was not in the underconsolidated condition. And the OCRs obtained through methods of Mayne(1991) and Cao et al(1996) using the piezocone test and of Mayne & Kemper(1988) using the cone penetration test were in good agreement with those of field measurement.

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Assessment on Consolidation Material Function and Initial Stress for Soft Ground by Hydraulic Fill the at Southern Coast of Korea (남해안 준설매립 연약지반에 대한 압밀 물질함수 및 초기응력 산정)

  • Jeon, Je Sung;Koo, Ja Kap
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.15 no.4
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    • pp.136-145
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    • 2011
  • For a massive project related to building national industrial complexes on a soft ground applied to PVD after dredging and hydraulic fill, laboratory tests were carried out using undisturbed sample taken from various depth. Piezocone penetration and dissipation tests were carried out to assess horizontal coefficient of consolidation and initial stress in field. The ground consists of upper dredged fill and lower original clay layer having both similar marine clays. It should be, however, considered as multi-layered soft ground having different initial void ratio, initial water content, initial effective stress, and permeability and compressibility with directions. To assess initial stress of those soft layers in which have different stress history related to consolidation, CPTu test results, especially excess pore water pressure, were analyzed. It allows to find out distribution of excess pore water pressure and initial stress inner original clay layer.