• 제목/요약/키워드: soil unloading

검색결과 50건 처리시간 0.018초

재하-제하과정에서 발생하는 흙의 변형계수 및 포아송비의 특성 (Characteristics of Deformation Modulus and Poisson's Ratio of Soil by Unconfined Loading-Reloading Axial Compression Process)

  • 송창섭;김명환;김기범;박오현
    • 한국농공학회논문집
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    • 제64권3호
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    • pp.45-52
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    • 2022
  • Prediction of soil behavior should be interpreted based on the level of axial strain in the actual ground. Recently numerical methods have been carried out focus on the state of soil failure. However considered the deformation of soil the prior to failure, mostly the small strain occurring in the elastic range is considered. As a result of calculating the deformation modulus to 50% of the maximum unconfined compression strength, Deformation modulus (E50) showed a tendency to increase according to the degree of compaction by region. The Poisson's ratio during loading-unloading was 0.63, which was higher than the literature value of 0.5. For the unconfined compression test under cyclic loading for the measurement of permanent strain, the maximum compression strength was divided into four step and the test was performed by load step. Changes in permanent strain and deformation modulus were checked by the loading-unloading test for each stage. At 90% compaction, the permanent deformation of the SM sample was 0.21 mm, 0.37 mm, 0.6 mm, and 1.35 mm. The SC samples were 0.1 mm, 0.17 mm, 0.42 mm, and 1.66 mm, and the ML samples were 0.48 mm, 0.95 mm, 1.30 mm, and 1.68 mm.

복합보강재를 이용한 보강점성토의 거동 (Behavior of Geosynthetic-Reinforced Clay)

  • 노한성
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 토목섬유 특별세미나
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    • pp.73-78
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    • 2000
  • The reinforced soil has been widely used for constructing retaining walls and embankment with steep slope. However, the benefits of soil reinforcing are often-restricted by a lack of good quality backfill material. In this study, plane strain compression tests were carried out to study the effects of preloading on the behavior of geosynthetic-reinforced saturated clay. For the unreinforced and reinforced soil, drained and undrained shearing tests were peformed after anisotropic consolidation in a constant strain rate. A preoading test was carried out by preloading, creep, unloading, aging and undrained shearing after anisotropic consolidation(K=0.3, σ'₃=50 kPa). It was observed that a reinforced clay, Kanto loam, can have a great initial secant modulus in undraind condition by well compaction and over consolidation. The results shown that the increasing of drained strength should be used to apply a large preloading in the case of reinforced clay.

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터널해석에 있어 지하수 거동의 중요성 (Significance of Ground Water Movements in the Numerical Modelling of Tunnelling)

  • 신종호
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2003년도 봄 학술발표회 논문집
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    • pp.257-264
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    • 2003
  • Tunnelling in water bearing soils influences the ground water regime. It has been indicated in the literature that the existence of ground water above a tunnel influences tunnel stability and the settlement profile. Only limited research, however, has been done on ground water movements around tunnels and their influence on tunnel performance. Time dependent soil behaviour can be caused by the changes of pore water pressure and/or the viscous properties of soil(creep) under the stress change resulting from the advance of the tunnel face. De Moor(1989) demonstrated that the time dependent deformations due to tunnelling are mainly the results of pore pressure dissipation and should be interpreted in terms of effective stress changes. Drainage into tunnels is governed by the permeability of the soil, the length of the drainage path and the hydraulic boundary conditions. The potential effect of lime dependent settlement in a shallow tunnel is likely to occur rapidly due to the short drainage path and possibly high coefficient of consolidation. Existing 2D modelling methods are not applicable to these tunnelling problems, as it is difficult to define empirical parameters. In this paper the time-based 2D modelling method is adopted to account for the three dimensional effect and time dependent behaviour during tunnel construction. The effect of coupling between the unloading procedure and consolidation during excavation is profoundly investigated with the method. It is pointed out that realistic modelling can be achieved by defining a proper permeability at the excavation boundary and prescribing appropriate time for excavation Some guidelines for the numerical modelling of drained and undrained excavation has been suggested using characteristic time factor. It is highlighted that certain range of the factor shows combined effect between the unloading procedure due to excavation and consolidation during construction.

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Characterizing the strain transfer on the sensing cable-soil interface based on triaxial testing

  • Wu, Guan-Zhong;Zhang, Dan;Shan, Tai-Song;Shi, Bin;Fang, Yuan-Jiang;Ren, Kang
    • Smart Structures and Systems
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    • 제30권1호
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    • pp.63-74
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    • 2022
  • The deformation coordination between a rock/soil mass and an optical sensing cable is an important issue for accurate deformation monitoring. A stress-controlled triaxial apparatus was retrofitted by introducing an optical fiber into the soil specimen. High spatial resolution optical frequency domain reflectometry (OFDR) was used for monitoring the strain distribution along the axial direction of the specimen. The results were compared with those measured by a displacement meter. The strain measured by the optical sensing cable has a good linear relationship with the strain calculated by the displacement meter for different confining pressures, which indicates that distributed optical fiber sensing technology is feasible for soil deformation monitoring. The performance of deformation coordination between the sensing cable and the soil during unloading is higher than that during loading based on the strain transfer coefficients. Three hypothetical strain distributions of the triaxial specimen are proposed, based on which theoretical models of the strain transfer coefficients are established. It appears that the parabolic distribution of specimen strain should be more reasonable by comparison. Nevertheless, the strain transfer coefficients obtained by the theoretical models are higher than the measured coefficients. On this basis, a strain transfer model considering slippage at the interface of the sensing cable and the soil is discussed.

입상토의 응력경로 의존거동 (Stress-Path Dependent Behavior of Granular Soil)

  • 정진섭;권원식
    • 한국농공학회지
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    • 제40권1호
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    • pp.106-117
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    • 1998
  • The nature of stress-path dependency, the principle that governs deformations in granular soil, and the use of Lade's double work-hardening model for predicting soil response for a variety of stress-paths have been investigated, and are examined The test results and the analyses presented show that under some conditions granular soils exhibit stress-path dependent behavior. For stress-paths involving unloading or reloading, the stress-path with the higher average stress level produces the larger strains, whereas all stress-paths having the same intial states of stress, and involving only primary loading conditions, produce strains of similar magnitudes. Experimental evidence indicates that the stress- path dependent response obtained from the double work-hardening model is also observed for real soils. It is concluded that the influence of stress history on the friction angle is negligible and the strains increment direction is uniquely determined from the state of stress but is not perpendicular to the yield surface. The strains calculated from Lade's double work-hardening model are in reasonable agreement with those measured.

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열유도 배수공법이 적용된 지반의 하중지지 특성 (Heat Exchange Drainage Method Induced Bearing Capacity Characteristic)

  • 신승민;신춘원;유충식
    • 한국지반신소재학회논문집
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    • 제16권2호
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    • pp.159-164
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    • 2017
  • 본 논문에서는 화강풍화토 조건에서 온도변화에 따른 지반의 하중지지 특성의 변화를 관찰하기 위해 실험을 진행하였다. 지반의 온도변화의 시간의 흐름에 의한 각 지층의 온도 및 체적함수율(V.W.C)를 지속하여 측정하여 온도변화가 보강토에 미치는 영향을 확인하였다. 또한 온도상승 후 지반에 수직으로 Loading-Unloading 작용을 통해 열에 의한 지반의 열-수리-역학적 관점에서의 하중지지력을 검토하였으며 비보강 지반과 실제 보강토 옹벽에서처럼 보강재와 배수층을 설치한 지반내 온도작용에 의한 배수작용과 보강재의 영향에 관하여 분석하였다. 그 결과 열교환 장치를 설치한 경우 수직하중의 강도가 더 크게 나타나 지반의 강도가 증가한 것으로 나타났다.

Time-dependent compressibility characteristics of Montmorillonite Clay using EVPS Model

  • Singh, Moirangthem Johnson;Feng, Wei-Qiang;Xu, Dong-Sheng;Borana, Lalit
    • Geomechanics and Engineering
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    • 제28권2호
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    • pp.171-180
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    • 2022
  • Time-dependent stress-strain behaviour significantly influences the compressibility characteristics of the clayey soil. In this paper, a series of oedometer tests were conducted in two loading patterns and investigated the time-dependent compressibility characteristics of Indian Montmorillonite Clay, also known as black cotton soil (BC) soil, during loading-unloading stages. The experimental data are analyzed using a new non-linear function of the Elasto-Visco-Plastic Model considering Swelling behaviour (EVPS model). From the experimental result, it is found that BC soil exhibits significant time-dependent behaviour during creep compared to the swelling stage. Pore water entrance restriction due to consolidated overburden pressure and decrease in cation hydrations are responsible factors. Apart from it, particle sliding is also evident during creep. The time-dependent parameters like strain limit, creep coefficient and Cαe/Cc are observed to be significant during the loading stage than the swelling stage. The relationship between creep coefficients and applied stresses is found to be nonlinear. The creep coefficient increases significantly up to 630 kPa-760 kPa (during reloading), and beyond it, the creep coefficient decreases continuously. Several parameters like loading duration, the magnitude of applied stress, loading history, and loading path have also influenced secondary compressibility characteristics. The time-dependent compressibility characteristics of BC soil are presented and discussed in detail.

불포화토의 거동예측을 위한 구성식 개발(II) -구성식의 개발 및 적용- (Development of Constitutive Model for the Prediction of Behaviour of Unsaturated Soil( II) - Development and application of constitutive model -)

  • 송창섭;장병욱
    • 한국농공학회지
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    • 제37권1호
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    • pp.81-89
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    • 1995
  • The aim of the work described in this paper is to develope a constitutive model for the prediction of an unsaturated Soil and to confirm the application of the model, which is composed of the elastic and plastic part in consideration of the matric suction and the net mean stress. From test results, volume changes and deviator stresses are analyzed at each state and their relationships are formulated. And the application of the model to silty sands is con- firmed by the comparison between test and predicted results. During drying-wetting and loading-unloading processes for isotropic states, the agreement between predicted and test results are satisfactory. And predicted deviator stresses are well agreed with test results in shearing process. Overall acceptable predictions are reproduced in high confining pressure. Usefulness of the model is confirmed for the unsat- urated soil except volumetric strain, which is not well agreed with the test results due to deficiency of dilatancy of the model in low confining pressure. It is, therefore, recom- mended to study the behavior of dilatancy for an unsaturated soil.

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삼축압축 하에서 지중연속벽 주변 방콕 연약 점토의 거동 (Behaviors of Soft Bangkok Clay behind Diaphragm Wall Under Unloading Compression Triaxial Test)

  • Le, Nghia Trong;Teparaksa, Wanchai;Mitachi, Toshiyuki;Kawaguchi, Takayuki
    • 한국지반공학회논문집
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    • 제23권9호
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    • pp.5-16
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    • 2007
  • 비배수 상태에서의 변수 $S_u,\;E_u$, n의 함수로 표현되는 단순한 선형 완전점탄성 모델은 굴착 중에 연성 토양에 시공되는 지중연속벽의 변위를 예측하는데 사용된다. 그러나 유한요소해석에서의 이러한 모델은 굴착이 잠시 중단되었거나 완료된 후 지중연속벽의 측방향 변위를 연속적으로 예측하는 데 한계가 있다. 굴착이 이루어지지 않는 동안의 지중연속벽 주변 토양의 변형 거동특성을 연구하기 위하여, 지중연속벽 주변 토양에 작용하는 응력상태를 가정한 '방콕 연약 점토'에 대한 일련의 삼축압축시험이 모사되었다. 본 연구에서는 세 가지 다른 조건에서의 삼축압축시험이 실시되었는바, 압밀 비배수 조건에서의 재하($CK_0UC$), 압밀 배수 및 비배수 조건에서의 재하 및 제하($CK_0DUC$$CK_0UUC$)의 조건에서 시험이 실시되었다. 시험으로부터 일련의 $CK_0DUC$ 시험에서 얻은 전단강도는 $CK_0UC$ 시험에서의 잔류강도와 같음을 알 수 있었다. $CK_0DUC$ 시험에서 시험편에 가해지는 수평압력을 점진적으로 감소시키면서 측정한 탄성계수는 편차응력의 증가와 더불어 감소함을 알 수 있었다. 또한 $CK_0UC$$CK_0DUC$시험에서 한계상태 관계의 기울기가 동일하게 나타났다. 더욱이, $CK_0DUC$시험에서 수평압력을 점진적으로 감소시킬 경우의, 축방향 및 반경방향 변형율 증가율을 시간, 한계상태 관계의 기울기, 편차응력과 평균 유호응력의 비의 함수로 표현할 수 있었다. 이 연구는 삼축압축시험의 제하 과정에서 얻은 시험 결과가 굴착 중 지중연속벽의 변형을 예측하는데 사용될 수 있음을 보였다.AFM)과 Scanning Electron Microscopy(SEM)을 통해 관찰한 GST 다층박막시료의 고온 열처리 전후 표면미시거칠기 변화도 PRAM 기록기를 사용할 때에는 in-situ 타원계를 사용할 때보다 1/10 정도의 크기를 보여주어 PRAM 기록기와 분광타원계를 사용하여 결정한 GST의 고온광학물성의 신뢰성을 확인하여 주었다.>, 여자 $179.1{\pm}37.2%$이었다. 평균필요량에 비해 가장 낮은 양을 섭취한 영양소는 엽산으로서 남자 $60.1{\pm}10.8%$, 여자 $54.6{\pm}9.9%$로 조사되었다. 칼슘의 섭취량은 평균필요량에 비해 전체 $74.9{\pm}31.9%$로 나타났다. 에너지 섭취량에 있어서 남자 노인들은 모두가 필요추정량의 75% 미만을 섭취하고 있었고 여자 노인의 경우에도 97%가 필요추정량의 75% 미만을 섭취하여 에너지 섭취량이 매우 낮았다 반면에 단백질 섭취량에 있어서는 남자 노인의 경우 100%가 평균필요량의 125%를 초과하였고, 여자 노인의 경우에는 91%가 평균필요량의 125%를 초과하여 대조적이었다. 비타민 A와 E는 각각 평균필요량과 충분섭취량의 125%를 초과하는 비율이 높게 나타난 반면에 비타민 $B_2$는 특히 남자 노인에서 평균필요량의 75%미만을 섭취한 비율이 높게 나타났다. 엽산 섭취량에 있어서는 평균필요량의 75% 미만을 섭취한 비율이 전체 96%로 나타나 심각한 부족상태로 조사되었다 반면에 철의 섭취량은 남녀 모두 100%가 평균필요량의 125%를 초과하여 섭취한 것으로 나타났다. 아연의 섭취량은 남자 17%,여자 15%가 평균필요량의 75% 미만을 섭취한 것으로 조사되었다. 에너지와 엽산은 모든 노인들에서 평균필요량에 미달되게 섭취한

불포화 사질토의 거동예측을 위한 구성식 개발 (Development of Constitutive Model for the Prediction of Behaviour of Unsaturated Granular Soil)

  • 송창섭;장병욱
    • 한국지반공학회지:지반
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    • 제11권3호
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    • pp.43-54
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    • 1995
  • 실트질 모래를 재료로 삼축압축시험기를 개조하고, 삼축셀에 고압공기투과판을 부착하여 축변환기법에 의해 흡인력과 순평균응력을 조절하면서 등력압축시험과 전단시험을 행하여, 불포화 상태에 따른 토질정수의 변화를 규명하였으며, 함수상태의 변화에 따라 응력, 체적변화 등의 거동특성을 검토하였다. 실험의 결과에서 규명된 불포화토의 특성을 바탕으로, 불포화토의 응력성분을 고려하고, 수정 Cam -Clay 모델을 경계조건으로 하는 불포화토의 거동예측을 위한 구성식을 개발하고, 실트질 모래에 대한 실내실험의 자료로부터 구한 관측치와 예측치를 비교하여 이의 타당성을 검증하였다.

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