• Title/Summary/Keyword: cohesion soil

검색결과 248건 처리시간 0.025초

동결 -융해에 따른 풍화토의 강도특성 변화 (Strength characteristic transformation of weathered soil caused by freezing-thawing)

  • 김수삼;박영목;정승용;김용수
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2001년도 추계학술대회 논문집
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    • pp.520-525
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    • 2001
  • It's strongly recommended to check upon the slope stability of soil nearby railroad, since the freezing-thawing repeat in long term may cause decrease of slope stability. The study is, therefore, focused on the strength characteristic transformation of soil, measuring it experimentally, throughout physical and mechanical tests operated by the freezing-thawing repeat tests. The sampling of weathered soil used for the embankment materials along the domestic railway lines are classified by parent-rock, and then collected after it in the first hand. It tells that Uniaxial strength and axial strain were decreased simultaneously as the frequency of freezing-thawing repeat increased and its range was reduced into 25~85 percentage off comparing to uniaxial strength of unfreezing-soils when about 100 times of freezing-thawing repeats occurred. Following the result of direct shear tests, the cohesion of freezing-soil with freezing-thawing repeats shows 11∼60 percentage less than that of unfreezing-soil but the change of internal friction angle of the soil is extremely slight, enough to ignore. As a result. it could be found that strength characteristic transformation has highly correlated with freezing-thawing repeat.

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전답용 유기질 세립토의 슬레이킹 내구성 및 분쇄 특성 (Slaking and Particle-Separation Characteristics of the Organic Fine Soil in Paddy Fields)

  • 조성민
    • 한국환경복원기술학회지
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    • 제5권3호
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    • pp.1-8
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    • 2002
  • Clayey paddy soils should be mixed with other good coarse soils to be used as a material for the lining, or, embankment. However, it has been difficult to separate soil particles from each other because of the internal cohesion in the soil gradation(separation) characteristics of the fine soil were investigated by various laboratory tests including the slaking durability test. Degradation rate of the soil were dependent upon the clay content and the initial water content before the submergence. The amount of degradations decreased as initial water content increased with exponential functions. The dried specimens separated into the particles after 24 hours of the submergence and specimens which water contents were less than 10% also separated into the particles after 2, or 3 days of the submergence. Compaction curves and the unconfined strength were not varied before and after the submergence. However, unconfined strength decreased as water content increased.

사면하부지반의 강도정수에 따른 억지말뚝 적용성 연구 (A Study on Applicability of Stabilizing Pile to Foundation Soil of Slope with Various Strength Parameters)

  • 이승현;장인성
    • 한국산학기술학회논문지
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    • 제17권10호
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    • pp.331-337
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    • 2016
  • 높이가 5m와 10m인 사면부와 사면하부지반으로 이루어진 지반조건에 대하여 여러 가지 강도정수를 갖는 사면하부지반을 가정하고 안정해석을 수행한 결과 사면하부 끝단에 억지말뚝을 설치할 수 있는 사면하부지반의 강도정수의 범위를 얻을 수 있었고 표로써 제시하였다. 사면높이가 5m인 경우 사면하부지반의 점착력이 10kPa일 때 내부마찰각은 $15^{\circ}$인 경우까지 억지말뚝의 설치가 가능하며 점착력이 20kPa와 25kPa인 경우 내부마찰각이 $0^{\circ}$일 때만 억지말뚝의 설치가 가능하였다. 사면높이가 10m인 경우 사면하부지반의 점착력이 10kPa일 때 내부마찰각은 $20^{\circ}$인 경우까지 억지말뚝의 설치가 가능하며 점착력이 40kPa, 45kPa 그리고 50kPa인 경우에는 내부마찰각이 $0^{\circ}$인 경우만 억지말뚝의 설치가 가능함을 알 수 있었다. 가정한 사면에 적용한 억지말뚝에 대한 해석결과에 따르면 억지말뚝의 길이와 최대 휨모멘트의 크기는 내부마찰각의 존재여부에 큰 영향을 받음을 알 수 있었다. 사면하부지반의 내부마찰각이 $0^{\circ}$인 경우 필요한 억지말뚝의 길이 $D_s$와 d는 각각 내부마찰각이 $5^{\circ}$인 경우에 비해 4.6배와 8.0배 컸다. 사면하부지반의 내부마찰각이 $0^{\circ}$인 경우 억지말뚝에 발생하는 최대 휨모멘트는 내부마찰각이 $5^{\circ}$인 경우에 비해 24.6배 컸다. 억지말뚝을 적용한 사면하부지반의 내부마찰각이 $0^{\circ}$인 경우 억지말뚝의 길이 및 억지말뚝에 발생하는 최대 휨모멘트의 크기가 상당히 커서 억지말뚝의 적용을 어렵게 함을 알 수 있었다. 본 연구결과를 통해 볼 때 비배수상태에 있는 포화점토지반상에 성토를 하는 경우에는 압밀이 발생하는 시간적 여유를 갖도록 완속 성토함으로써 억지말뚝의 길이와 발생 최대 휨모멘트를 대폭적으로 감소시킬 수 있을 것으로 기대된다.

흙댐의 다짐밀도가 안정도에 미치는 영향에 관한 연구 (A Study on the Effect of the Compaction Density on the Stability of Earth Dam)

  • 윤충섭;김시원
    • 한국농공학회지
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    • 제31권1호
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    • pp.82-95
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    • 1989
  • This study was carried out for the stability analysis of earth dam by the variation of compaction density. The test samples were taken from five kinds of soil used for banking material and the degree of compaction for this samples were chosen 100, 95, 90, 85, and 80 percent. The stability problems were analysed by the settlement and camber( extra banking) of dam, strength parameter and dam slope, and coefficient of permeability and seapage flow through dam body. The results of the stability analysis of earth dam are as follows. 1. The more the fine particle increases and lower the compaction degree becomes, the lower the preconsolidation load becomes but the compression index becomes higher. 2. Sixty to eighty percent of settlement of dam occurs during the construction period and the settlement ratio after completion of dam is inversly proportional to the degree of compaction. 3. The camber of dam has heigher value in condition that it has more fine particle(N) and heigher dam height(H) with the relation of H= e(aN-bH-e). 4. The cohesion(C) decreases in proportion to compaction degree(D) and fine particle(N) with the relation of C= aD+ bN-c, but the internal friction angle is almost constant regardless of change of degree of compaction. 5. In fine soil, strength parameter from triaxial compression test is smaller than that from direct shear test but, they are almost same in coarse soil regardless of the test method. 6. The safety factor of the dam slope generally decreases in proportion to cohesion and degree of compaction but, in case of coarse soil, it is less related to the degree of compaction and is mainly afected by internal friction angle. 7. Soil permeability(K) decreases by the increases of the degree of compaction and fine particle with relation of K=e(a-bl)-cN) 8. The more compaction thickness is, the less vertical permeability (Kv) is but the more h6rzontal permeability (KH) is, and ratio of Kv versus KH is largest in range from 85 to 90 percent of degree of corn paction. 9. With the compaction more than 85 percent and coefficient of permeability less than ${\alpha}$X 10-$^3$cm/sec, the earth dam is generally safe from the piping action.

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대형직접전단시험을 통한 말뚝과 지반 경계면의 전단특성 분석 (Analysis of Shear Resistance Characteristics in Pile-Soil Interface using Large-Scale Direct Shear Test)

  • 유승경;홍기권
    • 한국지반신소재학회논문집
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    • 제21권3호
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    • pp.61-69
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    • 2022
  • 본 연구에서는 지반조건을 고려한 말둑의 인발저항 성능의 합리적인 평가방법 확립의 일환으로써, 지반의 세립분 함유율 및 구속압 조건에 따른 말뚝과 지반 경계면의 전단특성을 평가하기 위한 대형직접전단시험을 수행하였다. 그 결과, 수직하중이 증가하고 모형지반의 세립분 함유율이 작을수록 전단변형에 따른 전단응력이 크게 발생됨을 알 수 있었다. 그리고 동일한 수직하중과 세립분 함유율 조건에서 말뚝 모형체의 표면이 거칠수록 최대전단응력은 다소 크게 나타났다. 강도정수로써 내부 마찰각과 점착력을 산정하여 분석한 결과, 모형지반의 세립분 함유율이 증가할수록 모형체 경계면에서의 내부마찰각은 감소하였으나 점착력은 증가하는 것을 알 수 있었다. 또한, 말뚝 모형체 표면이 거칠수록 모형지반의 세립분 함유율에 관계 없이 내부마찰각과 점착력은 크게 나타났다.

Shear behavior of geotextile-encased gravel columns in silty sand-Experimental and SVM modeling

  • Dinarvand, Reza;Ardakani, Alireza
    • Geomechanics and Engineering
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    • 제28권5호
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    • pp.505-520
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    • 2022
  • In recent years, geotextile-encased gravel columns (usually called stone columns) have become a popular method to increasing soil shear strength, decreasing the settlement, acceleration of the rate of consolidation, reducing the liquefaction potential and increasing the bearing capacity of foundations. The behavior of improved loose base-soil with gravel columns under shear loading and the shear stress-horizontal displacement curves got from large scale direct shear test are of great importance in understanding the performance of this method. In the present study, by performing 36 large-scale direct shear tests on sandy base-soil with different fine-content of zero to 30% in both not improved and improved with gravel columns, the effect of the presence of gravel columns in the loose soils were investigated. The results were used to predict the shear stress-horizontal displacement curve of these samples using support vector machines (SVM). Variables such as the non-plastic fine content of base-soil (FC), the area replacement ratio of the gravel column (Arr), the geotextile encasement and the normal stress on the sample were effective factors in the shear stress-horizontal displacement curve of the samples. The training and testing data of the model showed higher power of SVM compared to multilayer perceptron (MLP) neural network in predicting shear stress-horizontal displacement curve. After ensuring the accuracy of the model evaluation, by introducing different samples to the model, the effect of different variables on the maximum shear stress of the samples was investigated. The results showed that by adding a gravel column and increasing the Arr, the friction angle (ϕ) and cohesion (c) of the samples increase. This increase is less in base-soil with more FC, and in a proportion of the same Arr, with increasing FC, internal friction angle and cohesion decreases.

지진계수를 고려한 제방의 사면안정에 관한 연구 (A Study on the Slope Stability of Embankment in Consideration of Seismic Coefficient)

  • 강우묵;지인택;이달원
    • 한국농공학회지
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    • 제33권4호
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    • pp.105-120
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    • 1991
  • This study was performed to investigate the minimum safety factor of embankment in consideration of seismic coefficient by the psuedo-static analysis The variables were cohesion, the internal friction angle, angle of slope, height of seepage, height of embankment, depth of replacement The results obtained were compared with those by Fellenius method, simplified Bishop method and Janbu method. The results were summarized as follows: 1.The increasing rate of the minimum safety factor with the increasing of cohesion appeared larger in Fellenius method and Bishop method than in Janbu method. And that with the increasing of the internal friction angle appeared the lowest value in Janbu method. The minimum safety factor was influenced larger on the internal friction angle than on cohesion. 2.The variation of the minimum safety factor with the height of seepage at 0m and 5 m was nearly similar to Fellenius method, Bishop method and Janbu method. On the other hand, it was decreased suddenly at 25 m. 3.The minimum safety factor with the height of embankment was decreased remarkably under 10 m with the increasing of seismic coefficient. But, it was decreased slowly more than 10 m. As the height of embankment was low, the influence of cohesion appeared larger. 4.In heigher case of the depth of replacement, the phenomenon of reduction of the minimum safety factor appeared remarkably with seismic coefficient increased. And in lower case of the depth of replacement, the minimum safety factor was similar in Fellenius method and Bishop mehtod. But it appeared larger in Bishop method and Janbu method than in Fellenius method with the depth of replacement increased. 5.As the cohesion and the internal friction angle were large, the phenomenon of reduction of the minimum safety factor with the increasing of seismic coefficient appeared remarkably. Also, the influence of seismic coefficient in minimum safety factor appeared larger with the soil parameter increased. 6.When the seismic coefficient was considerated, investigation of the structural body on the slope stability appeared profitably in Fellenius method and Janbu method than in Bishop method.

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토양의 침식과 보존에 관한 이론적 분석 4. 삼림토양의 침식과 유실기구 (The Theoretical Analyses of the Soil Erosion and Conservation 4. Erosion and Leaching Mechanism of the Forest Soils)

  • 장남기
    • 아시안잔디학회지
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    • 제10권1호
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    • pp.49-59
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    • 1996
  • This report is researched on the cause and mechanism of soil erosion in comparison among Kwangnung, Mt. Kaya, Mt. Chili, and Mt. Soorak by physical and chemical analyses of their for- est soils. Clay, silt, and fine sand of Mt. Soorak are far less than those of Mt. Chili, Mt. Kaya, and Kwangnung area while coarse sand is very high level. The clay ratio of soil at Mt. Soorak is the most high level in comparison with that of other area. Denudation at Mt. Soorak, therefore, is cause of erosion by the result of transportation of soil particles. The eroding velocity increase for larger particle size and stronger cohesion between soil particles. Very fine sand, silt, and clay can be present in suspension near the bottom and the size of the particles in suspension depends upon the velocity of the current near the bottom and the roughness of the bottom. Key words: Theoretical analyses, Soil erosion and conservation, Forest soils.

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직접전단실험을 이용한 세립토의 전단강도 및 유변학적 정수 산정 (Estimation of Shear Strength and Rheological Parameters of Fine-Grained Soil Using Direct Shear Test)

  • 박근우;홍원택;이종섭
    • 한국지반환경공학회 논문집
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    • 제18권2호
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    • pp.29-37
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    • 2017
  • 집중호우로 인하여 산악지반에 발생하는 토석류의 거동은 대상지반 세립분의 전단강도 및 유변학적 특성들에 의하여 영향을 받기 때문에, 두 특성에 대한 정수는 토석류 거동을 파악하는데 매우 중요한 요소이다. 본 연구에서는 직접전단 실험을 통하여 세립분의 전단강도 및 유변학적 정수를 평가하고자 하였다. 건조상태와 액성한계상태로 조성된 두 가지 세립분 시료에 대하여 직접 전단실험을 수행하였으며, 연직응력에 따른 전단강도를 측정하여 점착력과 내부마찰각을 산정하였다. 또한 액성한계로 조성된 시료의 잔류전단강도를 획득하기 위하여 전단변형률속도와 전단방향을 변화시켜 반복전단실험을 수행하였다. 실험 결과, 액성한계상태의 시료는 건조 상태 시료에 비해 내부마찰각은 작지만 점착력은 더 큰 것으로 나타났으며, 잔류전단강도를 통해 산정한 내부마찰각과 점착력은 첨두전단강도에 의해 산정된 결과보다 작은 것으로 나타났다. 반복전단 결과, 전단변형률속도와 잔류전단강도는 선형적인 관계를 보였으며, 전단변형률속도-잔류전단강도 관계의 기울기로써 결정되는 점성은 약 $73.60Pa{\cdot}s$로 산정되었다. 본 연구는 직접전단 장비가 산악지반 토석류 거동과 관련된 세립분의 전단강도 및 유변학적 정수 산정에 효과적으로 활용될 수 있음을 보여준다.

포화도 및 점착력 변화에 따른 지진시 산사태 위험도 분석 (Analysis of Landslide Hazard Map during Earthquake with Various Degrees of Saturation and Cohesion Values)

  • 이준용;한진태
    • 대한토목학회논문집
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    • 제35권3호
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    • pp.599-606
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    • 2015
  • 지진이 발생할 경우 산사태로 인한 피해는 지진으로 인한 전체 피해 중 상당 부분을 차지하고 있으며, 지진시 산사태는 인명 및 구조물에 직접적인 피해를 유발할 뿐만 아니라, 도로, 산업 기간망 등의 기능을 상실하게 하여 사회 시스템을 마비시킨다. 따라서, 지진에 대한 사면의 재해 위험을 평가하여 대비책을 수립하는 것은 매우 중요한 일이며, 이를 위해서는 국내 여건에 알맞은 재해위험 평가 방법을 정립하는 것이 무엇보다도 중요하다고 할 수 있다. 하지만, 현재 국내에서 진행하고 있는 사면의 재해위험 평가는 많은 지반 정보를 추정하거나 가정하여 사용하고 있어 불확실성을 내포하고 있다. 따라서, 본 연구에서는 GIS 기법을 이용하여 등가정적안전율 및 변위에 대한 지진시 산사태 위험도 작성시 결과에 가장 큰 영향을 주는 포화도와 점착력 등 지반 정보의 변화에 따라 산사태 위험도에 미치는 영향을 검토하였다. 본 연구에 따르면, 포화도가 증가하고 점착력이 감소할수록 등가정적안전율 및 변위에 관한 위험지역이 증가하는 것을 확인하였으며, 정확한 산사태 위험도 작성을 위해서는 연구대상지역 전체를 대표할 수 있는 정확한 지반 조사 자료의 확보가 선행적으로 수행되어져야 될 것으로 판단된다.