• 제목/요약/키워드: Liquefaction strength

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직접단순전단시험을 이용한 동적이력 후 세립토의 강도 및 강성 예측법 (An Estimating Method for Post-cyclic Strength and Stiffness of Eine-grained Soils in Direct Simple Shear Tests)

  • Song, Byung-Woong;Yasuhara, KaBuya;Murakami, Satoshi
    • 한국지반공학회논문집
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    • 제20권2호
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    • pp.15-26
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    • 2004
  • 반복삼축시험에 의한 반복하중 후 강도 및 강성의 예측법을 이용하여, 세립토에 대해서 직접단순 전단시험에서도 그 방법의 사용 가능성을 확인하여 보았다. 사용한 흙은 실트질 점토, 소성 실트와 비소성 실트이다. 반복삼축시험을 통해서 얻은 강도 및 강성 예측법을 직접단순 전단시험에 맞게 수정하여 시험 결과와 비교하였다. 특히, 세립토의 소성지수와 초기전단응력(ISSS)의 영향이 강조되었다. 연구결과는 (i) 세립토의 액상화강도비는 소성지수의 감소와 초기전단응력의 증가에 따라 감소한다. (ii)등가강성과 전단변형률의 관계에 미치는 소성지수와 초기전단응력의 영향은 그리 크지 않다. (iii) 정규화한 과잉간극수압의 증가에 따른 강도비의 저하는 세립토의 소성지수가 증가할수록 느리다. (iv) 활성도가 큰 소성실트의 강성은 과잉간극 수압의 증가에 따라 급속히 감소한다. (v) 반복삼축시험 결과를 이용한 반복하중후 강도 및 강성의 예측법을 이용하여 직접단순 전단시험 결과에 수정한 방법은 시험결과와 잘 어울리는 것으로 나타났다.

토석류 유동성 평가를 위한 링 전단시험장치 개발 및 활용 (Ring-shear Apparatus for Estimating the Mobility of Debris Flow and Its Application)

  • 정승원;;송영석
    • 대한토목학회논문집
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    • 제33권1호
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    • pp.181-194
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    • 2013
  • 산사태는 토사, 거석, 유목 등 산사태 물질의 중력사면 이동현상이다. 산사태는 수리학적, 지형학적, 지반공학적 요인에 따라 다양한 흐름 및 퇴적특성을 보인다. 흐름특성은 아주 느리게 움직이는 산사태(활동, 이류 등)에서 아주 빠르게 움직이는 산사태(토석사태, 토석류 등)까지 다양하다. 이런 점에서 산사태 발생과 확산 메커니즘의 이해를 위해 전단변형률에 따른 전단강도특성에 대한 연구가 필요하다. 본 연구는 한국형 산사태에 적합한 링 전단시험장치의 개발과 활용성에 대한 것이다. 링 전단시험장치는 산사태 유형별 피해 및 영향성 평가에 사용되는 전단강도를 측정할 수 있으며, 전단속도에 따른 산사태의 유동성을 평가하기 위한 장치이다. 비배수 전단강도 측정용 링 전단시험장치는 기존에 개발된 링 전단시험기의 수정보완형으로 '포화-압밀-배수-전단' 순으로 시험조건을 자유롭게 조절할 수 있다. 링 전단상자내 흙 시료의 전단강도의 정확한 측정을 위해 미끄럼 방지, 밀폐성 및 회전성 향상 기능을 갖춘 시험장치이다. 링 전단시험장치는 모래와 자갈 시료에 대한 예비실험을 수행하였으며 기존 시험결과와 비교하여 신뢰할 만한 결과를 확인하였다. 회전속도 100 mm/sec 로 구속할 때 배수조건에 따른 일시적 액상화 현상으로 인한 강도저하 현상이 관측되며, 전단면에 따른 입자파쇄 현상이 뚜렷하게 나타났다. 마지막으로 토석류 유변학에 기초하여 링 전단시험장치를 이용한 산사태 유동성 평가기법을 제안하였다.

C.G.S에 의한 기초지반보강효과에 관한 연구 (A Study on the Ground Improvement by Compaction Grouting System)

  • 천병식;여유현;최현석;오일석
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1999년도 연약지반처리위원회 학술세미나
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    • pp.1-13
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    • 1999
  • The use of Compaction Grouting evolved in the 1950's to correct structural settlement of buildings. Over the almost 50 years, the technology has developed and is currently used in wide range of applications. Compaction Grouting, the injection of a very stiff, 'zero-slump' mortar grout under relatively high pressure, displaces and compacts soils. It can effectively repair natural or man-made soil strength deficiencies in variety of soil formations. Major uses of Compaction Grouting include densifying loose soils or fill voids caused by sinkholes, poorly compacted fills, broken utilities, improper dewatering, or soft ground tunneling excavation. Other application include preventing liquefaction, re-leveling settled structures, and using compaction grout bulbs as structural elements of minipiles or underpinning. The technique replaced slurry injection, or 'pressure grouting', as the preferred method of densification grouting. There are several reasons for the increased use of Compaction Grouting which can be summarized in one word: CONTROL. The low slump grout and injection processes are usually designed to keep the grout in a homogeneous mass at the point of injection, while acceptable in some limited applications, tends to quickly get out of control. Hydraulic soil fracturing can cause extensive grout travel, often well beyond the desired treatment zone. So, on the basis of the two case history constructed in recent year, a study has been peformed to analyze the basic mechanism of the Compaction Grouting and verify the effectiveness of the ground improvement using some test methods.

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과잉간극수압 발생을 고려한 중력식 안벽구조물의 동적해석 (Dynamic Analysis of Gravity Quay Wall Considering Development of Excess Pore Pressure in Backfill Soil)

  • 유무성;황재익;김성렬
    • 한국해양공학회지
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    • 제24권5호
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    • pp.39-47
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    • 2010
  • In this paper, a total stress analysis method for gravity quay walls is suggested. The method can evaluate the displacement of the quay walls considering the effect of excess pore pressure developed in backfill soils. This method changes the stiffness of backfill soils according to the expected magnitude of the excess pore pressure. For practical application, evaluation methods are suggested for determining the excess pore pressure ratio developed in the backfill soils and the backfill stiffness that corresponds to the excess pore pressure ratio. This method is important in practical applications because the displacement of the quay walls can be evaluated by using only the basic input properties in the total stress analysis. The applicability of the suggested method was verified by comparing the results of the analysis with the results of 1-g shaking table tests. From the comparison, it was found that the calculated displacements from the suggested method showed good agreement with the measured displacements of the quay walls. It was also found that the excess pore pressure in backfill soils is a governing influence on the dynamic behavior of quay walls.

파랑하중에 의한 해저지반의 응력변화에 대한 연구 (A Study of Variation of Wave-induced Stresses in a Seabed)

  • 장병욱;박영권;우철웅
    • 한국농공학회지
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    • 제38권1호
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    • pp.79-89
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    • 1996
  • It is expected that the soil hehaviours in the seahed subjected to cyclic wave loads are much different from that on the ground Cyclic shear stresses developed below the ocean bed as a result of a passing wave train may progressively build up pore pressure in certain soils. Such build-up pore pressure may be developed dynamic behaviour such as liquefaction and significant deformation of the seabed. Currently available analytical and testing methods for the seabed subjected to cyclic wave loads are not general. The purpose of the study are to provide a test method in laboratory and to analyse the mechanism of wave-induced stresses and liquefactions potentials of the unsaturated silty marine sand. It is showed that the test set-up made especially for this study delivers exactly oscillatory wave pressures of the form of sine function. Laboratory test results defining the cyclic shear strength of the unsaturated porous medium that is homogenously sedimented. It is understood that the pore water pressure due to induced-waves is not accumulated as the wave number increases but reveals periodical change on the still water surface. The magnitude of the pore water pressure tends to be attenuated radically with a certain time lag under the action of both high and low waves as depth increases.

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표준삼축시험으로부터 사질토에서의 한계상태정수 결정에 관한 연구 (II) : 실험 및 추천 (Determination of Critical State Parameters in Sandy Soils from Standard Triaxial Testing (II) : Experiment and Recommendation)

  • 조계춘
    • 한국지반공학회논문집
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    • 제19권1호
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    • pp.77-92
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    • 2003
  • 사질토에서의 한계상태정수 결정시 근본적인 물리적 과정들과 고유적 인 한계성들을 파악하기 위하여 일련의 표준삼축시험을 실시하였다. 시험결과에 의하면, 주어진 흙에 대하여 한계상태마찰각은 배수조건에 상관없이 일정한 반면에, e-log p'공간상에서의 한계상태선은 주로 표준삼축시험에서 충분치 못하게 도달하는 변형률과 비배수시험에서의 변형률 국지화효과 때문에 배수조건에 따라 다른 결과를 보였다. 실내시험을 통하여 한계상태정수를 산정하는 최선의 방법은 균일하고 느슨하게 성형된 시료를 배수조건하에서 전단하는 것으로 나타났다. 더불어 배수시험에서 다일러턴 시효과나 변형률 국지화효과를 피할 수 있는 시험을 계획하기 위한 참고상태정수를 제시하였다.

CGS에 의한 기초지반보강에 관한 연구 (A Study on the Ground Improvement by Compaction Grouting System)

  • 천병식;권형석
    • 한국철도학회논문집
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    • 제2권4호
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    • pp.9-19
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    • 1999
  • The use of compaction grouting evolved in 1950's to correct structural settlement of buildings. Over the almost 50 years, the technology has been developed and is currently used in wide range of applications. Compaction grouting, the injection of a very stiff, 'zero-slump' mortar grout under relatively high pressure, displaces and compacts soils. It can effectively repair natural or man-made soil strength deficiencies in variety of soil formations. Major applications of compaction grouting include densifying loose soils or fill voids caused by sinkholes, poorly compacted fills, broken utilities, improper dewatering, or soft ground tunneling excavation. Other applications include preventing liquefaction, re-leveling settled structures, and using compaction grout bulbs as structural elements of minipiles or underpinning. In this paper, on the basis of the case history constructed in this year, a study has been performed to analyze the basic mechanism of the compaction grouting. Also, the effectiveness of the ground improvement and the bearing capacity of the compaction pile has been verified by the Cone Penetration Test(CPT) and Load Test. Relatively uniform compaction grouting column could be maintained by planning the quality control in the course of grouting. And, the Qualify Control Plan has been conceived using grout pressure, volume of grout and drilling depth.

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대구경 콘크리트 충전형 합성기둥의 전단 설계식 분석 (Investigation of Shear Design Expressions of Large-Diameter Concrete-Filled Steel Tubes(CFT))

  • 정은비;염희진;유정한
    • 한국강구조학회 논문집
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    • 제27권4호
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    • pp.399-410
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    • 2015
  • 콘크리트 충전형 합성기둥(Concrete filled steel tube, CFT)은 철근콘크리트, 강구조보다 뛰어난 변형 능력과 강도 갖고 있다. CFT 현장타설말뚝은 지진하중, 토양액상화 등에 의해 큰 국부전단력을 경험하게 되며 이를 방지하기 위해 큰 직경으로 설계되어 진다. 그러나 현행 기준의 전단 설계식은 CFT의 구속효과를 고려하지 못하고 있으며, 상당히 보수적인 설계식을 제시하고 있다. 전단 설계식의 개선을 위한 선행 전단 실험연구가 거의 없으며 그조차 소구경의 실험연구로만 존재한다. 이 연구는 대구경 콘크리트 충전형 합성기둥의 개선된 전단 설계식을 제안하기 위한 기초연구로써, 원형 CFT 기둥 전단의 선행 실험연구와 현행 설계기준 비교분석을 실행하였다.

고유동콘크리트의 특성에 관한 실험적 연구 (A Study of the Characteristics of the High-Flowable Concrete)

  • 전현규;김대회;이종찬;지석원;유택동;서치호
    • 한국건축시공학회지
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    • 제3권2호
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    • pp.129-134
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    • 2003
  • In this research, we used fly-ash and blast-furnace slag as substitute material of cement and fine aggregate, and we, through experiments, researched and analyzed the features of high-flowable concrete added high efficiency AE water reduction agent. The results are below. 1. Liquefaction generally presented high-slump flow value; on the other hand, partial segregation was observed in case of mixing proportion with 65 cm slump flow and above. This segregation was partially improved in accordance with mixing admixture. 2. Compressive strength according to mixing admixture and increasing mixing ratio of fly-ash were subject to be declined when it was initially cast-in, but its gap was improved when time was fully passed. 3. After mixing blast-furnace slag and fly-ash as substitute material, the result showed that the modulus of elasticity against freezing & melting was improved according to mixing blast-furnace slag and also increased in accordance with increasing pulverulent-body volume. 4. According to increasing the mixing volume of fly-ash, the durability factor was deteriorated because compressive strength became lower as well as air content was decreased when it was initially case-in. 5. The minimum air content to secure durability was 3.7%, for that reason, we had better secure admixture such as air entraining agent when cast-in high-flowable concrete.

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.