• 제목/요약/키워드: Embankment material

검색결과 134건 처리시간 0.027초

해안구조물 축조를 위한 해양연약지반의 강제치환 특성에 관한 원심모형실험 (Centrifuge Model Tests on Characteristics in Forced Replacement Method for Soft Ocean Ground to Build Coastal Structures)

  • 박병수
    • 한국해양공학회지
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    • 제20권5호
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    • pp.42-48
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    • 2006
  • This paper shows theresults of centrifuge model experiments to investigate the behavior of a replacement method in dredged and reclaimed ground. For this experimental work, centrifuge model tests were carried out to investigate the behavior of a replacement method in soft clay ground. Basic soil property tests were performed to find the mechanical properties of clay soil sampled from the southern coast of Korea, which was used for the ground material in the centrifuge model tests. The reconstituted clay ground of the model was prepared by applying reconsolidntion pressure in a 1 g condition with a specially built model container. Centrifuge model tests were carried out under the artificially accelerated gravitational level of 50 g. Replacement material of lead with a certain degree of angularity was used and placed until the settlement of the replacement material embankment reached a state of equilibrium. Vertical displacement of the replacement material was monitored during tests. The depth and shape of the replacement, especially the slope of the penetrated material and the water content of the clay ground were measured after finishing tests. Model tests for investigating the stability of an embankment after backfilling were also performed to simulate the behavior of a dike treated with replacement and backfilled with sandy material. As a result of the centrifuge model test, the behavior of the replacement, the mechanism of the replacement material being penetrated into clay ground, and the depth of the replacement were evaluated.

원심모형실험을 활용한 투수성이 낮은 기초지반에 위치한 보축 제방에서의 침투 거동 (The Evaluation of Seepage Characteristics in Reinforced Embankment Constructed on Low Permeable Clay Layer Through Centrifuge Model Tests)

  • 진석우;추연욱;김영묵;김동수;임은상
    • 한국지반공학회논문집
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    • 제28권5호
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    • pp.27-39
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    • 2012
  • 본 논문에서는 보편적인 제방 보강공법 중 하나인 보축 공법이 적용된 실제 제방을 대상으로 하여, 원심모형시험을 수행하고 조건에 따른 제방의 침투 거동을 분석하였다. 동일한 단면 조건에서 투수성이 낮은 양질의 재료가 제내지를 보축한 경우와 제외지를 보축한 경우에 대한 원심모형시험을 수행하고 각 경우를 비교하여, 보축 방향에 따른 영향을 분석하였다. 또한, 대상 현장의 제방은 투수성이 낮은 세립토층에 축조되어 있었으며, 이에 대한 영향을 분석하였다. 제외지 보축의 경우, 시간이 흐름에 따라 제내지 보축의 경우에 비해 포화영역의 확산이 적고 느리게 나타났다. 제내지 보축된 경우, 상대적으로 빠르게 포화영역이 확대되었으나, 제내지 보축의 낮은 투수성으로 침투수가 많이 유출되지는 않았다. 낮은 투수성의 하부 기초지반은 포화영역이 확대되었으며, 또한 기초지반 아래에서 배수층에 작용하는 압력으로 인한 과잉간극수압에 의해 보다 빠르게 포화가 진행되었다.

지오그리드와 말뚝에 의한 연약지반 보강효과 (Effectiveness of Reinforcement by Geogrid & Pile in Soft Clay)

  • 신은철;이상혁;이명원
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 토목섬유 특별세미나
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    • pp.61-69
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    • 2000
  • It is not easy to find a good soil condition due to the shortage of suitable land for construction work. The earth structure and buildings can be constructed over the soft soil. The soft soil must be treated either using the reinforcement element or dewatering. Most of land reclamation projects are being implemented along the south coast or west coast of the Korean Peninsula. The soils in these areas are covered with the soft marine clay, so soil and site improvement is the most important things to do. Pile foundation at the bottom of embankment can be constructed either in the soft ground or in the soil contaminated area. The purpose of this research is to develop "geogrid-reinforced piled embankment method" to prevent the differential settlement and increase the bearing capacity of soil. In this study, the effectiveness of the geogrid-reinforcement was studied by varying the space between piles and reinforcement conditions. Also, the geotechnical engineering properties of the embankment material and foundation soil were determined through the laboratory tests as well as the field tests. As a result, the site that the pile-spacing S = 3b with geogrid reinforcement is the most effective to reduce the differential settlement and increase load bearing capacity.

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Application of waste rubber to reduce the settlement of road embankment

  • Tafreshi, S.N. Moghaddas;Norouzi, A.H.
    • Geomechanics and Engineering
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    • 제9권2호
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    • pp.219-241
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    • 2015
  • In this paper, a series of repeated load tests were carried out on a 150 mm diameter plate simulative of vehicle passes, to demonstrate the benefits of soil-rubber shred mixture in decreasing the soil surface settlement of road embankment. The results show that the efficiency of rubber reinforcement is significantly a function of the rubber content, thickness of rubber-soil mixture and soil cap thickness over the mixture. Minimum surface settlement is provided by 2.5% of rubber in rubber-soil mixture, the thickness of mixture layer and soil cap of 0.5 times the loading surface diameter, giving values of 0.32-0.68 times those obtained in the unreinforced system for low and high values of amplitude of repeated load. In this installation, in contrast with unreinforced bed that shows unstable response, the rate of enhancement in settlement decreases significantly as the number of loading cycles increase and system behaves resiliently without undergoing plastic deformation. The findings encourage the use of rubber shreds obtained from non-reusable tires as a viable material in road works.

유한요소해석을 이용한 연직배수재의 타설범위에 따른 개량효과에 관한 연구 (A Study on the Effect of Improvement Boundary of Vertical Drain Method by Finite Element Analysis)

  • 장용채;김주한;이진수
    • 한국지반환경공학회 논문집
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    • 제5권1호
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    • pp.5-12
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    • 2004
  • 우리나라의 서 남해안 지역과 내륙의 하천 인근 지역은 상당한 범위에 걸쳐 점성토 지반이 형성되어 있다. 연약지반상의 제체는 지지지반의 지지력 부족으로 인하여 변위를 일으킨다. 장기적인 압밀은 구조체의 침하나 전단파괴를 가져올 수 있다. 따라서, 지반의 파괴와 과다변형을 억제하기 위해서 건설현장에 다양한 연직배수공법을 적용한다. 이 연구는 지반개량의 범위에 기초하여 연직배수재를 연직 및 수평방향으로 변화시켜 효율적인 개량 범위의 형태를 결정하고자 한다. 제체의 가장자리로부터 거리에 따른 강도의 변화는 제체 사면의 현장 값으로부터 해석되어진다.

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Wave propagation in a concrete filled steel tubular column due to transient impact load

  • Ding, Xuanming;Fan, Yuming;Kong, Gangqiang;Zheng, Changjie
    • Steel and Composite Structures
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    • 제17권6호
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    • pp.891-906
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    • 2014
  • This study aims to present a three dimensional finite element model to investigate the wave propagation in a concrete filled steel tubular column (CFSC) due to transient impact load. Both the concrete and steel are regarded as linear elastic material. The impact load is simulated by a semi sinusoidal impulse. Besides the CFSC models, a concrete column (CC) model is established for comparing under the same loading condition. The propagation characteristics of the transient waves in CFSC are analyzed in detail. The results show that at the intial stage of the wave propagation, the velocity waves in CFSC are almost the same as those in CC before they arrive at the steel tube. When the waves reach the column side, the velocity responses of CFSC are different from those of CC and the difference is more and more obvious as the waves travel down along the column shaft. The travel distance of the wave front in CFSC is farther than that in CC at the same time. For different wave speeds in steel and concrete material, the wave front in CFSC presents an arch shape, the apex of which locates at the center of the column. Differently, the wave front in CC presents a plane surface. Three dimensional effects on top of CFSC are obvious, therefore, the peak value and arrival time of incident wave crests have great difference at different locations in the radial direction. High-frequency waves on the waveforms are observed. The time difference between incident and reflected wave peaks decreases significantly with r/R when r/R < 0.6, however, it almost keeps constant when $r/R{\geq}0.6$. The time duration between incident and reflected waves calculated by 3D FEM is approximately equal to that calculated by 1D wave theory when r/R is about 2/3.

지오텍스타일 튜브공법을 적용한 새만금방수제의 거동분석 및 시험시공 사례 - 설계과정 및 시공성 검토 중심으로 - (Behavior Analysis of the Saemangum Waterproof Embankment Applying Geotextile Tube Method and Example of Field Test - In Concentration of Reviewing the Construction and Design Process -)

  • 박종건;고정희;박태섭
    • 한국농공학회논문집
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    • 제55권6호
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    • pp.155-165
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    • 2013
  • Recently, geotextile tube method can be widely applied to the river, costal and marine in the construction field, such as embankment, groin, breakwater, dyke structures and so on, in advanced countries of the world. And that has been constructed at the temporary road for incheon, ilsan-bridge construction and coast erosion protection in republic of korea. Geotextile tube is a tube shaped geotextile product and hydraulic pumping filled with dredged soils. In this paper, the numerical analysis was performed to investigate the behavior of geotextile tube with various properties of material character, shape condition, construction pressure and so on. Also, the field test was conducted in order to identify the construction ability of Samangum waterproof embankment using geotextile tube. According to the applied of field test, geotextile tube was 65 m long and 4.0 m diameter. Also, the permeability coefficient and ultimate tensile strength of geotextile tube is $1.6{\times}10^{-1}$ cm/sec and 205.26 kN/m, respectively. As a result of filed test, when filled, geotextile tube does not attain the same as its unfilled theoretical diameter, but may reach approximately of 55 percent of the theoretical diameter. At the time, geotextile tubes were 12.56 m in circumference and filled to a height of about 2.2 m. This paper presents case study on field application and behavior analysis of the saemangum waterproof embankment donggin 1 division construction using geotextile tube.

성토지지말뚝구조에서 토목섬유 인장강성 증가에 따른 변위 억제 및 말뚝효율 증가량에 대한 수치해석적 분석 (Numerical Analysis on the Effect of Increasing Stiffness of Geosynthetics on Soil Displacement and Pile Efficiency in Piled Embankment on Soft Soil)

  • 이태희;이수형;이일화;정영훈
    • 한국지반공학회논문집
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    • 제31권4호
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    • pp.31-43
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    • 2015
  • 성토지지말뚝구조의 다양한 조건에서 토목섬유의 인장강성 변화가 성토체 및 토목섬유의 연직변위와 말뚝효율에 미치는 영향을 수치해석적으로 평가하였다. 매개변수 해석을 위해 연약지반의 강성, 성토재의 내부 마찰각과 팽창각, 토목섬유를 포함한 복합 재료층의 휨 강성을 변화시켰다. 토목섬유의 인장강성이 증가하면 말뚝효율이 증가하지만 그 증가량은 해석 조건에 따라 다르다. 성토재의 내부 마찰각이 매우 낮거나 복합 재료층의 휨 강성이 매우 높으면 뚜렷한 말뚝효율 증가가 나타났다. 연약지반의 강성이 매우 낮은 경우에 토목섬유의 인장강성을 증가시키면 뚜렷하게 연직 변위가 감소하였다. 복합 재료층의 휨 강성이 높으면 토목섬유 인장강성을 증가시켜 말뚝효율이 크게 향상되었다.

여천 임해공업단지 매립 계획 및 설계 (Reclamation Plan and Design for The Yeochon Industrial Complex)

  • 한경석;신승철
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1992년도 가을학술발표회 논문집
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    • pp.75-86
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    • 1992
  • The elevation of reclamation work in the coastal area for the industrial complex is determined through the investigation and review of marine conditions, drainage plan and fill materials. The embankment to be constructed with crushed stone on the soft soil should be safe against the wave force, immediate and long term consolidation settlement, overturning and sliding due to self-weight and other forces. Because of lack of fill material from the borrow pit, the soft marine clay to be dredged shall be used as the reclamation material. And Paper Drain Board is used as the improvement method for the deep soft clay strata.

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대형삼축시험 장비를 이용한 조립재료의 전단강도 특성 (Characteristics of shear strength of coarse-grained materials using large triaxial test equipment)

  • 김광일;신동훈;임은상;김기영
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.1017-1024
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    • 2009
  • In the past few decades, the rockfill embankment dam, which has superior workability and economy, has become a major trend. In Korea, most of the embankment dams are rockfill dams, but recently, in response to the demand for sustainable development and environmentally-friendly water resource development, the sand and gravel in streams has become a major construction material for dams, rather than the non-economic rockfill, and its application examples have also increased. In this study, a large triaxial test was performed, with construction samples of different maximum sizes, in parallel with the grading method at the 'B Dam' construction site in Korea, and the effects of the different maximum sizes on the strain of the dam construction material and on the shear strength characteristics were analyzed to provide the basic data for determining the strength characteristics of the coarse-grained materials by the maximum size.

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