• 제목/요약/키워드: Road foundation

검색결과 168건 처리시간 0.026초

Time effect of pile-soil-geogrid-cushion interaction of rigid pile composite foundations under high-speed railway embankments

  • Wang, Changdan;Zhou, Shunhua;Wang, Binglong;Guo, Peijun
    • Geomechanics and Engineering
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    • 제16권6호
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    • pp.589-597
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    • 2018
  • Centrifuge model tests were used to simulate pile-raft composite foundation and pile-geogrid composite foundation with different pile spacing for researching the time effect of negative skin friction of rigid piles in high-speed railways. The research results show that the negative skin friction has a significant impact on the bearing capacity of composite foundation. Pile-raft composite foundation has higher bearing capacity compared to pile-geogrid composite foundation to reduce the effect of negative skin friction on piles. Both the foundation settlement and negative skin friction have significant time effect. The distribution of skin friction can be simplified as a triangle along the pile. The neutral point position moves deeper in the postconstruction stage at larger pile spacing. For pile-geogrid composite foundation, the setting of pile-cap affects the position of neutral point in the post-construction stage. Reinforced cushion with geotextile may promote the better performance of cushion for transmitting the loads to piles and surrounding soils. Arching effect in the cushion of the composite foundation is a progressive process. The compression of the rigid piles contributes less than 20% to 25% of the total settlement while the penetration of the piles and the compression of the bearing stratum below the pile tips contribute more than 70% of the total settlement. Some effective measures to reduce the settlement of soils need to be taken into consideration to improve the bearing capacity of pile foundation.

도로성토사면의 안정성 분석시 원지반 투수성의 영향 (Permeability Influence of Base Soil for Analysis of Road Landfill Stability)

  • 김영묵;김충기;김만구;김건해
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.890-897
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    • 2005
  • Stability of embankment is influenced on landfill condition, permeability, shear strength and soil engineering propensity and so on, and need examination in reply because is different according to change of soil property of foundation ground and permeability condition. Analyzed seepage behaviour by finite element method for embankment, and change permeability of base to analyze effect that permeability of ground water table formation before embankment and analyze seepage behaviour to typical embankment in this research. In the case of permeability of foundation ground is 10 more than landfill permeability, rise of groundwater table was changed slightly. Pore water pressure was decreased slowly in landfill after rainfall. The effect of permeability of foundation ground was effected in change of pore water pressure. For permeability of foundation ground is 10 more than landfill, stability of road landfill was small changed during rainfall. But in the case of permeability of base soil similar to landfill permeability, road landfill stability was large decreased during rainfall.

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도로분야 IFC 확장을 위한 도로시설의 구성요소 도출 (Extraction of Road Structure Elements for Developing IFC(Industry Foundation Classes) Model for Road)

  • 문현석;최원식;강인석;나혜숙
    • 한국산학기술학회논문지
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    • 제15권2호
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    • pp.1195-1203
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    • 2014
  • 최근 표준으로 등록된 IFC(Industry Foundation Classes)4는 건축시설의 형상요소 표현에 한정될 뿐 도로, 교량 및 터널 등의 토목시설에 대한 형상표준을 정의하고 있지 않아 여전히 토목 형상모델의 교환을 위한 상호운용성에 제약이 있다. 특히 도로시설은 중심선형에 따라 모델링되는 선형적 특성을 가지며, 프로젝트 별로 형상이 서로 상이하여 표준화된 도로정보모델을 구축하는 것이 곤란하다. 따라서 본 연구에서는 도로의 형상정보모델 개발을 위해 3차원 설계 프로세스 관점에서 도로를 구성하는 구조요소 및 속성을 도출하는 것이 목적이다. 이를 위해 본 연구는 도로설계를 위해 활용되는 도로설계편람, 지침, 시방서 및 기하설계 기준 등의 정보를 분석하여 도로 구조물의 형상 요소와 속성을 추출한다. 도출된 형상은 엔티티(Entity) 항목으로 정의하고 가상 도로모델을 통해 정의된 도로 형상모델의 위계구조를 검토한다. 도출된 도로의 세부 구조 요소 및 속성은 인프라 분야의 BIM(Building Information Modeling)환경을 구축하기 위한 3차원 형상정보로 활용되며, 도로의 구체적인 형상, 타입 및 속성을 세분화하여 도로분야의 IFC로 확장하기 위한 기초자료로 활용될 것으로 기대된다.

단일 현장타설말뚝 기초의 설계 및 시공 (Design and consturction of single drilled shaft foundation)

  • 전경수;김경석;김정열
    • 기술발표회
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    • 통권2006호
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    • pp.86-100
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    • 2006
  • The single drilled shaft foundation has been used in the other countries, but has not used in South Korea at all This foundation is very effective and economic method in South Korea which is easy to meet a good rock mass within 50m depth from the ground We have many experiences to construct 1.52 5m drilled shaft foundations and ability to construct 30m drilled shaft foundation without special efforts The soil behavior is nonlinear, but it can be proposed in linear in practical purpose on bridges. The elastic modulus of soil can be rationally obtained by the method of Road Bridge Design Manual in South Korea using the Schmertmann(1970)'s proposal, and the elastic modulus of rock can be obtained by the field test. In seismic design the column and drilled shaft must be restricted to the elastic design because the behavior of this foundation is flexible and the arrangement of the rebars makes the various defect In this paper the design criteria is compared with FHWA design criteria, and the design criteria is proposed in consistent with Road Bridge Design Manual in South Korea. The single drilled shaft foundation of a test bridge was constructed in the Iksan-Jangsoo highway, and we checked its stability, workability and economy

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Development of a Predictive Model for Cement Stabilised Roadbase

  • Chai Gray W.;Oh Erwin Y.;Smith Warren
    • 한국도로학회논문집
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    • 제8권2호
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    • pp.31-35
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    • 2006
  • Cement stabilisation is a common method for stabilising recycled road base material and provides a longer pavement life. With cement effect, the increment of stiffness in the stabilised layer would provide better load transfer to the pavement foundation. The recycling method provides an environmentally option as the existing road base materials will not be removed. This paper presents a case study of a trial section along the North-South Expressway in West Malaysia, where the Falling Weight Deflectometer (FWD) was implemented to evaluate the compressive strength and in-situ stiffness of the cement stabilised road base material. The improvement in stiffness of the cement stabilised base layer was monitored, and samples were tested during the trial. FWD was found to be useful for the structural assessment of the cement-stabilised base layer prior to placement of asphalt layers. Results from the FWD were applied to verify the assumed design parameters for the pavement. Using the FWD, an empirical correlation between the deflection and the stiffness modulus of the pavement foundation is proposed.

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A dynamic foundation model for the analysis of plates on foundation to a moving oscillator

  • Nguyen, Phuoc T.;Pham, Trung D.;Hoang, Hoa P.
    • Structural Engineering and Mechanics
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    • 제59권6호
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    • pp.1019-1035
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    • 2016
  • This paper proposes a new foundation model called "Dynamic foundation model" for the dynamic analysis of plates on foundation subjected to a moving oscillator. This model includes a linear elastic spring, shear layer, viscous damping and the special effects of mass density parameters of foundation during vibration. By using finite element method and the principle of dynamic balance, the governing equation of motion of the plate travelled by the oscillator is derived and solved by the Newmark's time integration procedure. The accuracy of the algorithm is verified by comparing the numerical results with the other numerical results in the literature. Also, the effects of mass and damping ratio of system components, stiffness of suspension system, velocity of moving oscillator, and dynamic foundation parameters on dynamic responses are investigated. A very important role of these factors will be shown in the dynamic behavior of the plate.

Differential settlements in foundations under embankment load: Theoretical model and experimental verification

  • Wang, Changdan;Zhou, Shunhua;Wang, Binglong;Guo, Peijun;Su, Hui
    • Geomechanics and Engineering
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    • 제8권2호
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    • pp.283-303
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    • 2015
  • To research and analyze the differential settlements of foundations specifically, site investigations of existing railways and metro were firstly carried out. Then, the centrifugal test was used to observe differential settlements in different position between foundations on the basis of investigation. The theoretical model was established according to the stress diffusion method and Fourier method to establish an analytical solution of embankment differential settlement between different foundations. Finally, theoretical values and experimental values were analyzed comparatively. The research results show that both in horizontal and vertical directions, evident differential settlement exists in a limited area on both sides of the vertical interface between different foundations. The foundation with larger elastic modulus can transfer more additional stress and cause relatively less settlement. Differential settlement value decreases as the distance to vertical interface decreases. In the vertical direction of foundation, mass differential settlement also exists on both sides of the vertical interface and foundation with larger elastic modulus can transfer more additional stress. With the increase of relative modulus of different foundations, foundation with lower elastic modulus has larger settlement. Meanwhile, differential settlement is more obvious. The main error sources in theoretical and experimental values include: (a) different load form; (b) foundation characteristics differences; (c) modulus conversion; (d) effect of soil internal friction.

온도조건에 의한 도로하부 지반의 동결 및 지지력 특성 (Freezing and Bearing Capacity Characteristics of Road Foundations under Temperature Condition)

  • 신은철;김성환;박정준
    • 한국지반공학회논문집
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    • 제28권3호
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    • pp.5-14
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    • 2012
  • 현재 기존 동상방지층 설계법에 따르면, 동상방지층은 도로 노상토의 동상특성이 아닌 온도에 따른 동결깊이에 근거해 일률적으로 결정되어 포장설계의 부실 또는 과다설계 우려가 있다. 도로는 다양한 재료와 단면으로 구성된 구조물이기 때문에 환경성과 재료 물성 뿐만 아니라 포장체 각 층의 구조적 적정성 또는 지지력을 파악하는 것이 무엇보다 중요하다. 따라서 본 논문에서는 대형 냉동고내에 실내모형토조를 구성하여 포장하부구조재료(노상층, 쇄석골재층)의 시간에 따른 온도와 동상량 변화, 동결융해에 따른 지반의 지지력 변화를 통하여 포장하부구조체의 역학적 관계를 분석하였다.

해안 도로상의 EPS 하중경감공법의 해석 (Applications of the Light Weight Method of EPS to Sub-road Fills at the Seaside)

  • 장용채
    • 한국항만학회지
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    • 제14권2호
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    • pp.233-239
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    • 2000
  • The expansion of old road is needed in constructing the entrance at the $\bigcirc$$\bigcirc$I/C road in $\bigcirc$$\bigcirc$city. To strength the national competition, many agents who concerned do their best for finishing that construction early as soon as possible. In generally, soil embankment on soft foundation is caused to reduce the stability by making the settlement of ground surface due to the over load. Thus, we try to make it stable by building EPS embankment construction which in our working place is one kind of the method of light embankment construction after excavating the original ground.

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Experiments on influence of foundation mass on dynamic characteristic of structures

  • Pham, Trung D.;Hoang, Hoa P.;Nguyen, Phuoc T.
    • Structural Engineering and Mechanics
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    • 제65권5호
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    • pp.505-511
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    • 2018
  • Recently, a new foundation model called "Dynamic foundation model" was proposed for the dynamic analysis of structures on the foundation. This model includes a linear elastic spring, shear layer, viscous damping and the special effects of mass density parameter of foundation during vibration. However, the relationship of foundation property parameters with the experimental parameter of the influence of foundation mass also has not been established in previous research. Hence, the purpose of the paper presents a simple experimental model in order to establish relationships between foundation properties such as stiffness, depth of foundation and experimental parameter of the influence of foundation mass. The simple experimental model is described by a steel plate connected with solid rubber layer as a single degree of freedom system including an elastic spring connected with lumped mass. Based on natural circular frequencies of the experimental models determined from FFT analysis plots of the time history of acceleration data, the experimental parameter of the influence of foundation mass is obtained and the above relationships are also discussed.