• 제목/요약/키워드: foundation mass

검색결과 374건 처리시간 0.027초

응결시간조정에 의한 매트기초 매스 콘크리트의 온도균열저감 공법적용의 Mock-up Test (Mock-up Test of Temperature Crack Reduction Method Application by Setting Time Control of Mat Foundation Mass Concrete)

  • 한천구;이재삼;노상균
    • 한국건축시공학회지
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    • 제9권4호
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    • pp.55-61
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    • 2009
  • 현재 국내의 건설공사현장에서는 도심부에 대형 건설사를 중심으로 초고층 건축물의 시공이 진행 중에 있다. 그런데 이러한 초고층 건축물의 기초는 상부의 큰 하중을 지지하기 위해 매우 두꺼운 매트 콘크리트가 필수적이다. 그러나 이와 같은 매스 콘크리트는 현장여건상 다량의 콘크리트를 동시에 타설할 수 없기 때문에 일체성에 의문이 제기되는 것은 물론이고 수화발열시간의 서로 다름에 따른 내응력에 의한 균열발생 가능성이 증가한다. 따라서 본 연구에서는 상기의 문제점을 해소시키고자 국내 모처에 건설되고 있는 초고층 건축물을 대상으로 초지연제의 응결시간차를 활용한 수평분할타설 건축 매스 콘크리트의 수화열 조정공법을 실제 건축현장에 적용하고자 Mock-up test를 통하여 그 효율성을 확인하였다. 실험결과 초지연제 투입 전 후슬럼프 플로우는 목표 지연시간이 길어질수록 다소 증가하였고, 공기량은 큰 차이는 없는 것으로 나타났으며, 응결시간은 목표 지연시간이 길어질수록 지연되었다. 목표 지연시간이 길어질수록 초기재령에서는 압축강도가 작게 나타났으나, 재령이 경과할수록 강도증진 폭이 크게 되어 재령 28일에서는 보통 콘크리트보다 동등 혹은 그 이상을 나타내었다. 또한 2단 및 4단으로 초지연제에 의한 응결시간차공법을 활용한 경우 하부와 상부간 콘크리트의 일체화 및 온도차를 낮추고, 수화열 피크시점이 후기로 늦어짐에 따라 균열발생가능성을 저하시키는 효과를 확인할 수 있었는데, 특히 4단 타설에서 가장 양호한 효과가 나타남을 확인할 수 있었다.

초지연제의 응결시간차 공법을 이용한 기초 매트 콘크리트의 수화열 저감 시공 (Execution of Mass Concrete for Mat Foundation Using Setting Time Difference with Super Retarding Agent for Reducing Hydration Heat)

  • 전충근;윤치환;송승헌;신동안;오선교;한천구
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.144-147
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    • 2004
  • In this paper, field application of mass concreting using super retarding agent(SRA) are discussed based on setting. time difference with SRA in big discount market in Chongju. Mechanical and physical properties of .concrete are investigated. Temperature history of concrete is also measured. Slump and air content meet the requirement of target value. Compressive strength of concrete exceeded the nominal strength with 24MPa. Compressive strength of SRA concrete is higher than that of plain concrete by about $3\~4\%$. For temperature history, peak temperature of concrete at middle section at top concrete layer reached $49.6^{\circ}C$ within 24hours, and at bottom concrete layer, $54.6^{\circ}C$ within 42hours. Based on the naked eye's observation, no crack was found at mass concrete.

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암반 위에 위치한 기초의 지지력 평가에 관한 연구 (A study on ultimate bearing capacity of foundations on jointed rock mass)

  • 최고니;유충식
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.420-429
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    • 2009
  • This study concerns bearing capacity of shallow and deep foundations on jointed rock mass. The main focus of this research lies on getting insight into the applicability of bearing capacity estimation methods developed by other researchers. First, an extensive literature review was performed on previous studies concerning bearing capacity of foundation on jointed rock mass. Second, a parametric study on a number of jointed rock conditions using the finite-element analysis. The results of the analysis were then compared with those computed by the bearing capacity estimation method.

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테프론 또는 제강슬래그를 활용한 기초형 지진격리장치의 면진 메카니즘 평가 (Evaluation of Isolation Mechanism of Teflon or Steel Slag-Type Seismic Foundation Isolation Systems)

  • 손수원;강인구;푸얀 벅게리;김진만
    • 한국지반공학회논문집
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    • 제34권1호
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    • pp.5-16
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    • 2018
  • 본 연구에서는 지반에서 1차적인 면진작용을 할 수 있는 지반형 지진격리장치의 내진성능을 평가하였다. 테프론과 제강슬래그를 이용하여 지반형 지진격리장치를 조성한 후 그 위에 모형 상부구조물을 설치하고 1-G 진동대 실험을 수행하였다. 다양한 수준의 입력지진파에 대해 응답가속도와 응답스펙트럼을 분석하였으며, 지진격리장치가 없는 고정기초 구조물과 결과를 비교하였다. 연구결과, 제강슬래그형 지진격리장치가 가장 가속도 저감효과가 좋았으며, 테프론형 지진격리장치는, 중 약진 조건에서는 가속도 저감효과가 크게 없고 강진조건에서는 가속도 저감효과가 좋았다. 입력파가 상부질량(Mass)으로 전달되면서, 고정기초 구조물의 응답스펙트럼은 입력지진파에 비해 단주기영역에서 증폭하고, 테프론과 제강슬래그를 이용한 지진격리장치가 있는 구조물의 응답스펙트럼은 입력지진파에 비해 장주기 영역에서 증폭하였다. 이러한 주기특성 변화와 재료간의 마찰특성이 가속도 저감효과에 영향을 준 것으로 판단된다.

카운터블로 해머 프레스 단조공정의 기계진동 특성 해석 (Mechanical Vibration Characteristics Analysis of a Counterblow Hammer Press in the Forging Process)

  • 김수태;주경진;박근종;최영휴
    • 한국기계가공학회지
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    • 제21권8호
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    • pp.43-52
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    • 2022
  • The vibration characteristics of a hammer press are important parameters for machine design and production control. In this study, a counterblow hammer press was mathematically modelled as a mass-spring-damper system in order to analyze its vibration characteristics. The forging efficiency was theoretically derived as a function of the mass ratio, momentum ratio, and the coefficient of restitution And the effects of the mass ratio, momentum ratio and the restitution coefficient on the forging efficiency were also investigated for two particular cases of the unit mass ratio and unit momentum ratio. Additionally, the vibration responses of the counterblow hammer press due to the ram colliding impact were analyzed, and the force transmitted to the foundation through the mounting unit was determined.

Non linear soil structure interaction of space frame-pile foundation-soil system

  • Chore, H.S.;Ingle, R.K.;Sawant, V.A.
    • Structural Engineering and Mechanics
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    • 제49권1호
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    • pp.95-110
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    • 2014
  • The study deals with physical modeling of space frame-pile foundation and soil system using finite element models. The superstructure frame is analyzed using complete three-dimensional finite element method where the component of the frame such as slab, beam and columns are descretized using 20 node isoparametric continuum elements. Initially, the frame is analyzed assuming the fixed column bases. Later the pile foundation is worked out separately wherein the simplified models of finite elements such as beam and plate element are used for pile and pile cap, respectively. The non-linear behaviour of soil mass is incorporated by idealizing the soil as non-linear springs using p-y curve along the lines similar to that by Georgiadis et al. (1992). For analysis of pile foundation, the non-linearity of soil via p-y curve approach is incorporated using the incremental approach. The interaction analysis is conducted for the parametric study. The non-linearity of soil is further incorporated using iterative approach, i.e., secant modulus approach, in the interaction analysis. The effect the various parameters of the pile foundation such as spacing in a group and configuration of the pile group is evaluated on the response of superstructure owing to non-linearity of the soil. The response included the displacement at the top of the frame and bending moment in columns. The non-linearity of soil increases the top displacement in the range of 7.8%-16.7%. However, its effect is found very marginal on the absolute maximum moment in columns. The hogging moment decreases by 0.005% while sagging moment increases by 0.02%.

Interaction analysis of three storeyed building frame supported on pile foundation

  • Rasal, S.A.;Chore, H.S.;Sawant, V.A.
    • Coupled systems mechanics
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    • 제7권4호
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    • pp.455-483
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    • 2018
  • The study deals with physical modeling of a typical three storeyed building frame supported by a pile group of four piles ($2{\times}2$) embedded in cohesive soil mass using three dimensional finite element analysis. For the purpose of modeling, the elements such as beams, slabs and columns, of the superstructure frame; and that of the pile foundation such as pile and pile cap are descretized using twenty noded isoparametric continuum elements. The interface between the pile and the soil is idealized using sixteen node isoparametric surface element. The soil elements are modeled using eight nodes, nine nodes and twelve node continuum elements. The present study considers the linear elastic behaviour of the elements of superstructure and substructure (i.e., foundation). The soil is assumed to behave non-linear. The parametric study is carried out for studying the effect of soil- structure interaction on response of the frame on the premise of sub-structure approach. The frame is analyzed initially without considering the effect of the foundation (non-interaction analysis) and then, the pile foundation is evaluated independently to obtain the equivalent stiffness; and these values are used in the interaction analysis. The spacing between the piles in a group is varied to evaluate its effect on the interactive behaviour of frame in the context of two embedment depth ratios. The response of the frame included the horizontal displacement at the level of each storey, shear force in beams, axial force in columns along with the bending moments in beams and columns. The effect of the soil- structure interaction is observed to be significant for the configuration of the pile groups and in the context of non-linear behaviour of soil.

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.

단열바닥기초 적용을 위한 발포유리 골재의 기초 특성 평가 (A Study on the Basic Properties of Foam Glass Aggregate for the Application of Insulated Foundation)

  • 김상헌;문수영;김현수
    • 한국건설순환자원학회논문집
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    • 제10권4호
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    • pp.420-427
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    • 2022
  • 본 연구는 국내 생산 발포유리 골재를 활용하여 단열바닥기초로 활용하기 위해, 발포유리 골재로 구성된 단열부의 물리역학적 특성 및 열적특성을 평가하였다. 평가 결과, 압축강도는 기존 유기단열재인 XPS, EPS 등에 비해 높은 40.6 N/cm2로 나타났으며, 열전도율은 0.84 W/mK로 나타났다. 또한 단열바닥구조를 모사한 시험체의 열관류율은 0.37 W/m2K로 나타나 실제 발현되는 발포유리 골재의 열전도율은 0.80 W/mK으로 평가되었다. 본 연구를 통해 발포유리 골재를 사용한 단열바닥구조의 활용가능성을 확인할 수 있었다.

두 개의 매개변수로 표현되는 탄성지반 위에 놓인 낮은 아치의 최저차 대칭 및 역대칭 고유진동수 (Lowest Symmetrical and Antisymmetrical Natural Frequencies of Shallow Arches on Two-Parameter Elastic Foundations)

  • 오상진;서종원;이병구
    • 한국전산구조공학회논문집
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    • 제15권2호
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    • pp.367-377
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    • 2002
  • 이 논문은 탄성지반 위에 놓인 낮은 아치의 자유진동에 관한 연구이다. Pasternak가 제안한 두 개의 매개변수로 표현되는 지반모형을 채택하여 대상아치의 자유진동을 지배하는 미분방정식을 유도하였다. 양단회전 및 양단고정의 단부 조건을 갖는 두 종류의 아치선형을 유도된 지배방정식에 적용하여 Galerkin method로 해석함으로써 최저차 대칭 및 역대칭 고유진동수 방정식을 산출하였다 아치높이, Winkler지반계수 및 전단지반계수가 고유진동수에 미치는 영향을 분석하였으며, 아치선형이 고유진동수에 미치는 영향을 분석하였다.