• 제목/요약/키워드: Construction-step behavior

검색결과 91건 처리시간 0.025초

대블록시공법에 따른 강상판교의 시공단계별 거동 (Behavior Due to Construction Step in Steel Deck Bridge by Large Block Construction Method)

  • 이성행;김경남;함형길;정경섭
    • 한국구조물진단유지관리공학회 논문집
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    • 제14권2호
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    • pp.97-105
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    • 2010
  • 시공단계에 따른 강상판교의 변위를 측정하였고, 이 결과와 비교하기 위하여 3차원 구조해석을 수행하였다. 검증된 모델을 사용하여 대블럭 시공법에 의한 시공단계에 따른 3차원 구조해석을 수행하여 다음과 같은 결론을 얻었다. 1. 설계에 사용된 Grid 해석과 3차원 해석에 의한 결과를 비교하면, Grid 해석의 결과는 곡선교의 변위를 모사하는데 한계가 있었으며, 두 가지 해석방법에 의한 변위의 차이는 약 10~20%정도였다. 2. 가설중에 일어날 수 있는 최대 처짐은 완료된 상태의 처짐에 비하여 1.7배까지 크게 발생하였다. 3. 시공단계 해석 결과, 블록시공법에 의하여 시공되는 교량의 거동은 전체 구조물이 일체로 되어 한 번에 거치되는 교량과는 다른 결과가 도출되며, 중간의 가설과정에서는 설계시 고려된 응답보다 더 큰 결과가 도출되고 있으므로, 설계시 시공단계를 고려한 해석을 통하여 합리적인 구조설계가 이루어져야 한다.

Half PC slab의 건조수축 거동 예측 (Prediction of Drying Shrinkage Behavior of Half PC Slab)

  • 서태석;최훈제
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2016년도 추계 학술논문 발표대회
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    • pp.7-8
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    • 2016
  • The use of half PC slab is increasing to shorten construction period. Because the drying shrinkage of topping concrete is restrained by PC slab, the tensile stress is generated at the topping concrete and the cracks can be occurred at the topping concrete due to drying shrinkage. Therefore, it is important to predict the tensile strain of half PC slab due to drying shrinkage to improve the quality of half PC slab. However, there is no studies on prediction of shrinkage behavior of half PC slab yet. Therefore, in this study, half PC slab was made, and the predictability of tensile strain generated at half PC slab due to drying shrinkage was investigated. The step by step method considering creep was used to estimate the tensile strain of half PC slab. In result, good agreement was obtained between the analytical and experimental values.

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Nonlinear time-varying analysis algorithms for modeling the behavior of complex rigid long-span steel structures during construction processes

  • Tian, Li-Min;Hao, Ji-Ping
    • Steel and Composite Structures
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    • 제18권5호
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    • pp.1197-1214
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    • 2015
  • There is a great difference in mechanical behavior between design model one-time loading and step-by-step construction process. This paper presents practical computational methods for simulating the structural behavior of long-span rigid steel structures during construction processes. It introduces the positioning principle of node rectification for installation which is especially suitable for rigid long-span steel structures. Novel improved nonlinear analytical methods, known as element birth and death of node rectification, are introduced based on several calculating methods, as well as a forward iteration of node rectification method. These methods proposed in this paper can solve the problem of element's 'floating' and can be easily incorporated in commercial finite element software. These proposed methods were eventually implemented in the computer simulation and analysis of the main stadium for the Universiade Sports Center during the construction process. The optimum construction scheme of the structure is determined by the improved algorithm and the computational results matched well with the measured values in the project, thus indicating that the novel nonlinear time-varying analysis approach is effective construction simulation of complex rigid long-span steel structures and provides useful reference for future design and construction.

Long-term behavior of segmentally-erected prestressed concrete box-girder bridges

  • Hedjazi, S.;Rahai, A.;Sennah, K.
    • Structural Engineering and Mechanics
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    • 제20권6호
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    • pp.673-693
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    • 2005
  • A general step-by-step simulation for the time-dependent analysis of segmentally-erected prestressed concrete box-girder bridges is presented. A three dimensional finite-element model for the balanced-cantilever construction of segmental bridges, including effects of the load history, material nonlinearity, creep, shrinkage, and aging of concrete and the relaxation of prestressing steel was developed using ABAQUS software. The models included three-dimensional shell elements to model the box-girder walls and Rebar elements representing the prestressing tendons. The step-by-step procedure allows simulating the construction stages, effects of time-dependent deformations of materials and changes in the structural system of the bridges. The structural responses during construction and throughout the service life were traced. A comparison of the developed computer simulation with available experimental results was conducted and good agreement was found. Deflection of the bridge deck, changes in stresses and strains and the redistribution of internal forces were calculated for different examples of bridges, built by the balanced-cantilever method, over thirty-year duration. Significant time-dependent effects on the bridge deflections and redistribution of internal forces and stresses were observed. The ultimate load carrying capacities of the bridges and the behavior before collapse were also determined. It was observed that the ultimate load carrying capacity of such bridges decreases with time as a result of time-dependent effects.

공용중 도로하부의 굴착터널 해석 및 계측 연구 (An Analytical and Experimental Study on the Mechanical Behavior of Excavating Turnels beneath the Roadway)

  • 정광모;방명석
    • 한국안전학회지
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    • 제27권5호
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    • pp.99-104
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    • 2012
  • A turnelling work beneath roadways or railways in use is unsafe and dangerous. A turnelling method should be analytically and experimentally studied to verify stability and safety of excavating works by construction step. The conventionally analytical method was ineffective in computational time and cost, so the new analytical method named homogenuity method, was developed and verified compared with analytical results. That method was applied to parameterly study the effect of distance of steel supports and overburdening height of soil. It showed that the homogenuity method was very practical and effective in step-by-step analysis considering construction sequences. A measuring device was set at the construction field and mechanical behavior was monitored during construction. Measuring values are larger than analytical values because impact of inserting steel pipes, lowering level of underground water and vibration of passing vehicles affected soil density during construction, but those values were within allowable limits.

부력저항 영구앵커의 장기거동 특성에 관한 연구 (A Study on the Long-Term Behavior Characteristics of Buoyancy-Resistant Permanent Anchor)

  • 허병주;김찬기;정용건;천병식
    • 한국지반환경공학회 논문집
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    • 제11권12호
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    • pp.27-35
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    • 2010
  • 지하공간에 설치되는 구조물 중 지하수위 아래에 위치하는 부분은 상향으로 정수압인 부력이 작용하게 된다. 최근 큰 규모의 중요구조물 즉, 부력이 크게 발생하는 구조물은 공사비가 고가이나 안전율을 확실하게 증가시키는 방법인 부력저항 영구앵커를 많이 적용하고 있는 실정이다. 그러나, 부력저항 영구앵커의 저항 메커니즘 규명은 미흡한 실정이다. 특히, 시공 후 앵커의 장기거동에 대한 규명은 계측 관리의 어려움으로 이루어지지 않고 있는 것이 현실이다. 본 연구에서는 부력 저항 영구앵커의 설계 시 합리적인 구조물 거동 평가를 위하여 앵커두부에 하중계를 설치하여 앵커축력을 자동화계측 및 수동계측을 통해 시공초기부터 10년간 계측 분석하였으며, 이를 토대로 건물의 자중증가에 따른 앵커의 시공단계별 거동과 시간 경과에 따른 앵커의 장기거동(시공 후 10년 이내의 거동)을 분석하였다.

시공단계를 고려한 U-Channel Bridge의 슬래브 설계 (Slab Design of U-Channel Bridge Considering Construction Sequence)

  • 최동호;김성재;전선용;김용식;김성원
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 춘계 학술발표회 제20권1호
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    • pp.265-268
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    • 2008
  • 본 논문에서는 새로운 교량 형식인 U-Channel Bridge(UCB)의 시공단계를 고려하여 그 거동 및 슬래브의 설계방법에 대한 연구를 수행하였다. UCB는 각각의 세그먼트를 공장에서 제작하여 현장에서 조립하여 시공하므로 각 시공단계별로 지지 조건에 변화가 발생한다. UCB의 시공단계를 지지 조건이 변화하는 제작, 운반, 가설빔 거치, 완공의 네 단계로 구분하여 각 단계마다 프레임 요소와 판 요소를 적용하여 적합한 구조해석 모델을 제시하였으며, 구조해석을 수행하고 그 결과를 검토하였다. 검토 결과 슬래브의 해석은 네 단계를 모두 고려하여 수행되어야 하는 것으로 나타났으며 구성된 모델을 적용하여 타당한 슬래브의 설계방법을 제안하였다.

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시공단계별 해석에 의한 현수교의 안전한 건설방법 (The Safe Erection Method of Suspension Bridges by Construction Sequence Analysis)

  • 방명석
    • 한국안전학회지
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    • 제22권6호
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    • pp.55-62
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    • 2007
  • The structural safety of long span bridges such as suspension bridges is smaller under the construction stage than in the completion. But the importance of construction sequences has been neglected in most of safety check programs. On this study is developed the structural analysis method of suspension bridges considering construction sequences and structural analyses are performed by step by step during construction. This can be used to determine the safest erection method. The results shows that the more critical structural behavior appears under construction than after completion.

박판 냉간성형강 합성보의 구조적 거동에 관한 연구 (A Study on the Structural Behavior of Profiled Composite Beams)

  • 양구록;황영서;송준엽;권영봉
    • 한국강구조학회 논문집
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    • 제11권2호통권39호
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    • pp.143-151
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    • 1999
  • 본 논문에서는 냉간성형 profiled steel sheeting과 보통강도의 콘크리트로 이루어진 합성보의 휨거동에 관한 연구를 통하여 새로운 형식의 보부재의 사용가능성을 검토하였다. 합성보의 비선형거동을 추적하기 위하여 profiled steel sheeting, 철근 및 콘크리트의 재료비선형을 포함할 수 있는 해석적 방법을 개발하였으며, 합성보의 비선형 모멘트-곡률 관계를 나타낼 수 있는 Power Model식을 제시하였다. Power Model은 원래 보-기둥 접합부의 모멘트-회전각과의 관계를 예측하기 위해 제안된 것이나 합성보에 맞게 수정하였다. 합성보의 하중-처짐 거동은 Power Model에 의한 모멘트-곡률 관계를 이용하여 변위조절법인 단계별 수치적분법을 적용하여 계산하였으며, 실험결과와 비교하였다.

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Simplified sequential construction analysis of buildings with the new proposed method

  • Afshari, Mohammad Jalilzadeh;Kheyroddin, Ali;Gholhaki, Majid
    • Structural Engineering and Mechanics
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    • 제63권1호
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    • pp.77-88
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    • 2017
  • Correction Factor Method (CFM) is one of the earliest methods for simulating the actual behavior of structure according to construction sequences and practical implementation steps of the construction process which corrects the results of the conventional analysis just by the application of correction factors. The most important advantages of CFM are the simplicity and time-efficiency of the computations in estimating the final modified forces of the beams. However, considerable inaccuracy in evaluating the internal forces of the other structural members obtained by the moment equilibrium equation in the connection joints is the biggest disadvantage of the method. This paper proposes a novel method to eliminate the aforementioned defect of CFM by using the column shortening correction factors of the CFM to modify the axial stiffness of columns. In this method, the effects of construction sequences are considered by performing a single step analysis which is more time-efficient when compared to the staged analysis especially in tall buildings with higher number of elements. In order to validate the proposed method, three structures with different properties are chosen and their behaviors are investigated by application of all four methods of: conventional one-step analysis, sequential construction analysis (SCA), CFM, and currently proposed method.