본 연구는 고속도로용 RC 교각 기둥구조에 대하여 축방향 기존 철근을 중공철근으로 대체하는 설계방안을 제시하였 다. 동일직경 기준으로 기존 이형철근을 중공철근으로 대체할 수 있는 합리적인 설계방안을 제시하였으며, 기존 축방향 배근량 을 감소하는 방안을 제안하였다. 본 연구에서 제안한 설계방안을 검증하기 위하여 3차원 유한요소 구조해석을 수행하였으며, 압 축하중에 의한 변수 수치해석을 통하여 본 연구에서 제안한 방안의 타당성을 제시하였다. 향후 다양한 변수 수치해석 및 실물 시험을 통하여 본 연구에서 제시한 설계방안에 대한 추가 검증이 필요하다.
Structure behaviors resulting from an earthquake are experimentally simulated mainly through a shaking table test. As for large-scale structures, however, size effects over a miniature may make it difficult to assess actual behaviors properly. To address this problem, research on the hybrid simulation is being conducted actively. This method is to implement numerical analysis on framework members that affect the general behavior of the structure dominantly through an actual scale experiment and on the rest parts by applying the substructuring technique. However, existing studies on hybrid simulation focus mainly on Slow experimental methods, which are disadvantageous in that it is unable to assess behaviors close to the actual level if material properties change depending on the speed or the influence of inertial force is significant. The present study aims to establish a Real-time hybrid simulation system capable of excitation based on the actual time history and to verify its performance and applicability. The hybrid simulation system built up in this study utilizes the ATS Compensator system, CR integrator, etc. in order to make the target displacement the same with the measured displacement on the basis of MATLAB/Simulink. The target structure was a 2-span bridge and an RC pier to support it was produced as an experimental model in order for the shaking table test and Slow and Real-time hybrid simulations. Behaviors that result from the earthquake of El Centro were examined, and the results were analyzed comparatively. In comparison with the results of the shaking table test, the Real-time hybrid simulation produced more similar maximum displacement and vibration behaviors than the Slow hybrid simulation. Hence, it is thought that the Real-time hybrid simulation proposed in this study can be utilized usefully in seismic capacity assessment of structural systems such as RC pier that are highly non-linear and time-dependent.
The purpose of this study is to investigate the behavior characteristics of new hollow reinforced concrete (RC) bridge pier sections with triangular reinforcement details and to provide the details and reference data. Among the numerous parameters, this study concentrates on the shape of the section, the reinforcement details and the spacing of the transverse reinforcement. Additional eight column section specimens were tested under quasi-static monotonic loading. In this study, the computer program, named RCAHEST (Reinforced Concrete Analysis in Higher Evaluation System Technology), was used. A innovative confining effect model was adopted for new hollow bridge pier sections. This study documents the testing of new hollow RC bridge pier sections with triangular reinforcement details and presents conclusions based on the experimental and analytical findings.
The purpose of this study was to investigate the performance of new hollow reinforced concrete (RC) bridge pier sections with triangular reinforcement details. The proposed triangular reinforcement details are economically feasible and rational and facilitate shorter construction periods. A model of pier sections with triangular reinforcement details was tested under quasi-static monotonic loading. As a result, proposed triangular reinforcement details was equal to existing reinforcement details in terms of required performance. In the companion paper, the parametric study for the performance assessment of new hollow RC bridge pier sections with triangular reinforcement details is performed.
이 연구의 목적은 면외방향으로 반복하중을 받는 철근콘크리트 벽식 교각의 지진거동을 파악하고 합리적이면서 경제적인 내진설계기준을 개발하는데 있다. 정확하고 올바른 성능평가를 위하여 신뢰성 있는 비선형 유한요소해석 프로그램을 사용하였다. 사용된 프로그램은 철근콘크리트 구조물의 해석을 위한 RCAHEST이다. 유한요소로서는 면내회전강성도를 갖는 4절점 평면 쉘요소가 사용되었다. 두께방향에 대한 철근과 콘크리트의 재료성질을 고려하기 위하여 층상화기법이 도입되었다. 재료적 비선형성에 대해서는 균열콘크리트에 대한 인장, 압축, 전단모델과 콘크리트 속에 있는 철근모델을 조합하여 고려하였다. 신뢰성 있는 실험결과와 비교를 통하여 이 논문의 제안방법이 면외방향으로 반복하중을 받는 철근콘트리트 벽식 교각의 내진성능평가에 적합한 방법임을 입증하고자 한다.
본 연구는 충진교각의 시공시 발생되는 수화열에 따른 문제점을 보완하고 중장지간 교량의 시공성을 위하여 이용되는 중공 철근콘크리트 기둥의 내진성능 평가에 관한 Quasi-static 실험이다 사용된 실험변수는 축하중 내진설계유무에 따른 띠철근 간격, 변위 제어 하중형태 등을 채택하였다 RC기둥시험체는 수원에 위치한 하갈교의 교각을 1/3.4 의 축소모델로 하여 등단면 중공단면형태의 내진설계된 시험체와 내진설계되지 않은 시험체를 각각 4개, 2개 유리섬유로 보강된 시험체 1개, 총 7개를 제작하였으며 소성힌지 구간에서의 띠철근의 간격은 1.8cm 및 2.3cm 이었다 실험변수에 따른 내진 및 비내진 시험체의 내진성ㄴㅇ 검토를 위하여 하중-변위 이력특성 연성능력 강도감소, 강성감소, 에너지흡수능력 등가점성계수등을 실험적으로 분석.조사하였다 중공단면 콘크리트 교각의 내진성능은 같은 단면적의 충진원형단면과 내진성능이 유사한 것으로 평가되었으며 비내진설계로 시공된 교각도 어느 정도의 연성능력을 확보하고 있는 것으로 조사되었다 그러나 추가의 실험변수에 따른 충분한 실험연구가 요구된다
Even though Korea is located rather far away from the active fault area, it was thought to have never been completely immune from the earthquake hazards. Many historic records and recent Gyeongju seismic indicated that Korea should belong to a moderate or low seismic region. Through the analysis of classification for each type, we have chosen 2 reinforced concrete bridge. This paper presents a seismic performance evaluation of existing 2 circular reinforced concrete pier.
It's effective further to use an easy modeling to reduce an numerical analysis cost. There are three kinds for the way to model a RC(Reinforced Concrete) pier by a FE(Finite Element) modeling, using a Solid element, Plane stress element and Beam element. Pushover analysis was executed to three kinds of modeling and a model was improved to raise the validity to the modeling.