The purpose of this study is to evaluate the effectiveness of the seismic retrofit performance for a reinforced concrete structure with steel damper. The nonlinear static analysis of the RC frame specimens with and without retrofit using the steel damper was conducted and the reliability of the analysis was verified by comparing the analysis and test results. Using this analysis model and method, additional nonlinear analysis was conducted considering varying stiffness and strength ratios between RC frame and steel damper and the failure mode of RC frame. As the result of the study, the total absorbed energy increased and the damage of RC frame was reduced as stiffness and strength ratios increased. The seismic retrofit performance, evaluated by means of the yield strength, increasing ratio of the absorbed energy and damage of the frame, increased linear proportionally with the increase of the strength ratio. In addition, the seismic retrofit performance was stable for stiffness ratios larger than 4~5. The energy absorption capacity of the frame governed by shear failure was better than that of the frame governed by flexure failure.
본 논문에서는 효과적인 제진설계를 구현하기 위한 설계기술 개발의 일환으로 최근 제안된 Exo-type 감쇠시스템을 활용하여 15층과 20층의 연구 대상 건물을 대상으로 감쇠시스템의 최적 강성비와 적용된 감쇠장치의 최적 항복비에 따른 철근콘크리트 라멘조 건물의 제진 효과를 검토해 보았다. 해석결과, Exo-type 감쇠시스템을 3개층 적용 시에는 대상 건물 15층과 20층 모두 밑면전단력과 최상층 최대응답변위 감소라는 관점에서 유효한 제진효과를 얻기 위해서는 Exo-type 감쇠시스템과 대상 건물의 강성비는 7.0 이상 확보를 하여야 하며, 감쇠시스템에 적용된 감쇠장치의 항복비는 대상 건물의 층전단력의 약 8.0% 이상 확보할 필요가 있는 것으로 나타났다. 또한, Exo-type 감쇠시스템을 5개층 적용 시에는 대상 건물 15층과 20층 모두 Exo-type 감쇠시스템과 대상 건물의 강성비는 2.5 이상 확보 하여야 하며, 감쇠시스템에 적용된 감쇠장치의 대상 건물의 층전단력의 약 3.5%이상 확보할 필요가 있는 것으로 나타났다.
In this study, the non-linear seismic response analysis of the 2F piloti type building model with varying stiffness and strength distribution between soft-weak story(1F) and upper story(2F). The standard model, whose stiffness and strength ratio of the first story is 10% and 100% comparing the upper story respectively, suffered from shear failure of the core wall on the first story. Otherwise, the models with decreased stiffness or strength ratio of the first story damaged more than the standard model and the lack of the strength was more impactful. The model with improved strength contributed to reduce damage on the first story, while the improved stiffness only was not effective on the reduction of the damage level. Overall, in case that the strength and stiffness ratio of the first story increased, damage distributed in balance along the story.
Recently, the demand for the damper-frame system has increased due to earthquake damage. And related researches are increasing in response while the researches considering the various design parameters such as strength and stiffness ratios between the damper and frame are insufficient. Therefore, in this study, propose for design characteristics value of the damper-frame system by setting the parameters related to strength and stiffness ratios between two systems and prediction formula through nonlinear dynamic analysis.
In this paper, the seismic performance of framed building with porous hysteretic damping system is examined by comparing the beam-column stiffness ratio. Analytical results show that in case of maximum displacement, acceleration, and shear force, the decrease in ρ=2.00 is larger than the decrease in ρ=0.10. But results appeared differently according to a number of stories that damper installed.
전단벽식 구조물의 내진설계 시 강막가정을 적용한 모델의 횡변위 응답은 실제 거동과 무시할 수 없는 차이를 발생함으로 휨강성을 포함한 바닥판의 모형화 여부가 구조물의 거동에 어떠한 영향을 미치는가에 대한 연구가 요구된다. 전형적인 15층 판상형 전단벽식 아파트를 예제구조물로 선정하여 MIDAS-ADS2008 프로그램을 이용하여 강막가정을 적용한 RD모델, 바닥판을 모형화하여 면외 강성을 고려한 DB모델 그리고 면내외 강성을 고려한 SRC모델을 대상으로 해석하였다. KBC2005 기준을 이용하여 등가정적해석과 응답스팩트럼 해석에 의한 지진하중에 대한 3개의 모델의 응답을 비교분석하였다. 바닥판의 강성비를 10%, 30% 및 50% 삼단계로 적용하여 각 단계별 비교 값으로 각 모델의 횡적거동의 차이를 분석하였다.