If scour is occurred at shallow foundation of bridge, seismic performance of the bridge will be reduced. In order to evaluate accurate seismic response of bridge according to scour depths, modeling of foundation reflecting scour effect is important. In this study, taking into account the effect of the reduction in embedment depth of the shallow foundation by scouring, the soil around the foundation is modelled as an equivalent soil spring with various stiffness. Seismic fragility analyses for 3 types of bridges subjected to 4 types of ground motions classified into Site Class A, B, C, D are evaluated according to several scour depths. From the fragility analysis results, it can be observed that the deeper the scour depth, the higher probability of exceeding damage states. Also, seismic failure probability of asymmetric bridge is higher than that of symmetric bridge.
Frequent unstable natural disasters worldwide in recent year caused damage to large power plants, high-rise buildings, dams and public facilities, resulting in a growing sense of anxiety among people. This is result in the increase of concern for the safety of residential as well as public infrastructure. Considering this growing concern for the public infrastructure a systematic safety evaluation is require. Thus, in this paper, the fragility of weir structure by considering the scour effect of flood was the focused of study. The weir structure in this study was located in Daegu city; it served as the power and water supply and flood prevention. The study was performed by conducting penetration analysis on the variables of the adjacent ground.
교량지점에서의 총세굴깊이는 세가지 성분 즉, 장기하상변동, 단면축소세굴, 그리고 국부세굴로 구성된다. 그러므로 장기하상변도의 분석은 교량지점에서의 총세굴깊이를 산정하는데 있어 중요하다고 할 수 있다. 본 연구에서는 CHARIMA모형과 HEC-6모형을 사용하여 남한강교 지점에서의 장기하상변동을 분석하였다. 분석결과, 5년 동안 정상류로 물이 흐를 경우 CHARIMA모형은 약 45cm의 하상고의 상승을 보여준 반면 HEC-6모형은 약 5cm정도 하상고가 저
최근에 국내외적으로 발생한 교각과 교대에서의 세굴로 인한 교량의 붕괴는 보다 나은 세굴깊이 산정방법에 대한 필요성을 강조하고 있다. 본 논문에서는 미국 연방고속도로국에서 발간한 HEC-18에서 제시하는 절차를 바탕으로 1차원 모형인 WSPRO 모형과 HEC-2 모형, 그리고 2차원 모형인 TABS-MD 모형을 사용하여 남한강에 위치하고 있는 남한강교에 대한 수리분석을 비교하였다. 본 연구에서는 또한 1차원 및 2차원 모형으로부터 구한 수리량을 사용하여