교량의 내하력을 확인하기 위해서는 외관상태 점검 및 차량재하시험, 유한요소해석 수행이 필요하 다. 규모가 작은 교량은 시간 혹은 비용적인 문제로 인해, 상기 과업을 수행하여 내하력을 확인하기가 어려운 점이 있다. 본 연구에서는 플랫폼을 통해 교량의 정보를 등록하여 데이터의 분석에 의해 추정 내하성능을 제공하기 위한 연구를 수행하였다. 추정 내하성능 결과는 점검진단 보고서 상의 안전성 평 가 데이터를 수집하여 통계 분석에 의한 결과를 제공한다.
This paper evaluates the load carrying capacity by investigating the current state of the bridge considering the strengthening effect. This study suggests effective bridge asset management plan based on the evaluation results of load carrying capacity of highway bridges.
In the both loading test results and analytical results of specimens with tapered threaded splices, the good agreement of load-carrying capacity are shown. Therefore the proposed model for tapered threaded splices can be applied to the analysis of structure with tapered threaded splices.
The limit state design code for reliability-based design criteria was enacted in January 2012. And, it was necessary to consider new load carrying capacity method for new design code. Therefore, LRFR and ballowable stress design rating was applied to load carrying capacity and compared with the result. In addition, this research consists of ambient vibration measurement, experimental modal analysis, correction of the initial FE model based on the identified modal properties, and estimation of the load carrying capacity using the updated FE model
Conventionally, the load carrying capacities of bridges have been evaluated from proof loading tests with test trucks by measuring static and dynamic response, such ad deflections or strains under known loading conditions. However, load carrying capacity of bridges was evaluated using the updated finite element (FE) model. To solve these problems, deflections or strains can not represent the bridge's health status as the bridge gets deteriorated. For example, deteriorated boundary condition results in small deflection or strain. The proposed method consists of ambient vibration measurement, experimental modal analysis, correction of the initial FE model based on the identified modal properties, and estimation of the load carrying capacity using the updated FE model. The proposed method has been verified through field tests on a prestressed concrete girder bridge by comparing with the result of the conventional truck loading tests.
본 논문에서는 FR-ECC의 수축특성과 균열도입 전후의 내동해성을 평가하였으며, FR-ECC를 활용한 다층복공구조의 지수성능과 박리박락저항성, 또한 FR-ECC로 단면복구 된 보부재의 휨성능을 평가하였다. 그 결과, FR-ECC는 소성수축에 의한 균열 및 건조수축에 의한 길이변화율이 기존의 보수모르터에 비해 크게 저감되었으며, 구속상태에서의 건조수축에 대한 균열저항성이 개선됨을 알 수 있었다. 또한, FR-ECC는 내동해성이 매우 우수하였으며, 균열도입 후에도 동결융해작용에 의한 인장성능의 저하는 확인되지 않았다. 한편, FR-ECC로 보수된 휨부재는 초기균열모멘트, 항복모멘트 및 극한모멘트 등의 휨성능이 증대되었으며, 멀티플크랙 특성에 의해 휨파괴시까지 균열폭을 안정적으로 제어할 수 있었다.