Abstract
본 연구의 목적은 전단경간비에 따른 합성지하벽의 거동을 실험적으로 연구하고 유한요소해석 프로그램인 ADINA를 활용하여 합성지하벽 (Composite Basement Wall, CBW)의 비선형 거동의 예측이다. 특히 각 층 바닥 부근과 같이 콘크리트가 압축응력상태일 때의 합성벽의 거동을 연구하였다. 특히 강재와 콘크리트가 접촉되는 부분의 모델링 방법에 따른 해석방법의 적합성을 검토하고자 하였다. 콘크리트 벽체부분이 압축응력상태에 있는 합성지하벽의 거동을 이해하기 위하여 합성지하벽에 대한 실험을 실시하고 ADINA 프로그램을 이용하여 유한요소해석을 실시하였다. 해석의 편의를 위하여, 철근은 별도의 독립 요소로 모델링하지 않고, 콘크리트에 등분포되어 콘크리트와 함께 거동하는 것으로 하고 모든 요소는 소성거동을 표현하기 위하여 이선형 모델로 하였다. 강재와 콘크리트의 접촉면과 관련해서는 접촉면의 연결조건에 따라, AGO, SEGO-T 그리고 SEGO-NT로 모델링하여 해석을 실시한 뒤 각 조건에 따른 응력흐름과 집중정도를 관찰하고 그 결과를 실험결과와 비교하였다. 연구결과, 합성지하벽은 전단경간비가 비록 1에 가깝더라도, 강재의 소성변형에 의해 충분히 연성적인 거동을 보이는 것으로 나타났으며, 이와 같은 거동을 묘사하기 위하여 ADINA 프로그램을 이용하여 콘크리트와 강재 및 스터드볼트의 비선형특성을 고려하고 접촉면 요소로서 강재와 콘크리트의 접합면을 모델링하여 해석한 결과 접촉면연결과 모든 절점공유 옵션을 사용한 모델을 적용할 경우, 실험결과와 근사한 예측이 가능한 것으로 나타났다. The objective of this paper is to study the structural behavior of Composite Basement Wall (CBW) according to shear span-to-depth ratio through an experiment and predict the nonlinear behavior of CBW by using ADINA program widely has been being used for FE analysis. Especially, this study focuses on the part of CBW in which the Reinforced Concrete (RC) is under compression stress; At the region of CBW around each floor, RC part stresses by compressive force when lateral press by soil acts on the wall. The contact condition between RC wall and steel (H-Pile) including stud connector is main factor in the analysis since it governs overall structural behavior. In order to understand the structural behavior of CBW whose RC part is under compressive stress, an experimental work and finite element analysis were performed. Main parameter in the test is shear span-to-depth ratio. For simplicity in analysis, reinforcements were not modeled as a seperated element but idealized as smeared to concrete. All elements were modeled to have bi-linear relation of material properties. Three type of contact conditions such as All Generate Option (AGO), Same Element Group Option with Tie(SEGO-T) and Same Element Group Option with Not tie(SEGO-NT) were considered in the analysis. For each analysis, the stress flow and concentration were reviewed and analysis result was compared to test one. From the test result, CBW represented ductile behavior by contribution of steel member even if it had short shear span-to-depth ration which is close to "1". The global composite behavior of CBW whose concrete wall was under compressive stress could be predicted by using contact element in ADINA program. Especially, the modeling by using AGO and SEGO-T showed more close relation on comparing with test result.
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