수평하중을 받는 테두리보가 있는 플랫 플레이트 시스템의 유효보폭계수

Effective Beam Width for Flat-Plate Systems having Edge Beams under Lateral loads

초록

The purpose of this study is to propose frame analysis method for flat plate slabs having edge beam under lateral loads. Flat plate system is defined as the system only with slab of uniform thickness and column. However, the slab system generally incorporate edge beams at exterior connection in actual design. ACI 318 (2005) allows three methods for conducting flat plate system analysis subjected to lateral loads. There are the finite element method (FEM), the equivalent frame method (EFM), and the effective beam width method (EBWM). Among methods, the EBWM enables us to analyze practically by substituting the actual slab to beam element. In this model, the beam element has a thickness equal to that of the slab, and effective beam width equal to some fraction of the slab transverse width. However, the established EBWM was generally proposed for variables of geometry or stiffness reduction factor and seldom proposed for the effect of edge beams. This study verifies that, in the case of flat plate system having edge beams at exterior connections, the lateral stiffness is considerably larger than without edge beams. Therefore it need to analysis method for considered the effect of edge beams. In this study, an analysis model is proposed for the flat plate system having edge beams under lateral loads by considering the effect of edge beams. To verify the accuracy of proposed model, this study compared results of the proposed EBWM with results of FEM of flat plate systems having edge beams under lateral loads. Also, the proposed approach is compared with experimental results of former research.

키워드

effective beam widthflat-plate systemedge beamlateral loadeffective beam widthflat-plate systemedge beamlateral load유효보폭플랫플레이트테두리보수평하중
제목
수평하중을 받는 테두리보가 있는 플랫 플레이트 시스템의 유효보폭계수
제목 (타언어)
Effective Beam Width for Flat-Plate Systems having Edge Beams under Lateral loads
저자
한상환조자옥박영미
DOI
10.4334/JKCI.2008.20.2.213
발행일
2008-04
저널명
콘크리트학회 논문집
20
2
페이지
213 ~ 219