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벽식구조물의 구조요소별 횡변위 제어 능력 평가The Lateral Displacement Control Evaluation by Structural Elements of Shear Wall Structures

Other Titles
The Lateral Displacement Control Evaluation by Structural Elements of Shear Wall Structures
Authors
이유미정철규유석형신성우
Issue Date
2007
Publisher
대한건축학회
Keywords
Tall Building; Shear Wall-Outrigger System; Structural Elements; Interaction of Each Wall Element; Lateral Displacement Control; 초고층건물; 전단벽-아웃리거 시스템; 구조요소; 벽요소의 조합상관관계; 변위제어 능력; Tall Building; Shear Wall-Outrigger System; Structural Elements; Interaction of Each Wall Element; Lateral Displacement Control
Citation
대한건축학회논문집 구조계, v.23, no.10, pp 11 - 18
Pages
8
Indexed
KCI
Journal Title
대한건축학회논문집 구조계
Volume
23
Number
10
Start Page
11
End Page
18
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/28495
ISSN
1226-9107
Abstract
Shear wall system with outrigger is most popular structural system for controlling lateral displacement of tall buildings. This system have core wall, outriggers, external walls, internal walls, and partition walls called structural elements. For the control of top drift in tall building structure under lateral loads is the right way that increase thickness of core wall and a number of outrigger. However, numbers of outrigger require excessive construction duration and quantity of resource and using area is on the decrease owing to thick core wall. Also, there is no practical and economic guidelines for adequate design of structural elements to resist lateral loads, except outrigger and core wall. On this account, it is necessary to investigate the effects of structural elements and interaction of each wall element to lateral displacement. In this study, thickness of structural wall as well as core wall, outrigger, interaction of each wall, and design strength are used as design variables. Analysis of example structures which are a plane figure on Y type and 60 stories shear wall-outrigger system were performed and compared top drift along design variables. As results, structural elements are effective factors to control lateral displacement and core wall-external wall integration is optimum system.
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공과대학 (건축공학부)
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