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박강근 한국전산구조공학회 2004 전산구조공학 Vol.17 No.2
강체스프링 모델은 분할된 요소를 강체라고 가정하고, 각 요소는 스프링 시스템을 연결되어 있다고 생각하여 구조물을 해석하는 방법이다. 먼저 보의 휨 문제에 대한 강체스프링 모델의 개념을 설명하고자 한다. (중략)
Design and Analysis on The Connections of RC Precast Large Panel
박강근,Park, Kang-Geun 한국공간구조학회 2006 한국공간구조논문집 Vol.6 No.2
본 연구에서는 철근콘크리트 프리캐스트 대형판의 접합부 설계방법 및 해석방법에 대해서 연구를 수행하였다. 접합부의 설계방법은 수평접합부와 수직접합부의 구조적 거동에 대한 안정성 및 일체성을 확보하기 위한 설계법을 제시하였고, 접합부의 해석은 강체스프링 모델에 의한 탄소성해석을 수행 하였다. Precast large panel structures have various connection system such as the horizontal slab-to-wall connection, the vertical wall to wall connection, horizontal slab-to-slab connection, etc. Horizontal connection is connected by vertical tie bars, and vertical joint is connected loop bars and shear keys. The basic function is equalized deformations on later forces and the entire wall panel assembly acts as monolithic actions. Under lateral load some slip occurs in almost vertical connections. The shape and detail of precast connections are very important to the monolithic behavior of overall structures. The paper is a study on the design method and new elasto-plastic analysis of the connections by rigid-bodies spring model.
박강근,이동우,Park, Kang-Geun,Lee, Dong-Woo 한국공간구조학회 2016 한국공간구조학회지 Vol.16 No.2
Cable structures are lightweight structures of flexible type, cable members have only axial stiffness related to tension, they can carry neither bending nor compression. This study is the analysis of cable truss systems are composed of upper and low cables by connecting bracing cables, the structural principle is based on a tensegrity system by using bracing tension members, discontinuous compression members and continuous tension members. A hanging roof of cable truss system is too flexible against vertical loads, most cable members are stabilized by connecting the prestressed upper and lower cable by bracing cables. A cable truss roof system is formed by adding a set of cables with reverse curvature to the suspension cables. With the sets of cables having opposite curvature to each other, cable truss is able to carry vertical load in both upward and downward direction with equal effectiveness, and then a cable truss acts as load bearing elements by the assemble of ridge cables, valley cables and bracing cables. This paper will be shown the geometric non-linear analysis result of cable truss systems with various sag ratio for deflections and tensile forces, the analytical results are compared with the results of other researchers.
박강근,윤성기,Park, Kang-Geun,Yoon, Sung-Kee 한국공간구조학회 2008 한국공간구조학회지 Vol.8 No.2
막 구조는 형태의 다양성, 막의 가벼움과 내구성, 투광성 및 균질성 때문에 현대 건축물에 다용하게 사용되어 새로운 건축세계를 열어가고 있다. 본 논문은 대공간 건축 구조물에 주로 사용되는 유리섬유 막 재료의 역학적 특성에 대한 연구이다. 현재 주로 사용되는 건축용 막 재료의 종류에는 PVC, PVF, PVDF, PTFE, ETFE 막재들이 있다. 본 연구에서는 이러한 건축용 막재료에 대한 역학적 시험 방법을 정립하고, PTFE 코팅 유리섬유 막재에 대한 인장강도, 인열강도 및 반복하중 시험 등을 실시하여 건축용 막 재료의 역학적 특성을 분석하고자 한다. Membrane structures are now used in various ways throughout the world with the merits of free shape, lightness, durability, sunlight transmittance and homogeneous material. The development of new membrane material opened up new possibility for the design of new building structures. Recently it was mainly used PVC, PVF, PVDF, PTFE, ETFE membrane for using the roofing material of membrane structures. Some problems of membrane materials have fire proofing, lack of strength, self cleaning capacity, tear resistance, durability, heat insulation, sound insulation and elasticity. For the solution of this problems, it will be tested the mechanical properties of membrane material about tensile strength, tearing resistance, etc.
라이즈 스팬 비에 의한 200m 허니컴 래티스 돔의 동적 응답 분석
박강근,정미자 한국공간구조학회 2019 한국공간구조학회지 Vol.19 No.2
The objective of this study is to analysis the seismic response of 200m spanned honeycomb lattice domes under horizontal and up-down ground motion of El Centro earthquake. For the analysis of seismic response of the honeycomb lattice domes by rise/span ratio, the time history analysis is used for the estimation of the dynamic response. The low rise lattice dome is less deformed and less stressed than the high rise lattice dome for the earthquake ground motion. The 3-dimensional earthquake response is not significantly different the dynamic response of one directional ground motion. The earthquake response of domes with LRB isolation system is significantly reduced for the asymmetric vertical deformation and the horizontal and vertical accelerations.
300m 단층 래티스 돔의 면진 장치에 대한 지진 반응 해석
박강근,정미자,이동우 한국공간구조학회 2018 한국공간구조학회지 Vol.18 No.3
The objective of this study is to investigate the response reducing effect of a seismic isolation system installed between 300m dome and supports under both horizontal and vertical seismic ground motion. The time history analysis is performed to investigate the dynamic behavior of single layer lattice domes with and without a lead rubber bearing seismic isolation system. In order to ensure the seismic performance of lattice domes against strong earthquakes, it is important to investigate the mechanical characteristics of dynamic response. Horizontal and vertical seismic ground motions cause a large asymmetric vertical response of large span domes. One of the most effective methods to reduce the dynamic response is to install a seismic isolation system for observing seismic ground motion at the base of the dome. This paper discusses the dynamic response characteristics of 300m single layer lattice domes supported on a lead rubber seismic isolation device under horizontal and vertical seismic ground motions.