• 제목/요약/키워드: point-braced frame

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Finite Element Modeling and Nonlinear Analysis for Seismic Assessment of Off-Diagonal Steel Braced RC Frame

  • Ramin, Keyvan;Fereidoonfar, Mitra
    • International Journal of Concrete Structures and Materials
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    • 제9권1호
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    • pp.89-118
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    • 2015
  • The geometric nonlinearity of off-diagonal bracing system (ODBS) could be a complementary system to covering and extending the nonlinearity of reinforced concrete material. Finite element modeling is performed for flexural frame, x-braced frame and the ODBS braced frame system at the initial phase. Then the different models are investigated along various analyses. According to the experimental results of flexural and x-braced frame, the verification is done. Analytical assessments are performed in according to three dimensional finite element modeling. Nonlinear static analysis is considered to obtain performance level and seismic behaviour, and then the response modification factors calculated from each model's pushover curve. In the next phase, the evaluation of cracks observed in the finite element models, especially for RC members of all three systems is performed. The finite element assessment is performed on engendered cracks in ODBS braced frame for various time steps. The nonlinear dynamic time history analysis accomplished in different stories models for three records of Elcentro, Naghan and Tabas earthquake accelerograms. Dynamic analysis is performed after scaling accelerogram on each type of flexural frame, x-braced frame and ODBS braced frame one by one. The base-point on RC frame is considered to investigate proportional displacement under each record. Hysteresis curves are assessed along continuing this study. The equivalent viscous damping for ODBS system is estimated in according to references. Results in each section show the ODBS system has an acceptable seismic behaviour and their conclusions have been converged when the ODBS system is utilized in reinforced concrete frame.

Experimental and analytical study in determining the seismic performance of the ELBRF-E and ELBRF-B braced frames

  • Jouneghani, Habib Ghasemi;Haghollahi, Abbas
    • Steel and Composite Structures
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    • 제37권5호
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    • pp.571-587
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    • 2020
  • In this article the seismic demand and performance of two recent braced steel frames named steel moment frames with the elliptic bracing (ELBRFs) are assessed through a laboratory program and numerical analyses of FEM. Here, one of the specimens is without connecting bracket from the corner of the frame to the elliptic brace (ELBRF-E), while the other is with the connecting brackets (ELBRF-B). In both the elliptic braced moment resisting frames (ELBRFs), in addition to not having any opening space problem in the bracing systems when installed in the surrounding frames, they improve structure's behavior. The experimental test is run on ½ scale single-story single-bay ELBRF specimens under cyclic quasi-static loading and compared with X-bracing and SMRF systems in one story base model. This system is of appropriate stiffness and a high ductility, with an increased response modification factor. Moreover, its energy dissipation is high. In the ELBRF bracing systems, there exists a great interval between relative deformation at the yield point and maximum relative deformation after entering the plastic region. In other words, the distance from the first plastic hinge to the collapse of the structure is fairly large. The experimental outcomes here, are in good agreement with the theoretical predictions.

Experimental study of failure mechanisms in elliptic-braced steel frame

  • Jouneghani, Habib Ghasemi;Haghollahi, Abbas;Beheshti-Aval, S. Bahram
    • Steel and Composite Structures
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    • 제37권2호
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    • pp.175-191
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    • 2020
  • In this article, for the first time, the seismic behavior of elliptic-braced moment resisting frame (ELBRF) is assessed through a laboratory program and numerical analyses of FEM specifically focused on the development of global- and local-type failure mechanisms. The ELBRF as a new lateral braced system, when installed in the middle bay of the frames in the facade of a building, not only causes no problem to the opening space of the facade, but also improves the structural behavior. Quantitative and qualitative investigations were pursued to find out how elliptic braces would affect the failure mechanism of ELBRF structures exposed to seismic action as a nonlinear process. To this aim, an experimental test of a ½ scale single-story single-bay ELBRF specimen under cyclic quasi-static loading was run and the results were compared with those for X-bracing, knee-bracing, K-bracing, and diamond-bracing systems in a story base model. Nonlinear FEM analyses were carried out to evaluate failure mechanism, yield order of components, distribution of plasticity, degradation of structural nonlinear stiffness, distribution of internal forces, and energy dissipation capacity. The test results indicated that the yield of elliptic braces would delay the failure mode of adjacent elliptic columns and thus, help tolerate a significant nonlinear deformation to the point of ultimate failure. Symmetrical behavior, high energy absorption, appropriate stiffness, and high ductility in comparison with the conventional systems are some of the advantages of the proposed system.

더블앵글로 접합된 골조의 수평처짐 (Story Drift of a Frame with Column Flange Bolted-Beam Web Welded Double Angle Connections)

  • 양재근;김호근;김기환
    • 한국공간구조학회논문집
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    • 제3권3호
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    • pp.95-103
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    • 2003
  • Frame is one of the most commonly used structural systems for the resistance of applied loads. Many researchers have recently conducted their studies to investigate the effect of several parameters such as the connection flexibility, boundary condition of each support, beam-to-column stiffness ratio. These parameters play important roles on the characteristic behavior of frames. A simplified spring model is proposed to obtain the story drifts of frames with various beam-to-column connection stiffnesses in this research. A point bracing system with adequate spring stiffness is also suggested to establish the relationship between the applied load and the resisting translational spring stiffness within the limit state of story drift.

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Structural Design and Construction of Mega Braced Frame System for Tall Buildings

  • Chung, Kwangryang;Yoo, Seounghoon
    • 국제초고층학회논문집
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    • 제8권3호
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    • pp.169-175
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    • 2019
  • Recently, two unique high rise buildings have been designed and constructed in Korea. The two buildings, which consist of mega braces and mega columns, are 70-story, 105-story high rise buildings. Through two external structural frame systems, it will be analyzed mechanical and structural characteristic mega column and mega brace system in this report. Particularly, the joint has been studied through the analytical method based on the load transfer mechanism at the point where a mega brace and mega column meets.

더블앵글 접합부를 사용한 철골조의 단순해석 모델 (Simplified Analytical Model for a Steel Frame with Double Angle Connections)

  • 양재근;이길영;박정숙
    • 한국공간구조학회논문집
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    • 제6권1호
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    • pp.45-54
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    • 2006
  • A steel frame is one of the most commonly used structural systems due to its resistance to various types of applied loads. Many studies have been conducted to investigate the effects of connection flexibility, support conditions, and beam-to-column stiffness ratio on the story drift of a frame. Based on the results of these studies, several design guides have been proposed. This research has been conducted to predict the actual behavior of a double angle connection, and to establish its effect on the story drift and the maximum allowable load of a steel frame. For these purposes, several experimental tests were conducted and a simplified analytical model was proposed. This simplified analytical model consists of four spring elements as well as a column member. In addition, a point bracing system was proposed to control the excessive story drift of an unbraced steel frame.

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Response modification factor of dual moment-resistant frame with buckling restrained brace (BRB)

  • Abdollahzadeh, Gholamreza;Banihashemi, Mohammadreza
    • Steel and Composite Structures
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    • 제14권6호
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    • pp.621-636
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    • 2013
  • Response modification factor is one of the seismic design parameters to consider nonlinear performance of building structures during strong earthquake, in conformity with the point that many seismic design codes led to reduce the loads. In the present paper it's tried to evaluate the response modification factors of dual moment resistant frame with buckling restrained braced (BRB). Since, the response modification factor depends on ductility and overstrength; the nonlinear static analysis, nonlinear dynamic analysis and linear dynamic analysis have been done on building models including multi-floors and different brace configurations (chevron V, invert V, diagonal and X bracing). The response modification factor for each of the BRBF dual systems has been determined separately, and the tentative value of 10.47 has been suggested for allowable stress design method. It is also included that the ductility, overstrength and response modification factors for all of the models were decreased when the height of the building was increased.

여러개의 파사드리거를 갖는 고층구조물의 응력과 변위 (Forces and Displacements of Highrise Braced Frames with Facade Riggers)

  • 육민혜;정동조
    • 한국전산구조공학회논문집
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    • 제18권2호
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    • pp.181-190
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    • 2005
  • 파사드리거는 아웃리거 구조시스템에 rms거하는 것으로 구조물의 외곽에 설치되는 파사드리거는 구조물의 내부에 수직으로 설치된 가새골조로부터 분리되어 구조물의 외곽에 설치된다. 따라서 이 시스템은 중앙의 코아에 부착되는 아웃리거와는 달리 사재로 인한 내부 동선의 장애가 발생하지 않는 장점이 있다. 리거의 현재에 인접한 슬래브가 파사드리거와 가새골조 사이의 전단력을 전달하며 가새골조와 파사드리거를 지지하는 기둥 사이의 상호작용을 일으킨다. 이 논문에서는 등분포하중과 삼각분포하중, 그리고 구조물 상단에 집중하중이 작용하고 구조물의 외곽에 여러개의 파사드리거가 설치된 가새골조에 대한 근사해석방법을 제시하였으며, 구조모델들을 이용하여 MIDAS프로그램에 의한 결과와 비교하였고 만족할만한 결과를 얻었다. 본 연구에서 제시된 매트릭스 해석방법은 구조물 상단의 수평변위나 가새골조 하단의 전도모멘트와 같은 구조물의 거동에 대한 파사드리거의 영향을 신속하게 평가할 수 있으며 구조물 상단의 변위를 최소화할 수 있는 파사드리거의 최적위치 결정을 위해 유용하게 사용될 수 있을 것이다.

학교 건축물의 내진 보강을 위한 가새 - 높이비에 관한 연구 (A Study on Brace-height Ratio for Seismic Retrofit of School Building)

  • 이화정;변대근;윤성기
    • 한국구조물진단유지관리공학회 논문집
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    • 제24권4호
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    • pp.10-17
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    • 2020
  • 최근 국내에 발생한 지진으로 인해 많은 학교 건물들에 크고 작은 피해가 발생하였다. 학교 건축물은 재난 발생시 대피소로 사용되는 중요 건물로서 비내진 건축물일 경우 여러 방법으로 내진 보강이 진행 중이다. 내진보강 공법 중 내부 철골가새골조형 공법은 비교적 시공이 용이하고 성능이 우수하여 많이 사용되고 있다. 본 연구에서는 기존 철근콘크리트 학교 건물에 철골 가새 골조를 적용하여 수평반복가력해석을 수행하여 최대전단력 및 변위를 비교검토 하였다. 그 결과로 해석 모델의 적정성을 확인하였고, 기존 학교 건축물의 1경간에 대한 가새- 높이비에 따른 효과를 비교 검토하였다. 가새- 높이비 0.3의 모델에서 최대 전단내력과 변위관계에서의 적정성을 확인할 수 있었다. 또한, 실제 비 내진 철근콘크리트 학교 건축물에 철골가새를 적용시켜 가새- 높이비에 따른 비선형정적해석을 수행하여 내진 성능을 검토하였다. 그 결과, 가새- 높이비 0.3에서 부재의 붕괴가 없는 적절한 내진효과를 보이고 있다. 가새 높이의 증가는 최대전단력과 인명안전 수준의 성능점에서 최대 하중을 증가시키는 효과를 나타내고 있으나, 횡강성의 증가로 인한 가새 골조 주변 부재의 붕괴가 발생하므로, 적정한 가새 높이에 따른 내진 보강이 필요하다는 것을 알 수 있었다. 따라서, 기존 학교건축물의 가새 골조의 내진보강 설계에 있어서 가새 높이에 따른 보강해석을 고려한 후 가새 높이를 선정하고 적절한 보강 개수와 보강위치를 정하는 것이 필요한 것으로 사료된다.

여러 개의 파사드리거를 갖는 고층구조물에서 리거의 최적위치 (Optimum Rigger Locations for Highrise Braced Frames with Facade Riggers)

  • 정동조;육민혜;임병택;김석구
    • 한국전산구조공학회논문집
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    • 제20권2호
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    • pp.137-146
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    • 2007
  • 구조물의 거동에 대한 파사드리거의 보강 효과를 검토하고 파사드리거의 최적위치를 추정할 수 있는 수치해석방법이 제시되었다. 구조물 상부의 수평변위를 최소화할 수 있는 파사드리거의 최적위치는 파사드리거의 구속효과에 의한 수평변위 감소량을 극대화함으로서 구할 수 있으며 가새골조와 파사드리거의 휨강성과 전단강성에 의해 크게 영향을 받는다. 본 연구에서는 3가지 형태의 하중, 즉 등분포하중과 삼각분포하중 그리고 구조물 상단에 작용하는 집중하중이 고려되었다. 파사드리거의 최적위치는 무차원 강성변수 ${\omega}$${\beta}$의 함수로서 표현되었으며, 1개부터 4개의 파사드리거를 갖는 구조물을 대상으로 최적위치에 대한 도표를 작성하였다. 비록 본 연구에서 제시된 해석방법이 몇 가지의 가정을 기초로 유도되었으나 고층건물의 초기설계단계에서 파사드리거의 최적위치 결정을 위한 비교적 정확한 정보를 제공할 수 있다고 사료된다.