• 제목/요약/키워드: Buckling-restrained braced 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.

Seismic behavior factors of buckling-restrained braced frames

  • Kim, Jinkoo;Park, Junhee;Kim, Sang-Dae
    • Structural Engineering and Mechanics
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    • 제33권3호
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    • pp.261-284
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    • 2009
  • The seismic behavior of a framed structure with chevron-type buckling restrained braces was investigated and their behavior factors, such as overstrength, ductility, and response modification factors, were evaluated. Two types of structures, building frame systems and dual systems, with 4, 8, 12, and 16 stories were designed per the IBC 2003, the AISC LRFD and the AISC Seismic Provisions. Nonlinear static pushover analyses using two different loading patterns and incremental dynamic analysis using 20 earthquake records were carried out to compute behavior factors. Time history analyses were also conducted with another 20 earthquakes to obtain dynamic responses. According to the analysis results, the response modification factors turned out to be larger than what is proposed in the provision in low-rise structures, and a little smaller than the code-values in the medium-rise structures. The dual systems, even though designed with smaller seismic load, showed superior static and dynamic performances.

Performance-based plastic design of buckling-restrained braced frames with eccentric configurations

  • Elnaz Zare;Mohammad Gholami;Esmail Usefvand;Mojtaba Gorji Azandariani
    • Earthquakes and Structures
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    • 제24권5호
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    • pp.317-331
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    • 2023
  • The buckling-restrained braced frames with eccentric configurations (BRBFECs) are stable cyclic behavior and high energy absorption capacity. Furthermore, they have an architectural advantage for creating openings like eccentrically braced frames (EBFs). In the present study, it has been suggested to use the performance-based plastic design (PBPD) method to calculate the design base shear of the BRBFEC systems. Moreover, in this study, to reduce the required steel material, it has been suggested to use the performance-based practical design (PBPD) method instead of the force-based design (FBD) method for the design of this system. The 3-, 6-, and 9-story buildings with the BRBFEC system were designed, and the finite element models were modeled. The seismic performance of the models was investigated using two suits of ground motions representing the maximum considered earthquake (MCE) and design basis earthquake (DBE) seismic hazard levels. The results showed that the models designed with the suggested method, which had lower weights compared to those designed with the FBD method, had a desirable seismic performance in terms of maximum story drift and ductility demand under earthquakes at both MCE and DBE seismic hazard levels. This suggests that the steel weights of the structures designed with the PBPD method are about 13% to 18% lesser than the FBD method. However, the residual drifts in these models were higher than those in the models designed with the FBD method. Also, in earthquakes at the DBE hazard level, the residual drifts in all models except the PBPD-6s and PBPD-9s models were less than the allowable reparability limit.

역강성 설계법을 이용한 비좌굴 가새골조시스템의 내진설계에 관한 연구 (tudy on Seismic Design of Buckling Restrained Braced Frame System Using Inverse Stiffness Method)

  • 김세현;박성수
    • 한국구조물진단유지관리공학회 논문집
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    • 제10권3호
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    • pp.106-114
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    • 2006
  • 본 논문에서는 역강성법을 비좌굴 가새골조시스템의 내진설계에 적용하여 목표 변위를 만족시키는 비좌굴 가새의 단면적을 산정하였으며, 기존 연구와 비교하여 타당성을 검토하였다. 본 설계 방법은 개념이 직관적이고 적용이 간편하며, 고차모드 고려가 가능하고 각 층의 연성도를 개별적으로 조절할 수 있는 장점이 있다. 각 모델에 본 설계법을 적용한 결과, 전반적으로 목표변위 증가에 따라 가새 단면적이 감소하지만 층수와 연성도의 증가에 따라 일부층에서 오히려 가새 단면적이 증가하는 것을 확인하였다. 또한 항복 후 강성비의 변화가 단면적에 끼치는 영향은 가새의 항복 후 강성비가 작은 경우 더 민감한 차이를 보이는 것으로 나타났다.

등가 에너지 개념을 이용한 비좌굴 가새골조의 내진설계 (Seismic Design of Buckling-Restrained Braced frame Using Equivalent Energy Concept)

  • 김진구;최현훈;원영섭
    • 한국지진공학회논문집
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    • 제7권3호
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    • pp.47-55
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    • 2003
  • 본 연구에서는 등가 에너지 개념에 근거하여 비좌굴 가새골조의 간편한 내진설계방법을 제안하였다. 단자유도계로 치환된 구조물의 지진 입력에너지를 응답 스펙트럼으로부터 구한 후, 탄성에너지와 소성에너지를 등가 에너지 개념을 이용하여 산정한다. 이렇게 구한 소성에너지를 분배비에 따라 각 층에 분배하고, 모든 소성에너지는 가새에 의하여 소산된다고 가정하여 각 가새의 단면적을 산정할 수 있다. 제안된 방법을 검증하기 위하여 3층, 6층, 20층 가새골조를 제안된 방법으로 주어진 목표변위를 만족하도록 설계하고, 인공지진을 이용하여 결과를 검증하였다. 해석결과에 의하면 저층 건물의 최상층 변위는 비교적 목표변위를 만족하였으나, 20층 건물의 최상층 변위는 목표변위보다 매우 작아 가새가 과다하게 설계된 것으로 나타났다.

초탄성 형상기억합금을 활용한 자동복원 가새 프레임 구조물의 내진성능 평가 - 비선형 동적해석 (Seismic Performance Evaluation of Recentering Braced Frame Structures Using Superelastic Shape Memory Alloys - Nonlinear Dynamic Analysis)

  • 반우현;허종완;주영훈
    • 대한토목학회논문집
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    • 제40권4호
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    • pp.353-362
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    • 2020
  • 우리나라는 비교적 지진에 대해 안전한 지역으로 인식되고 있었다. 그러나 최근 경주와 포항에서 발생한 지진으로 인한 시설물에 상당한 피해가 발생함에 따라 이미 건축된 구조물의 유지, 보수에 관한 관심이 높아지고 있다. 따라서 기존 구조물에 적용 가능한 제진기술에 대한 관심 또한 높아지고 있다. 그러나 제진기술은 강한 지반 운동으로 인한 장치의 손상으로 인하여 성능 저하의 문제점이 있다. 최근 이러한 문제를 해결하기 위해, 가새 부재에 응력을 제거함으로써 자동복원이 가능한 초탄성 형상기억합금을 적용하는 연구가 이뤄지고 있다. 따라서 본 연구에서는 초탄성 형상기억합금을 적용한 비좌굴 가새 부재를 활용하여 자동복원 프레임 구조물을 구성하고 비선형 동적 해석을 통하여 초탄성 형상기억합금의 재료적 우수성과 구조물의 내진성능을 평가 및 검증하였다.

Modal pushover analysis of self-centering concentrically braced frames

  • Tian, Li;Qiu, Canxing
    • Structural Engineering and Mechanics
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    • 제65권3호
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    • pp.251-261
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    • 2018
  • Self-centering concentrically braced frames (SCCBFs) are emerging as high performance seismically resistant braced framing system, due to the capacity of withstanding strong earthquake attacks and promptly recovering after events. To get a further insight into the seismic performance of SCCBFs, systematical evaluations are currently conducted from the perspective of modal contributions. In this paper, the modal pushover analysis (MPA) approach is utilized to obtain the realistic seismic demands by summarizing the contribution of each single vibration mode. The MPA-based results are compared with the exact results from nonlinear response history analysis. The adopted SCCBFs originate from existing buckling-restrained braced frames (BRBF), which are also analyzed for purpose of comparison. In the analysis of these comparable framing systems, interested performance indices that closely relate to the structural damage degree include the interstory drift ratio, floor acceleration, and absorbed hysteretic energy. The study shows that the MPA approach produces acceptable predictions in comparison to the exact results for SCCBFs. In addition, the high-modes effect on the seismic behavior increases with the building height, and is more evident in the SCCBFs than the BRBFs.

Simplified Algorithm of the Novel Steel-concrete Mixed Structure under Lateral Load

  • Li, Liang;Li, Guo-qiang;Liu, Yu-shu
    • 국제초고층학회논문집
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    • 제1권4호
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    • pp.247-254
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    • 2012
  • In order to improve the seismic behaviors of traditional steel-concrete mixed structure, a novel steel concrete mixed structure consisting of steel frames braced with buckling restrained braces (BRBs) and a concrete tube is proposed. Based on several assumptions, the simplified mechanical model of the novel mixed structure is established, and the shear and bending stiffness formulas of the steel frames, BRBs and concrete tube are respectively introduced. The equilibrium differential equation of the novel mixed structure under horizontal load is developed based on the structural elastic theory. The simplified algorithms to determine the lateral displacement and internal forces of the novel mixed structure under the inverted-triangle distributed load, uniformly load and top-concentrated load are then obtained considering several boundary conditions and compatible deformation conditions. The effectiveness of the simplified algorithms is verified by FEM comparison.

Probabilistic seismic assessment of mega buckling-restrained braced frames under near-fault ground motions

  • Veismoradi, Sajad;Darvishan, Ehsan
    • Earthquakes and Structures
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    • 제15권5호
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    • pp.487-498
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    • 2018
  • Buckling-restrained braces are passive control devices with high level of energy dissipation ability. However, they suffer from low post-yield stiffness which makes them vulnerable to severe ground motions, especially near-field earthquakes. Among the several methods proposed to improve resistance of BRB frames, mega-brace configuration can be a solution to increase frame lateral strength and stiffness and improve distribution of forces to prevent large displacement in braces. Due to the limited number of research regarding the performance of such systems, the current paper aims to assess seismic performance of BRB frames with mega-bracing arrangement under near-field earthquakes via a detailed probabilistic framework. For this purpose, a group of multi-story mega-BRB frames were modelled by OpenSEES software platform. In the first part of the paper, simplified procedures including nonlinear pushover and Incremental Dynamic Analysis were conducted for performance evaluation. Two groups of near-fault seismic ground motions (Non-pulse and Pulse-like records) were considered for analyses to take into account the effects of record-to-record uncertainties, as well as forward directivity on the results. In the second part, seismic reliability analyses are conducted in the context of performance based earthquake engineering. Two widely-known EDP-based and IM-based probabilistic frameworks are employed to estimate collapse potential of the structures. Results show that all the structures can successfully tolerate near-field earthquakes with a high level of confidence level. Therefore, mega-bracing configuration can be an effective alternative to conventional BRB bracing to withstand near-field earthquakes.

무용접 좌굴방지재로 보강한 철골 가새의 구조거동 (Structural Behavior of Steel Brace Strengthened with Non-welded Buckling Restraint Casing)

  • 김선희;문지영;최성모
    • 한국강구조학회 논문집
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    • 제27권2호
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    • pp.207-217
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    • 2015
  • 철골 중심 가새골조는 최소의 물량으로 건물의 횡력에 대한 저항력을 확보할 수 있는 매우 효과적인 시스템이다. 그러나 중심가새 골조는 탄성거동을 전제로 풍하중에 대한 구조시스템으로 비탄성거동을 수반하는 지진하중에 대해서는 가새 좌굴 이후의 에너지 소산능력저하와 반복하중 하에 가새 및 접합부의 취성파단 가능성이 제기된다. 그로 인해 가새의 좌굴이 최초로 발생한 층에 소성변형이 집중되어 연약층 발생에 의한 건물의 붕괴로 이어질 가능성이 높다. 따라서 본 논문에서는 기 설치된 H형 가새를 무용접 냉간성형보강재로 보강하여 휨-좌굴을 억제하고 인장력과 압축력에 동일한 강도를 확보하는 보강안에 대한 연구를 진행하였다.