• 제목/요약/키워드: special steel moment frame

검색결과 64건 처리시간 0.023초

철근콘크리트 보-기둥 접합부의 비탄성 회전 능력에 대한 성능 평가 (Performance Evaluation of Inelastic Rotation Capacity of Reinforced Concrete Beam-Column Connections)

  • 이기학;우성우
    • 한국지진공학회논문집
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    • 제11권5호
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    • pp.1-9
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    • 2007
  • 본 논문에서는 철근콘크리트 모멘트 골조의 보-기둥 접합부에 대한 비탄성 회전 능력의 성능을 조사한 연구 결과를 하고 있다. 총 91개의 보-기둥 접합부 실험체에 대해 상세히 조사되었으며, 그 중 28개의 실험체는 ACI 318-02의 상세 요구에 기초하여 특수 모멘트 골조 접합부로서 분류되었다. AISC-97 내진 기준에서 철골 모멘트 골조 접합부를 위해 정의된 허용기준이 분류된 철근콘크리트 모멘트 골조의 접합부에 대해 평가하기 위해서 사용되었다. 특수 모멘트 골조 접합부에 대한 설계 상세를 만족하는 28개의 실험체 중 27개의 특수 모멘트 골조 접합부가 충분한 강도를 가지고 있었으며, 급격한 강도 감소 없이 0.03 rad.의 소성 회전에 대해 연성 거동을 발휘할 수 있음을 보여 주었다. 접합부의 전단 강도, 기둥과 보에 대한 휨 강도 비율, 접합부내에서의 횡방향 철근비 등에 대한 제한이 보-기둥 접합부의 만족스런 내진 성능을 보여주는데 중요한 역할을 하였다.

Evaluation of ground motion scaling methods on drift demands of energy-based plastic designed steel frames under near-fault pulse-type earthquakes

  • Ganjavi, Behnoud;Hadinejad, Amirali;Jafarieh, Amir Hossein
    • Steel and Composite Structures
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    • 제32권1호
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    • pp.91-110
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    • 2019
  • In the present study, the effects of six different ground motion scaling methods on inelastic response of nonlinear steel moment frames (SMFs) are studied. The frames were designed using energy-based PBPD approach with the design concept using pre-selected target drift and yield mechanism as performance limit state. Two target spectrums are considered: maximum credible earthquake spectrum (MCE) and design response spectrum (DRS). In order to investigate the effects of ground motion scaling methods on the response of the structures, totally 3216 nonlinear models including three frames with 4, 8 and 16 stories are designed using PBPD approach and then they are subjected to ensembles of ground motions including 42 far-fault and 90 near-fault pulse-type records which were scaled using the six different scaling methods in accordance to the two aforementioned target spectrums. The distributions of maximum inter-story drift over the height of the structures are computed and compared. Finally, the efficiency and reliability of each ground motion scaling method to estimate the maximum nonlinear inter-story drift of special steel moment frames designed by energy-based PBPD approach are statistically investigated, and the most suitable scaling methods with the lowest dispersion for two groups of earthquake ground motions are introduced.

Assessment of seismic design coefficients for composite special moment frames with reinforced concrete columns and steel beams: Evaluation of code recommendations

  • Elmira Tavasoli Yousef Abadi;Mohammad T. Kazemi
    • Steel and Composite Structures
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    • 제50권6호
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    • pp.643-658
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    • 2024
  • The main aim of this study is to quantify the code seismic design coefficients of the RCS system, which consisted of reinforced concrete columns and steel beams, based on the FEMA P-695 methodology. The underlying intention is to evaluate the seismic performance of the RCS system at the system level rather than the connection level. A set of 24 archetype buildings with a various number of stories, beam span lengths, gravity load levels, and seismic load levels are selected and designed based on the prevailing code requirements. Nonlinear analytical models are developed and validated by experimental tests. The pushover and response history dynamic analyses are conducted to evaluate the required data in the performance quantification process. The results show that the design coefficients suggested by the code are acceptable. However, the level of conservatism is very high. Thus, it is possible to use a larger R-factor in the design process or make some relaxations in the design requirements related to this structural system.

Employing a fiber-based finite-length plastic hinge model for representing the cyclic and seismic behaviour of hollow steel columns

  • Farahi, Mojtaba;Erfani, Saeed
    • Steel and Composite Structures
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    • 제23권5호
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    • pp.501-516
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    • 2017
  • Numerical simulations are prevalently used to evaluate the seismic behaviour of structures. The accuracy of the simulation results depends directly on the accuracy of the modelling techniques employed to simulate the behaviour of individual structural members. An empirical modelling technique is employed in this paper to simulate the behaviour of column members under cyclic and seismic loading. Despite the common modelling techniques, this technique is capable of simulating two important aspects of the cyclic and seismic behaviour of columns simultaneously. The proposed fiber-based modelling technique captures explicitly the interaction between the bending moment and the axial force in columns, and the cyclic deterioration of the hysteretic behaviour of these members is implicitly taken into account. The fiber-based model is calibrated based on the cyclic behaviour of square hollow steel sections. The behaviour of several column archetypes is investigated under a dual cyclic loading protocol to develop a benchmark database before the calibration procedure. The dual loading protocol used in this study consists of both axial and lateral loading cycles with varying amplitudes. After the calibration procedure, a regression analysis is conducted to derive an equation for predicting a varying calibrated modelling parameter. Finally, several nonlinear time-history analyses are conducted on a 6-story steel special moment frame in order to investigate how the results of numerical simulations can be affected by employing the intended modelling technique for columns instead of other common modelling techniques.

WUF-W 접합부의 액세스 홀 형상변수 타당성 평가를 위한 경험식 제안 (Empirical Equations for Checking Validity of Access Hole Parameters for WUF-W Connections)

  • 한상환;윤용
    • 한국강구조학회 논문집
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    • 제29권4호
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    • pp.303-310
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    • 2017
  • WUF-W 접합부는 부재의 접합이 모두 용접으로 이루어진 접합부이며, 특수모멘트골조(SMF) 인증접합부 중 하나이다. 하지만 선행 연구들을 통해 일부 WUF-W 접합부 실험체가 4% 층간변위비의 특수모멘트골조(SMF) 요구성능을 만족하지 못하였으며, 이는 액세스 홀 형상과 연관이 있음이 보고되었다. 본 연구에서는 비선형 유한요소 해석을 이용하여 WUF-W 접합부의 요구성능을 만족하기 위한 주요 액세스홀 형상변수의 허용범위를 결정하였다. 또한 WUF-W 접합부 설계과정에서 주요 액세스 홀 형상변수의 타당성을 평가할 수 있는 간단한 경험식을 제안하였다.

복합 슬릿-마찰 감쇠장치가 적용된 철근 콘크리트 특수 모멘트 저항골조의 내진성능 평가 (Seismic Performance Evaluation of Special Reinforced Concrete Moment Resisting Frames With Hybrid Slit-Friction Damper)

  • 이준호;김기철;김진구
    • 한국공간구조학회논문집
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    • 제17권4호
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    • pp.35-42
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    • 2017
  • This study develops a new hybrid passive energy dissipation device for seismic rehabilitation of an existing structure. The device is composed of a friction damper combined with a steel plate with vertical slits as a hysteretic damper. Analytical model is developed for the device, and the capacity of the hybrid device to satisfy a given target performance is determined based on the ASCE/SEI 7-10 process. The effect of the device is verified by nonlinear dynamic analyses using seven earthquake records. The analysis results show that the dissipated inelastic energy is concentrated on the hybrid damper and the maximum interstory drift of the SMRF with damping system satisfies the requirement of the current code.

콘크리트채움 U형 강재보-강재기둥 합성 내진접합부에 대한 주기하중 실험 (Cyclic Seismic Testing of Concrete-filled U-shaped Steel Beam-to-Steel Column Connections)

  • 박홍근;이철호;박창희;황현종;이창남;김형섭;김성배
    • 한국강구조학회 논문집
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    • 제23권3호
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    • pp.337-347
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    • 2011
  • 본 논문에서는 콘크리트 채움 U형 강재보와 강재 H단면 기둥으로 구성된 접합부의 내진 성능을 평가하였다. 접합부 내진성능을 평가하기 위하여 세 개의 보-기둥 접합부 실험체를 반복주기하중에 대하여 실험하였다. 합성보는 콘크리트 슬래브와 스터드를 이용하여 일체화 되었으며, 슬래브에는 부모멘트를 위한 철근이 배치되었다. 접합부 상세를 실험 변수로 하였으며, 보 접합부의 강화방안 및 약화방안, 합성효과의 정도를 고려하였다. 합성보의 춤은 슬래브 두께를 포함하여 600mm이며, 강재보와 슬래브의 철근은 H형강 기둥과 용접을 통해 접합하였다. 접합부 강화방안은 합성보 플랜지에 덧댐플레이트를 용접하였으며, 약화방안으로서 소성힌지 발생지점에 채움콘크리트 안에 스티로폼을 삽입하였다. 실험 결과 완전합성 실험체는 강도와 변형능력, 에너지 소산에 있어서 우수한 성능을 보여주었다. 변형능력은 특수모멘트골조 기준인 4% 이상의 회전각을 발휘하였다.

Seismic fragility assessment of steel moment-resisting frames equipped with superelastic viscous dampers

  • Abbas Ghasemi;Fatemeh Arkavazi;Hamzeh Shakib
    • Earthquakes and Structures
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    • 제25권5호
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    • pp.343-358
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    • 2023
  • The superelastic viscous damper (SVD) is a hybrid passive control device comprising a viscoelastic damper and shape memory alloy (SMA) cables connected in series. The SVD is an innovative damper through which a large amount of seismic energy can dissipate. The current study assessed the seismic collapse induced by steel moment-resisting frames (SMRFs) equipped with SVDs and compared them with the performance of special MRFs and buckling restrained brace frames (BRBFs). For this purpose, nonlinear dynamic and incremental dynamic analysis (IDA) were conducted in OpenSees software. Both 5- and 9-story special MRFs, BRBFs, and MRFs equipped with the SVDs were examined. The results indicated that the annual exceedance rate for maximum residual drifts of 0.2% and 0.5% for the BRBFs and MRFs with SVDs, respectively, were considerably less than for SMRFs with reduced-beam section (RBS) connections and that the seismic performances of these structures were enhanced with the use of the BRB and SVD. The probability of collapse due to residual drift in the SVD, BRB, and RBS frames in the 9-story structure was 1.45, 1.75, and 1.05 times greater than for the 5-story frame.

Evaluation of vierendeel peripheral frame as supporting structural element for prevention of progressive collapse

  • Khaloo, Alireza;Omidi, Hossein
    • Steel and Composite Structures
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    • 제26권5호
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    • pp.549-556
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    • 2018
  • Progressive building collapse occurs when failure of a structural component leads to the failure and collapse of surrounding members, possibly promoting additional failure. Global system collapse will occur if the damaged system is unable to reach a new static equilibrium configuration. The most common type of primary failure which led to the progressive collapse phenomenon, is the sudden removal of a column by various factors. In this study, a method is proposed to prevent progressive collapse phenomena in structures subjected to removal of a single column. A vierendeel peripheral frame at roof level is used to redistribute the removed column's load on other columns of the structure. For analysis, quasi-static approach is used which considers various load combinations. This method, while economically affordable is easily applicable (also for new structures as well as for existing structures and without causing damage to their architectural requirements). Special emphasis is focused on the evolution of vertical displacements of column removal point. Even though additional stresses and displacements are experienced by removal of a structural load bearing column, the proposed method considerably reduces the displacement at the mentioned point and prevents the collapse of the structural frame.

비틀림 비정형을 갖는 철골특수모멘트골조의 내진성능평가 - I 내진설계 (Seismic Performance Evaluation of Special Moment Steel Frames with Torsional Irregularities - I Seismic Design)

  • 한상환;김태오;하성진
    • 한국강구조학회 논문집
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    • 제29권5호
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    • pp.361-368
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    • 2017
  • 지진하중 하에서 구조물의 강성중심과 질량중심이 차이가 날 경우에 편심이 발생하여 비틀림을 유발한다. ASCE 7-10에서는 이를 비틀림 비정형으로 규정하고 있으며, 비틀림 비정형 구조물의 내진설계를 위한 요구사항들을 제시하고 있다. 본 연구에서는 편심이 다른 3층, 9층 철골 모멘트 골조의 3차원 시간이력해석 결과를 기반으로 비틀림 비정형 철골조에 적용되는 내진설계기준의 요구조건에 대한 영향을 평가하였다. 그 결과, 편심이 증가할수록 적절히 설계된 구조물의 성능이 우수하며 소성힌지의 분포가 정형 구조물과 유사한 것으로 나타냈다.