• 제목/요약/키워드: irregular setback structures

검색결과 6건 처리시간 0.019초

3차원 비정형 Setback 구조물의 지진 거동 (A Seismic Behavior of a 3-dimensional Irregular Setback Structure)

  • 문성권
    • 한국전산구조공학회논문집
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    • 제13권1호
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    • pp.105-113
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    • 2000
  • 임의의 층에서 평면적에 큰 차이를 보이는 3차원 비정형 setback 구조물의 지진 거동 특성과 지진 거동 특성에 미치는 바닥 슬래브의 면내 변형 효과를 연구하였다. 비정형 setback 구조물의 전반적인 지진 거동 특성을 분석하기 위하여 베이스 부분의 평면적과 타워 부분의 평면적의 비(R/sub s/)와 단(setback) 발생 위치(L/sub s/)등을 매개 변수로 사용하였다. 48개의 비정형 setback 구조물들에 대한 해석 결과로부터 정형 구조물과 달리 setback 구조물의 경우에 단(setback) 발생 위치 근방에서 매우 급격한 층 전단력의 변화가 일어남을 알 수 있었다. 바닥슬래브의 면내 변형이 구조물의 지진 거동에 미치는 영향은 횡방향 저항 요소의 배치에 따라 크게 좌우되며 횡방향 저항 요소들간의 강성의 차이가 심하게 나타나는 전단벽-프레임 시스템의 경우에 더욱 두드러지게 나타남을 알 수 있다. 바닥슬래브의 면내 변형은 구조물이 받게 되는 밑면 전단력을 감소시키며 특히 L/sub s/=0.1인 프레임-전단벽 시스템에서 두드러진다. 또한 바닥슬래브의 면내 변형은 전단벽이 설치된 프레임에 대해서는 층 전단력의 감소 효과를 가져오고 전단벽이 설치되지 않은 프레임에 대해서는 층 전단력의 증가 현상을 가져온다. 또한 횡방향 강성의 차이로 발생한 베이스 부분과 타워 부분에서의 바닥슬래브의 면내 변형으로 인하여 모든 층의 층 변위가 크게 증가됨을 알 수 있다.

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Seismic Performance of High-rise Moment-resisting RC Frame Structures with Vertical Setback

  • Jiang, Huanjun;Huang, Youlu;Li, Wannian
    • 국제초고층학회논문집
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    • 제9권4호
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    • pp.307-314
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    • 2020
  • High-rise buildings with vertical setback are widely used in practice. From the field investigation of the past earthquakes, it was found that such kind of vertically irregular high-rise building structures easily suffer severe damage during strong earthquakes. This paper presents an extensive study on the earthquake responses of moment-resisting frame structures (MFS) popularly applied in high-rise buildings with vertical setback. Four groups of MFS are designed, including three groups of structures with vertical setback and one group of structures with the lateral stiffness varying along the building height but without vertical setback. The numerical models of the structures are established, and the time history analysis of the structures under different levels of earthquakes is conducted. The earthquake responses of the structures are compared. The influence of the ratio between the horizontal setback dimension and the previous plan dimension, the eccentricity of setback, and the position where the setback occurs on the seismic performance of structures is studied. The rationality of the provisions for the structures with vertical setback specified in the current design codes is checked by the findings from this study.

3차원 비정형 Setback 구조물의 동적 특성 (Dynamic Characteristics of a 3-dimensional Irregular Setback Structure)

  • 문성권
    • 전산구조공학
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    • 제11권4호
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    • pp.287-294
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    • 1998
  • 입면의 형태가 임의의 층에서 큰 차이를 보이는 3차원 비정형 setback 구조물의 동적 거동 특성과 이들 구조물의 동적 거동에 미치는 바닥 슬래브의 면내 변형 효과를 분석하였다. 비정형 setback 구조물의 전반적인 동적 거동특성을 분석하기 위하여 베이스 부분의 평면적과 타워 부분의 평면적 비(R?), setback 발생위치(L?)등을 매개 변수로 사용하였다. 48개의 비정형 setback 구조물들에 대한 해석 수행 결과 setback 구조물은 정형 구조물에 비해 횡방향 1차 모드의 유효 모드 중량(effective modal weight)이 작게 나타나는 경향을 보이기 때문에 setback 구조물의 동적 거동을 파악하기 위해서는 등가 정적 해석법 대신에 동적 해석을 수행할 필요가 있음을 알 수 있었다. 바닥슬래브의 면내 변형은 보다 긴 구조물의 고유 진동 주기값을 가져오며 모드 순서 및 모드 형상에도 변화를 준다. 이러한 사실은 바닥슬래브의 면내 변형으로 인하여 횡방향 저항 요소들간의 전단력 분포와 층 변위가 영향을 받을 수 있다는 것을 의미한다. 이러한 현상은 횡방향 저항 요소들간의 강성 차가 심한 프레임-전단벽 시스템에서 두드러지게 나타난다.

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Seismic vulnerability assessment of low-rise irregular reinforced concrete structures using cumulative damage index

  • Shojaei, Fahimeh;Behnam, Behrouz
    • Advances in concrete construction
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    • 제5권4호
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    • pp.407-422
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    • 2017
  • Evaluating seismic performance of urban structures for future earthquakes is one of the key prerequisites of rehabilitation programs. Irregular structures, as a specific case, are more susceptible to sustain earthquake damage than regular structures. The study here is to identify damage states of vertically irregular structures using the well-recognized Park-Ang damage index. For doing this, a regular 3-story reinforced concrete (RC) structure is first designed based on ACI-318 code, and a peak ground acceleration (PGA) of 0.3 g. Some known vertical irregularities such as setback, short column and soft story are then applied to the regular structure. All the four structures are subjected to seven different earthquakes accelerations and different amplitudes which are then analyzed using nonlinear dynamic procedure. The damage indices of the structures are then accounted for using the pointed out damage index. The results show that the structure with soft story irregularity sustains more damage in all the earthquake records than the other structures. The least damage belongs the regular structure showing that different earthquake with different accelerations and amplitudes have no significant effect on the regular structures.

Equivalent lateral force method for buildings with setback: adequacy in elastic range

  • Roy, Rana;Mahato, Somen
    • Earthquakes and Structures
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    • 제4권6호
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    • pp.685-710
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    • 2013
  • Static torsional provisions employing equivalent lateral force method (ELF) require that the earthquake-induced lateral force at each story be applied at a distance equal to design eccentricity ($e_d$) from a reference resistance centre of the corresponding story. Such code torsional provisions, albeit not explicitly stated, are generally believed to be applicable to the regularly asymmetric buildings. Examined herein is the applicability of such code-torsional provisions to buildings with set-back using rigid as well as flexible diaphragm model. Response of a number of set-back systems computed through ELF with static torsional provisions is compared to that by response spectrum based procedure. Influence of infill wall with a range of opening is also investigated. Results of comprehensive parametric studies suggest that the ELF may, with rational engineering judgment, be used for practical purposes taking some care of the surroundings of the setback for stiff systems in particular.

Seismic design of irregular space steel frames using advanced methods of analysis

  • Vasilopoulos, A.A.;Bazeos, N.;Beskos, D.E.
    • Steel and Composite Structures
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    • 제8권1호
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    • pp.53-83
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    • 2008
  • A rational and efficient seismic design methodology for irregular space steel frames using advanced methods of analysis in the framework of Eurocodes 8 and 3 is presented. This design methodology employs an advanced static or dynamic finite element method of analysis that takes into account geometrical and material non-linearities and member and frame imperfections. The inelastic static analysis (pushover) is employed with multimodal load along the height of the building combining the first few modes. The inelastic dynamic method in the time domain is employed with accelerograms taken from real earthquakes scaled so as to be compatible with the elastic design spectrum of Eurocode 8. The design procedure starts with assumed member sections, continues with the checking of the damage and ultimate limit states requirements, the serviceability requirements and ends with the adjustment of member sizes. Thus it can sufficiently capture the limit states of displacements, rotations, strength, stability and damage of the structure and its individual members so that separate member capacity checks through the interaction equations of Eurocode 3 or the usage of the conservative and crude q-factor suggested in Eurocode 8 are not required. Two numerical examples dealing with the seismic design of irregular space steel moment resisting frames are presented to illustrate the proposed method and demonstrate its advantages. The first considers a seven storey geometrically regular frame with in-plan eccentricities, while the second a six storey frame with a setback.