• 제목/요약/키워드: coupled walls

검색결과 106건 처리시간 0.021초

FBP가 설치된 철골 커플링보 접합부의 거동 및 파괴모드 (Behavior and Failure Mode of Steel Coupling Beams Joint with FBP)

  • 송한범;이원호
    • 콘크리트학회논문집
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    • 제17권6호
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    • pp.1001-1009
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    • 2005
  • 고층 건물의 구조계획에서 벽체의 유용성은 오래전부터 인식되어 왔다. 구조물에서 적절한 위치에 벽체를 배치하며, 벽체는 구조물에 작용하는 횡하중에 매우 효과적으로 저항할 수 있다. 특히 병렬 전단벽 시스템의 구조물의 횡력저항 시스템으로서 가장 선호되는 구조이고 이러한 구조는 커플링보에 의해 벽체가 연결되게 된다. 커플링보는 강도, 강성, 연성 및 에너지 소산능력이 충분한 부재이어야 한다. 이러한 요구들을 만족시키기 위해 FBP를 적용한 철골 커플링보를 제안한다. FBP의 적용 여부를 변수로 하여 총 2개의 시험체를 계획하고 실험을 실시하였다. 이러한 실험 연구를 통하여 FBP를 적용한 철골 커플링보의 장점에 대해 서술하였고, 파괴모드를 제안하였다.

A simplified model proposal for non-linear analysis of buildings

  • Abdul Rahim Halimi;Kanat Burak Bozdogan
    • Earthquakes and Structures
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    • 제24권5호
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    • pp.353-364
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    • 2023
  • In this study, a method has been proposed for the static and dynamic nonlinear analysis of multi-storey buildings, which takes into account the contribution of axial deformations in vertical load-bearing elements, which are especially important in tall and narrow structures. Shear deformations on the shear walls were also taken into account in the study. The presented method takes into account the effects that are not considered in the fishbone and flexural-shear beam models developed in the literature. In the Fishbone model, only frame systems are modeled. In the flexural shear beam model developed for shear wall systems, shear deformations and axial deformations in the walls are neglected. Unlike the literature, with the model proposed in this study, both shear deformations in the walls and axial deformations in the columns and walls are taken into account. In the proposed model, multi-storey building is represented as a sandwich beam consisting of Timoshenko beams pieced together with a double-hinged beam. At each storey, the total moment capacities of the frame beams and the coupled beams in the coupled shear walls are represented as the equivalent shear capacity. On the other hand, The sums of individual columns and walls moment at the relevant floor level are represented as equivalent moment capacity at that floor level. At the end of the study, examples were solved to show the suitability of the proposed method in this study. The SAP2000 program is employed in analyses. In a conclusion, it is observed that among the solved examples, the proposed sandwich beam model gives good results. As can be seen from these results, it is seen that the presented method, especially in terms of base shear force, gives very close results to the detailed finite element method.

Performance based evaluation of RC coupled shear wall system with steel coupling beam

  • Bengar, Habib Akbarzadeh;Aski, Roja Mohammadalipour
    • Steel and Composite Structures
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    • 제20권2호
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    • pp.337-355
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    • 2016
  • Steel coupling beam in reinforced concrete (RC) coupled shear wall system is a proper substitute for deep concrete coupling beam. Previous studies have shown that RC coupled walls with steel or concrete coupling beam designed with strength-based design approach, may not guarantee a ductile behavior of a coupled shear wall system. Therefore, seismic performance evaluation of RC coupled shear wall with steel or concrete coupling beam designed based on a strength-based design approach is essential. In this paper first, buildings with 7, 14 and 21 stories containing RC coupled shear wall system with concrete and steel coupling beams were designed with strength-based design approach, then performance level of these buildings were evaluated under two spectrum; Design Basis Earthquake (DBE) and Maximum Considered Earthquake (MCE). The performance level of LS and CP of all buildings were satisfied under DBE and MCE respectively. In spite of the steel coupling beam, concrete coupling beam in RC coupled shear wall acts like a fuse under strong ground motion.

Performance evaluation and hysteretic modeling of low rise reinforced concrete shear walls

  • Nagender, T.;Parulekar, Y.M.;Rao, G. Appa
    • Earthquakes and Structures
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    • 제16권1호
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    • pp.41-54
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    • 2019
  • Reinforced Concrete (RC) shear walls are widely used in Nuclear power plants as effective lateral force resisting elements of the structure and these may experience nonlinear behavior for higher earthquake demand. Short shear walls of aspect ratio less than 1.5 generally experience combined shear flexure interaction. This paper presents the results of the displacement-controlled experiments performed on six RC short shear walls with varying aspect ratios (1, 1.25 and 1.5) for monotonic and reversed quasi-static cyclic loading. Simulation of the shear walls is then carried out by Finite element modeling and also by macro modeling considering the coupled shear and flexure behaviour. The shear response is estimated by softened truss theory using the concrete model given by Vecchio and Collins (1994) with a modification in softening part of the model and flexure response is estimated using moment curvature relationship. The accuracy of modeling is validated by comparing the simulated response with experimental one. Moreover, based on the experimental work a multi-linear hysteretic model is proposed for short shear walls. Finally ultimate load, drift, ductility, stiffness reduction and failure pattern of the shear walls are studied in details and hysteretic energy dissipation along with damage index are evaluated.

Seismic performance of moment resisting steel frames retrofitted with coupled steel plate shear walls with different link beams

  • Amir Masoumi Verki;Adolfo Preciado;Pegah Amiri Motlagh
    • Steel and Composite Structures
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    • 제46권5호
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    • pp.591-609
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    • 2023
  • In some buildings, the lateral structural response of steel framed buildings depends on the shear walls and it is very important to study the behavior of these elements under near-field seismic loads. The link beam in the opening of the shear wall between two wall plates is investigated numerically in terms of behavior and effects on frames. Based on the length of the beam and its bending and shear behavior, three types of models are constructed and analyzed, and the behavior of the frames is also compared. The results show that by reducing the length of the link beam, the base shear forces reduce about 20%. The changes in the length of the link beam have different effects on the degree of coupling. Increasing the length of the link beam increases the base shear about 15%. Also, it has both, a positive and a negative effect on the degree of coupling. The increasing strength of the coupling steel shear wall is linearly related to the yield stress of the beam materials, length, and flexural stiffness of the beam. The use of a shorter link beam will increase the additional strength and consequently improving the behavior of the coupling steel shear wall by reducing the stresses in this element. The link beam with large moment of inertia will also increase about 25% the additional strength and as a result the coefficient of behavior of the shear wall.

Seismic Response Analysis of Reinforced Concrete Wall Structure Using Macro Model

  • Kim, Dong-Kwan
    • International Journal of Concrete Structures and Materials
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    • 제10권1호
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    • pp.99-112
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    • 2016
  • During earthquake, reinforced concrete walls show complicated post-yield behavior varying with shear span-to-depth ratio, re-bar detail, and loading condition. In the present study, a macro-model for the nonlinear analysis of multi-story wall structures was developed. To conveniently describe the coupled flexure-compression and shear responses, a reinforced concrete wall was idealized with longitudinal and diagonal uniaxial elements. Simplified cyclic material models were used to describe the cyclic behavior of concrete and re-bars. For verification, the proposed method was applied to various existing test specimens of isolated and coupled walls. The results showed that the predictions agreed well with the test results including the load-carrying capacity, deformation capacity, and failure mode. Further the proposed model was applied to an existing wall structure tested on a shaking table. Three-dimensional nonlinear time history analyses using the proposed model were performed for the test specimen. The time history responses of the proposed method agreed with the test results including the lateral displacements and base shear.

병렬전단벽의 강도와 강성이 커플링보의 설계내력에 미치는 영향 (Design Strength of Coupled Shear Wall System according to Variation of Strength and Stiffness of Coupled Shear Wall)

  • 윤태호;김진상
    • 한국산학기술학회논문지
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    • 제17권10호
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    • pp.743-750
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    • 2016
  • 본 연구에서는 초고층건물의 횡력저항 구조형식으로 널리 사용되는 병렬전단벽-커플링보 구조시스템에서 전단벽의 강도, 강성이 커플링보의 설계 강도에 미치는 영향을 분석하였다. 커플링보에 발생하는 설계내력은 코어벽체의 두께와 콘크리트의 강도가 변하더라도 층별 설계내력은 유사한 경향을 보이고 있으며, 벽체 콘크리트 강도와 두께에 따라 커플링보에 발생하는 외력은 다소 감소하는 경향이 있다. 커플링보의 설계내력은 6개 모델 전부 40층 건물에서, 10층에서 15층의 범위에서 가장 높게 발생하고 있음을 알 수 있다. 즉, 병렬전단벽의 휨변형 변곡점이 형성되는 건물높이의 0.25H~0.375H 위치에서 최대 부재력이 발생한다. 벽체두께가 증가 할수록 코어내부의 커플링보의 발생 외력은 점차 증가하는 것으로 확인되었다. 또한 벽체 두께가 두꺼워질수록 벽체의 콘크리트 강도 증가에 따른 커플링보의 부재력 변화는 적게 나타나는데, 이는 벽체 두께가 두꺼우므로 콘크리트 강도변화의 영향이 적게 미치는 것으로 분석된다. 병렬전단벽의 두께증가는 콘크리트의 강도증가보다 강성변화에 큰 영향을 미치고, 이에 따라 커플링보의 부재력 변화에도 더 큰 영향을 미치는 것으로 분석된다.

구조-음향 연성현상을 갖는 방사 방향을 가질 수 있는 방사체 설계방법 (A Design Method for Direction Selective Structural-acoustic Coupled Radiator)

  • 서희선;김양한
    • 한국소음진동공학회논문집
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    • 제15권2호
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    • pp.225-231
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    • 2005
  • This paper presents a design method for the structural-acoustic coupled radiator that can emit sound in the desired direction. A coupled system that has a finite space and a semi-infinite space separated by two flexible walls and an opening is considered. An objective function is selected to maximize radiation power on a main axis and minimize a side lobe level. To get initial values, prediction of a pressure distribution on field points and radiation pattern of the structural-acoustic coupling system is shown at a coupled-resonant frequency. Three different optimization methods are adapted to design the coupled radiator. Pressure and intensity distribution of the designed radiator is presented.

LRB를 이용한 병렬전단벽 구조물의 지진응답제어 (Seismic Responses Control of Coupled Shear Wall Structures Using LRBs)

  • 박용구;김현수;고현;김민균;이동근
    • 한국지진공학회논문집
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    • 제14권6호
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    • pp.1-9
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    • 2010
  • 대부분의 전단벽 구조물은 통로의 목적으로 개구부를 필요로 하게 되고 전단벽들 사이가 슬래브나 연결보로 연결된 병렬 전단벽의 형태를 띠게 된다. 이러한 구조물에 지진하중이 작용할 때 연결보에 과도한 전단력이 작용하여 연결보가 취성적으로 파괴되거나 전단벽이 먼저 항복하는 문제점이 발생할 수 있다. 이를 방지하기 위하여 연결보에 감쇠장치를 설치하게 되면 구조물의 진동제어효과와 더불어 연결보의 응력집중 및 취성적 파괴를 막을 수 있어서 내진성능 향상을 기대할 수 있다. 본 논문에서는 병렬전단벽 연결보 중앙부에 LRB (Lead Rubber Bearing)가 설치된 구조물의 지진응답제어효과 및 응력의 분포를 평가하여 구조적 효율성을 확인하고자 한다. 이를 위하여 병렬전단벽의 거동을 비교적 정확하게 모사할 수 있는 모형화 방법을 제안하였고, 제안된 모형화 방법을 통하여 지진하중을 받는 예제 병렬구조물에 대한 시간이력해석을 수행한 후 지진응답제어성능을 검토하였다.

주기하중을 받는 이중강판합성벽의 실험연구 (Experimental Study on Double Skin Composite Walls Subjected to Cyclic Loading)

  • 엄태성;박홍근;김진호;장인화
    • 한국강구조학회 논문집
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    • 제20권2호
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    • pp.289-301
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    • 2008
  • 이중강판합성벽은 타이바로 연결된 강판외피 사이에 콘크리트를 충전시킨 구조벽으로서, 벽체의 구조성능을 향상시키고, 벽체의 두께를 줄이며, 별도의 거푸집 및 배근 공사없이 시공성을 향상시키기 위하여 개발되었다. 본 연구에서는 주기하중을 받는 이중강판합성벽의 비탄성거동특성 및 내진성능을 평가하기 위하여, 직사각형 및 T형 단면형상을 갖는 단일벽 및 병렬벽 실험체에 대하여 실험 연구를 수행하였다. 실험 결과, 이중강판합성벽은 주기하중에 대하여 핀칭이 없이 우수한 에너지소산능력을 나타냈다. 벽체하단부 기초의 접합상세와 단면형상에 따라 파괴모드 및 변형능력의 차이를 보였으며, 주로 벽체기초 또는 연결보 용접부의 파단과 강판국부좌굴에 의하여 파괴되었다. 적절한 용접 및 보강 상세를 갖는 실험체들은 2.0~3.7% 층간변형각의 변형능력을 보였다. 또한 벽체와 연결보의 비탄성강도를 고려하여 단일벽 및 병렬벽 실험체의 하중재하능력을 평가하였으며, 이를 실험결과와 비교하였다.