• 제목/요약/키워드: perimeter column

검색결과 31건 처리시간 0.022초

강성도 기준에 따른 IsoTruss® 그리드 고층건물의 부재선정 방법 (Member Sizing Method in IsoTruss® Grid High-rise Building Structures Based on Stiffness Criteria)

  • 김태헌;김영찬
    • 한국산학기술학회논문지
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    • 제18권12호
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    • pp.50-56
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    • 2017
  • 고층건물에서 횡력 저항의 주된 역할을 하는 외주골조는 기둥과 보를 직교시켜 구성하는 것이 일반적이었으나 최근 다양한 그리드형태의 부재배치가 이루어지고 있다. 선행연구에서는 아이소트러스 그리드를 고층건물의 외주골조로 적용한 구조적 적합성이 검토되었다. 본 연구에서는 $IsoTruss^{(R)}$ 그리드(ITG) 구조의 예비단계 설계시 외주골조 부재의 소요단면적 산정방법을 제안하였다. 모듈의 변형과 하중과의 평형조건, 허용 횡변위, 그리고 건물의 휨변형 대 전단변형의 비를 변수로 하여 소요단면적을 유도하였다. ITG 구조에서 외주골조의 부재는 횡하중에 직각인 평면(PPR), 평행한 평면(PPL), 경사진 평면(POQ)에 배치되는데 POQ에 배치된 부재는 PPR 또는 PPL에 투영시켜 부재의 강성을 반영하였다. 소요단면적은 모듈에 작용하는 전단력과 모멘트에 의해 영향을 받는데 부재사이즈 조닝을 달리하여 3가지 모델을 비교하였다. 본 연구의 효용성을 검증하기 위해 64층 건물을 설계하여 해석하였다. 최대 횡변위, 철골량, 기둥의 축력강도비를 비교분석하여 부재사이즈 조닝의 효과를 알아보았다. 제안식을 이용한 횡변위가 제한치의 약 97.3%로 나와 제안식을 설계 초기단계에서 부재사이즈의 선정에 유용하게 적용할 수 있다.

The effect of RBS connection on energy absorption in tall buildings with braced tube frame system

  • Shariati, Mahdi;Ghorbani, Mostafa;Naghipour, Morteza;Alinejad, Nasrollah;Toghroli, Ali
    • Steel and Composite Structures
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    • 제34권3호
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    • pp.393-407
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    • 2020
  • The braced tube frame system, a combination of perimeter frame and bracing frame, is one of the systems used in tall buildings. Due to the implementation of this system in tall buildings and the high rigidity resulting from the use of general bracing, providing proper ductility while maintaining the strength of the structure when exposing to lateral forces is essential. Also, the high stress at the connection of the beam to the column may cause a sudden failure in the region before reaching the required ductility. The use of Reduced Beam Section connection (RBS connection) by focusing stress in a region away from beam to column connection is a suitable solution to the problem. Because of the fact that RBS connections are usually used in moment frames and not tested in tall buildings with braced tube frames, they should be investigated. Therefore, in this research, three tall buildings in height ranges of 20, 25 and 30 floors were modeled and designed by SAP2000 software, and then a frame in each building was modeled in PERFORM-3D software under two RBS-free system and RBS-based system. Nonlinear time history dynamic analysis is used for each frame under Manjil, Tabas and Northridge excitations. The results of the Comparison between RBS-free and RBS-based systems show that the RBS connections increased the absorbed energy level by reducing the stiffness and increasing the ductility in the beams and structural system. Also, by increasing the involvement of the beams in absorbing energy, the columns and braces absorb less energy.

Experimental study on RC frame structures strengthened by externally-anchored PC wall panels

  • Choi, Seung-Ho;Hwang, Jin-Ha;Lee, Deuck Hang;Kim, Kang Su;Zhang, Dichuan;Kim, Jong Ryeol
    • Computers and Concrete
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    • 제22권4호
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    • pp.383-393
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    • 2018
  • Infill wall strengthening method has been widely used for seismic strengthening of deteriorated reinforced concrete (RC) frame structures with non-seismic details. Although such infill wall method can ensure sufficient lateral strengths of RC frame structures deteriorated in seismic performances with a low constructional cost, it generally requires quite cumbersome construction works due to its complex connection details between an infill wall and existing RC frame. In this study, an advanced seismic strengthening method using externally-anchored precast wall panels (EPCW) was developed to overcome the disadvantage inherent in the existing infill wall strengthening method. A total of four RC frame specimens were carefully designed and fabricated. Cyclic loading tests were then conducted to examine seismic performances of RC frame specimens strengthened using the EPCW method. Two specimens were fully strengthened using stocky precast wall panels with different connection details while one specimen was strengthened only in column perimeter with slender precast wall panels. Test results showed that the strength, stiffness, and energy dissipation capacity of RC frame specimens strengthened by EPCWs were improved compared to control frame specimens without strengthening.

A Study on the Loss Reduction Method of Reinforcing Bar through Case Study

  • Park, U-Yeol;Jung, Hyeon-Ok;Kang, Tai-Kyung;Cho, Hun-Hee
    • 한국건축시공학회지
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    • 제10권4호
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    • pp.123-132
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    • 2010
  • Rebar work accounts for approximately 30% of the total construction costs for rebars and concrete. Recently, the high rising prices of rebars have become one of the principle factors of rising construction costs. Therefore, construction companies are putting much effort into loss reduction of rebars. Consequently, in this study, we wished to present loss reduction methods of rebars before the preparation of the placing drawings. To devise such methods, we collected previous case studies and analyzed methods that were applied for loss reduction. As a result of the analysis, we were able to find the following methods for loss reduction of rebars: method of reducing the number of splices at the mat foundation, method of reducing splice length at the internal columns or walls of the underground parking lot, method of reducing cap-ties of internal beams of basement floors excluding perimeter beams, and method of reducing anchorage length at the internal column or wall of the underground parking lot. Based on those analysis results, we presented our own loss reduction methods of rebars. Applying our methods resulted in considerable loss reduction.

Anchored blind bolted composite connection to a concrete filled steel tubular column

  • Agheshlui, Hossein;Goldsworthy, Helen;Gad, Emad;Mirza, Olivia
    • Steel and Composite Structures
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    • 제23권1호
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    • pp.115-130
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    • 2017
  • A new type of moment-resisting bolted connection was developed for use in composite steel- concrete construction to connect composite open section steel beams to concrete filled steel square tubular columns. The connection was made possible using anchored blind bolts along with two through bolts. It was designed to act compositely with the in-situ reinforced concrete slab to achieve an enhanced stiffness and strength. The developed connection was incorporated in the design of a medium rise (five storey) commercial building which was located in low to medium seismicity regions. The lateral load resisting system for the design building consisted of moment resisting frames in two directions. A major full scale test on a sub-assembly of a perimeter moment-resisting frame of the model building was conducted to study the system behaviour incorporating the proposed connection. The behaviour of the proposed connection and its interaction with the floor slab under cyclic loading representing the earthquake events with return periods of 500 years and 2500 years was investigated. The proposed connection was categorized as semi rigid for unbraced frames based on the classification method presented in Eurocode 3. Furthermore, the proposed connection, composite with the floor slab, successfully provided adequate lateral load resistance for the model building.

Preliminary Modelling of Plasco Tower Collapse

  • Yarlagadda, Tejeswar;Hajiloo, Hamzeh;Jiang, Liming;Green, Mark;Usmani, Asif
    • 국제초고층학회논문집
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    • 제7권4호
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    • pp.397-408
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    • 2018
  • In a recent tragic fire incident, the Plasco Tower collapsed after an intense outburst of fire lasting for three and a half hours and claiming the lives of 16 firefighters and 6 civilians. This paper will present continuing collaborative work between Hong Kong Polytechnic University and Queen's University in Canada to model the progressive collapse of the tower. The fire started at the 10th floor and was observed to have travelled along the floor horizontally and through the staircase and windows vertically. Plasco Tower was steel structure and all the steel sections were fabricated by welding standard European channel or angle profiles and no fire protection was applied. Four internal columns carried the loads transferred by the primary beams, and box columns were constructed along the perimeter of the building as a braced tube for resisting seismic loading. OpenSees fibre-based sections and displacement-based beam-column elements are used to model the frames, while shell elements are used for the reinforced concrete floor slabs. The thermal properties and elevated temperature mechanical properties are as recommended in the Eurocodes. The results in this preliminarily analysis are based on rough estimations of the structure's configuration. The ongoing work looks at modeling the Plasco Tower based on the most accurate findings from reviewing many photographs and collected data.

슬래브-기둥 접합부의 이력거동에 대한 기둥 형상비의 영향 (Influence of Column Aspect Ratio on the Hysteretic Behavior of Slab-Column Connection)

  • 최명신;조인중;안종문;신성우
    • 콘크리트학회논문집
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    • 제19권4호
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    • pp.515-525
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    • 2007
  • 본 연구는 주거용 고층 건물에서 폭넓게 사용되고 있는 플랫플레이트 구조에서 장방형 기둥-슬래브 접합부를 대상으로 실시한 4개의 실험 결과를 분석한 것이다. 이 연구의 목적은 지진하중과 같이 반복적으로 작용하는 횡하중에 대하여 기둥 단면의 형상비 (${\beta}_c=c_1/c_2$=횡하중과 나란한 방향의 기둥 단면의 크기/횡하중과 직교 방향의 기둥 단면의 크기)에 따른 접합부의 이력 거동을 비교 평가한 것이다. 기둥 단면의 형상비는 $0.5{\sim}3\;(c_1/c_2=1/2,\;1/1,\;2/1,\;3/1)$으로 선정되었고, 기둥 또는 슬래브 위험단면의 둘레 길이 $(b_o)$가 일정하지 않을 경우 공칭 수직 전단력 $(V_c)$의 크기기 변화하여 중력 전단력비의 차이가 발생하기 때문에 기둥 양변의 크기를 동시에 변화시켜서 $b_o$가 일정해 지도록 기둥 단면의 크기를 결정하였다. 그리고 슬래브 휨 철근비와 중력 전단력비 $(V_g/V_c)$ 등 접합부의 이력 거동에 영향을 줄 수 있는 다른 영향 인자들은 일정한 조건으로 계획하여 기둥 형상비의 영향을 고찰할 수 있도록 하였다. 일정 수직하중과 반복횡하중이 작용하는 슬래브_기둥 접합부의 실험을 통해서 뚫림전단파괴 양상과 균열 패턴, 철근 및 콘크리트의 변형률, 접합부의 강도와 강성, 그리고 변형 능력 등을 기둥 형상비 변수에 따라 분석하였다. 또한, ACI 318-05 설계기준의 편심 전단응력 모델에 의한 전단응력을 실험 결과와 비교하여 평가하였고, 실험 결과에 기초하여 휨과 전단에 의한 접합부 불균형모멘트 전달비율에 대한 검토를 하였다.

Seismic response of complex 3D steel buildings with welded and post-tensioned connections

  • Reyes-Salazar, Alfredo;Ruiz, Sonia E.;Bojorquez, Eden;Bojorquez, Juan;Llanes-Tizoc, Mario D.
    • Earthquakes and Structures
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    • 제11권2호
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    • pp.217-243
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    • 2016
  • The linear and nonlinear seismic responses of steel buildings with perimeter moment resisting frames and welded connections (WC) are estimated and compared with those of buildings with post-tensioned connections (PC). Two-dimensional (2D) and three-dimensional (3D) structural representations of the buildings as well as global and local response parameters are considered. The seismic responses and structural damage of steel buildings with PC may be significantly smaller than those of the buildings with typical WC. The reasons for this are that the PC buildings dissipate more hysteretic energy and attract smaller inertia forces. The response reduction is larger for global than for local response parameters. The reduction may significantly vary from one structural representation to another. One of the main reasons for this is that the energy dissipation characteristics are quite different for the 2D and 3D models. In addition, in the case of the 3D models, the contribution of each horizontal component to the axial load on an specific column may be in phase each other during some intervals of time, but for some others they may be out of phase. It is not possible to observe this effect on the 2D structural formulation. The implication of this is that 3D structural representation should be used while estimating the effect of the PC on the structural response. Thus, steel frames with post-tensioned bolted connections are a viable option in high seismicity areas due to the fact that brittle failure is prevented and also because of their reduced response and self-centering capacity.

Accurate theoretical modeling and code prediction of the punching shear failure capacity of reinforced concrete slabs

  • Rajai Z. Al-Rousan;Bara'a R. Alnemrawi
    • Steel and Composite Structures
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    • 제52권4호
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    • pp.419-434
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    • 2024
  • A flat slab is a structural system where columns directly support it without the presence of beam elements. However, despite its wide advantages, this structural system undergoes a major deficiency where stresses are concentrated around the column perimeter, resulting in the progressive collapse of the entire structure as a result of losing the shear transfer mechanisms at the cracked interface. Predicting the punching shear capacity of RC flat slabs is a challenging problem where the factors contributing to the overall slab strength vary broadly in their significance and effect extent. This study proposed a new expression for predicting the slab's capacity in punching shear using a nonuniform concrete tensile stress distribution assumption to capture, as well as possible, the induced strain effect within a thick RC flat slab. Therefore, the overall punching shear capacity is composed of three parts: concrete, aggregate interlock, and dowel action contributions. The factor of the shear span-to-depth ratio (a_v/d) was introduced in the concrete contribution in addition to the aggregate interlock part using the maximum aggregate size. Other significant factors were considered, including the concrete type, concrete grade, size factor, and the flexural reinforcement dowel action. The efficiency of the proposed model was examined using 86 points of published experimental data from 19 studies and compared with five code standards (ACI318, EC2, MC2010, CSA A23.3, and JSCE). The obtained results revealed the efficiency and accuracy of the model prediction, where a covariance value of 4.95% was found, compared to (13.67, 14.05, 15.83, 19.67, and 20.45) % for the (ACI318, CSA A23.3, MC2010, EC2, and JSCE), respectively.

철골 연성 모멘트 골조의 연성계수 및 강도계수 평가 (Evaluation of Ductility and Strength Factors for Special Steel Moment Resisting Frames)

  • 강철규;최병정
    • 한국강구조학회 논문집
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    • 제16권6호통권73호
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    • pp.793-805
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    • 2004
  • 본 연구에서는 철골 연성 모멘트 골조에 대하여 반응수정계수(R)의 핵심 구성요소인 연성계수 및 강도계수를 평가하였다. 철골 연성 모멘트 골조에 대한 연성계수($R_{{\mu},MDOF}$) 는 단자유도 구조물에 대한 연성계수($R_{{\mu},SDOF}$)에 다자유도 보정계수($R_M$)를 곱하여 산정하였다. 단자유도 구조물에 대한 연성계수($R_{{\mu},SDOF}$)는 지진하중을 받는 탄소성 단자유도(SDOF) 구조물의 목표 변위 연성비와 주기에 따른 비선형 동적해석으로부터 산정하였다. 통계적 연구와 회귀분석으로부터 연성계수를 산정하기 위한 평가식이 제시되었다. 다자유도의 영향을 고려하기 위한 보정계수($R_M$)는 기존의 연구결과로보터 회귀분석을 이용하여 구하였다. 철골 연성 모멘트 골조에 대한 강도계수는 비선형 정적해석으로부터 산정하였다. 철골 연성 모멘트 골조의 연성 계수 및 강도계수를 평가하기 위하여, 구조물의 층수(4, 8 및 16층), 지진구역계수(Z=0.075, 0.2 및 0.4), 골조 시스템(외곽골조 및 분배골조) 및 붕괴 메카니즘(강기둥-약보 및 약기둥-강보)을 설계 매개변수로 하여 총 36개의 예제구조물을 설계하였다. 철골 연성 모멘트 골조의 연성계수 및 강도계수에 이러한 설계 매개변수가 미치는 영향을 분석하였다.