• 제목/요약/키워드: high-rise RC buildings

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Influence of Differential Moisture Distribution on SRC Column Shortening

  • Seol Hyun-Cheol;Kim Jin-Keuna;Kim Yun-Yonga;Kwon Seung-Heea
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 봄학술 발표회 논문집(I)
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    • pp.423-426
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    • 2005
  • Steel reinforced concrete (SRC) columns, which are widely employed in high-rise buildings, exhibit particular time-dependent behavior due to creep and shrinkage of the concrete, and this behavior may cause problems related to serviceability and structural stability. SRC columns also exhibit a time-dependent, cross-sectional relative humidity distribution that differs from reinforced concrete (RC) columns, due to the presence of an inner steel plate, which interferes with the moisture diffusion of concrete. This differential moisture distribution of SRC columns may reduce the drying shrinkage and the drying creep as contrasted with RC columns. Therefore, we propose that the differential moisture distribution be taken into account to accurately predict SRC column shortening.

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1:12축소 비정형 고층 RC 건물의 비선형거동에 대한 실험과 해석의 상관성 (Correlation of Experimental ana Analytical Inelastic Responses of 1:12 Scale Irregular High-Rise RC Buildings)

  • 고동우;이한선
    • 한국지진공학회논문집
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    • 제11권2호
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    • pp.95-104
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    • 2007
  • 세가지 형태의 고층 비정형 철근콘크리트 건물에 대해 OpenSees를 이용하여 비선형정적해석을 수행한 후, 해석결과와 진동대 실험결과를 비교하여 해석방법에 대한 검증을 수행하고, 해석결과 나타난 비정형 건물의 성능과 하부 필로티부분의 파괴양상을 분석하였다. 선정된 모델은 필로티층이 골조로만 이루어진 모델 (모델 1), 필로티층 내부중앙골조에 벽체가 있는 모델 (모델 2), 그리고, 필로티층의 한쪽 골조에 벽체가 있는 모델 (모델 3)이다. 철근과 콘크리트의 응력-변형률 관계를 섬유모델에 이식하여 비선형부분의 거동을 묘사하고, 벽체도 비선형모델을 이식한 트러스로 이루어진 MVLEM을 적용하였다. 그 결과 축력이 작용함에 따른 기둥의 전단강성변화, 벽체의 들뜸현상 등과 같이 진동대 실험에서 나타난 거동특성을 비교적 정확하게 묘사하였다. 초과강도 측면에서 하부골조에 벽체를 포함하고 있는 모델 2와 모델 3은 모델 1보다 2배 가까이 크다. 이와 같이 모델 2와 모델 3의 초과강도와 연성이 큰 이유는 모델 2와 모델 3의 경우 모델 1로 설계된 골조에 벽체가 낀 벽의 형태로 설계되었기 때문으로 보인다. 그리고, 연성의 측면에서 모델 1과 모델 3은 모델 2의 보다 1.17배 큰 것으로 나타났다. 모델 1과 모델 3의 경우 골조부분에 과도한 모멘트가 작용하여 파괴에 이른 반면, 모델 2는 하부전단벽의 전단파괴에 의해 파괴되었으며, 모델 1과 모델 3에 비하여 크게 작용한 전도모멘트로 인해 기둥에 작용하는 축력의 변화가 크게 발생하였다.

Seismic Isolation Systems Incorporating with RC Core Walls and Precast Concrete Perimeter Frames -Shimizu Corporation Tokyo Headquarter-

  • Shimazaki, Dai;Nakagawa, Kentaro
    • 국제초고층학회논문집
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    • 제4권3호
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    • pp.181-189
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    • 2015
  • Shimizu Corporation Tokyo Headquarters, one of the city's leading office buildings, features many pioneering technologies that contribute to a sustainable society through environmental stewardship and a sophisticated disaster management facility. In terms of structural engineering, a seismic isolation system incorporating reinforced concrete core walls and precast concrete perimeter frames create a robust structure in the event of a large earthquake. In addition to the seismic resistance of the structure, several pioneering construction methods and materials are adopted. This office building can serve as a basis for new design and construction approaches and methodologies to ensure safe and economical structures.

9층 공학목재 사무소 건물의 성능기반 내진설계 (Performance-based Seismic Design of 9-Story Engineered Wood Office Building)

  • 추유림;김태완;김승래
    • 한국지진공학회논문집
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    • 제22권4호
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    • pp.225-233
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    • 2018
  • One of engineered woods, glued laminated timber (GLT), can provide a constant level of performance and desired strength even if the quality of wood is low. Due to this fact, there is a growing interest in GLT using domestic species and related research has been carried out continuously. In addition, GLT is popularly being applied to the long-span or high-rise structures overseas. However, KBC 2016 does not allow the engineered woods to be used for middle and high-rise buildings by limiting height. Therefore, a proper design procedure and rationale should be clearly presented by the help of performance-based seismic design. With this background, the goal of this study is to establish a specific procedure for design of a 9-story building with RC shear walls and GLT frames according to the performance-based design of KBC 2016. The performance objectives were set according to KBC and the acceptance criteria for each goal were defined. The RC shear walls and GLT frames were designed by concrete and wood structure requirements, respectively. Analytical models were developed to reflect their nonlinear features, and both nonlinear static and dynamic analyses were conducted. Performance evaluation results showed that the shear walls have insufficient shear strength, so they were re-designed. Consequently, it has been confirmed that GLT frames can be applied to a 9-story office building with the assistance of RC shear walls and performance-based seismic design.

Retrofitting of vulnerable RC structures by base isolation technique

  • Islam, A.B.M. Saiful;Jumaat, Mohd Zamin;Ahmmad, Rasel;Darain, Kh. Mahfuz ud
    • Earthquakes and Structures
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    • 제9권3호
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    • pp.603-623
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    • 2015
  • The scale and nature of the recent earthquakes in the world and the related earthquake disaster index coerce the concerned community to become anxious about it. Therefore, it is crucial that seismic lateral load effect will be appropriately considered in structural design. Application of seismic isolation system stands as a consistent alternative against this hazard. The objective of the study is to evaluate the structural and economic feasibility of reinforced concrete (RC) buildings with base isolation located in medium risk seismic region. Linear and nonlinear dynamic analyses as well as linear static analysis under site-specific bi-directional seismic excitation have been carried out for both fixed based (FB) and base isolated (BI) buildings in the present study. The superstructure and base of buildings are modeled in a 3D finite element model by consistent mass approach having six degrees of freedom at each node. The floor slabs are simulated as rigid diaphragms. Lead rubber bearing (LRB) and High damping rubber bearing (HDRB) are used as isolation device. Change of structural behaviors and savings in construction costing are evaluated. The study shows that for low to medium rise buildings, isolators can reduce muscular amount of base shears, base moments and floor accelerations for building at soft to medium stiff soil. Allowable higher horizontal displacement induces structural flexibility. Though incorporating isolator increases the outlay, overall structural cost may be reduced. The application of base isolation system confirms a potential to be used as a viable solution in economic building design.

초고층 공동주택 RC 공사의 생산성 및 타워크레인 가동율 분석 (Productivity Analysis of Reinforced Concrete Works and Tower Crane Working Ratio for High-rise Apartment Buildings)

  • 권지훈;허영기
    • 한국건설관리학회논문집
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    • 제22권1호
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    • pp.55-62
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    • 2021
  • 초고층 건설사업의 골조 공사를 대상으로 철근, 형틀 작업의 생산성을 분석하고 타워 크레인(Tower Crane; TC)의 실질적인 가동률을 조사하였다. 코어부의 형틀작업 생산성은 지하 및 지상·저층부(1~7F) 구간에서는 평균 12.0~8.7(㎡/인·일)로, 기준층 구간(8~75F) 으로 진행될수록 11.9~20.7(㎡/인·일)로 생산성이 향상되는 것으로 분석되었다. 코어와 외주부의 기준층 생산성을 비교해보면 코어 생산성이 약 11% 정도 높은 것으로 나타났다. 또한 기준층의 코어부위 철근작업 생산성(평균 1.02 ton/인·일) 대비 외주부(기준층 평균 1.12 ton/인·일)의 생산성은 대략 9.6% 높은 결과가 도출되었다. 또한, TC 세 대의 평균 가동률은 63.49%로 조사되었으며, 비가동일의 원인으로는 우천 6.1%, 강풍 6.1%, 휴무 17.8%, TC 인상작업 5.8%, 기타 고장 및 수리 등이 0.07% 인 것으로 분석되었다. 이러한 연구결과는 향후 초고층 골조 공사의 공정을 계획하고 관리함에 있어 유용한 자료가 될 것으로 기대된다.

Seismic performance of a 10-story RC box-type wall building structure

  • Hwang, Kyung Ran;Lee, Han Seon
    • Earthquakes and Structures
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    • 제9권6호
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    • pp.1193-1219
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    • 2015
  • The purpose of this study is to evaluate the seismic performance of high-rise reinforced concrete (RC) box-type wall structures commonly used for most residential buildings in Korea. For this purpose, an analytical model was calibrated with the results of the earthquake simulation tests on a 1:5 scale 10-story distorted model. This calibrated model was then transformed to a true model. The performance of the true model in terms of the stiffness, strength, and damage distribution through inelastic energy dissipation was observed with reference to the earthquake simulation test results. The model showed high overstrength factors ranging from 3 to 4. The existence of slab in this box-type wall system changed the main resistance mode in the wall from bending moment to tension/compression coupled moment through membrane actions, and increased the overall resistance capacity by about 25~35%, in comparison with the common design practice of neglecting the slab's existence. The flexibility of foundation, which is also commonly neglected in the engineering design, contributes to 30~50% of the roof drift in the stiff direction containing many walls. The possibility of concrete spalling and reinforcement buckling and fracture under the maximum considered earthquake (MCE) in Korea appears to be very low when compared with the case of the 2010 Concepcion, Chile earthquake.

내화피복이 생략된 합성보의 구조설계지침 제정을 위한 고찰 (Structural Design Guide Line of Composite Beam)

  • 홍원기;김진민;이경훈;박선치;김점한
    • KIEAE Journal
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    • 제8권1호
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    • pp.93-98
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    • 2008
  • As high rise buildings and large span spatial structures are constructed, new composite members and construction techniques are continuously developed. Wide flange steel beam can be easily constructed but the fire proofing protection is necessary and the cost is high. Nowadays environmental pollution of structures is becoming a big issue. The material of fire proofing protection is not allowed to use for structural members in several countries because it cab be a cause of environment pollution. Composite beam is a new hybrid beam system which is not needed a fire proofing protection process. Composite beam has better construction capacity than that of RC system and has more economic advantages than that of wide flange steel beam. In this paper, structural design guide lines of composite beam were provided to apply design and construction.

Shear strength formula of CFST column-beam pinned connections

  • Lee, Seong-Hui;Kim, Young-Ho;Choi, Sung-Mo
    • Steel and Composite Structures
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    • 제13권5호
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    • pp.409-421
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    • 2012
  • Recently, as the height of building is getting higher, the applications of CFST column for high-rise buildings have been increased. In structural system of high-rise building, The RC core and exterior concrete-filled tubular (CFST) column-beam pinned connection is one of the structural systems that support lateral load. If this structural system is used, due to the minimal CFST column thickness compared to that of the CFST column width, the local moment occurred by the eccentric distance between the column flange surface from shear bolts joints degrades the shear strength of the CFST column-beam pinned connections. This study performed a finite element analysis to investigate the shear strength under eccentric moment of the CFST column-beam pinned connections. The column's width and thickness were used as variables for the analysis. To guarantee the reliability of the finite element analysis, an actual-size specimens were fabricated and tested. The yield line theory was used to formulate an shear strength formula for the CFT column-beam pinned connection. the shear strength formula was suggested through comparison on the results of FEM analysis, test and yield lime theory, the shear strength formula was suggested.

Seismic collapse safety of high-rise RC moment frames supported on two ground levels

  • Wu, Yun-Tian;Zhou, Qing;Wang, Bin;Yang, Yeong-Bin;Lan, Tian-Qing
    • Earthquakes and Structures
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    • 제14권4호
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    • pp.349-360
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    • 2018
  • Reinforced concrete (RC) moment frames supported on two ground levels have been widely constructed in mountainous areas with medium to high seismicity in China. In order to investigate the seismic collapse behavior and risk, a scaled frame model was tested under constant axial load and reversed cyclic lateral load. Test results show that the failure can be induced by the development of story yielding at the first story above the upper ground. The strong column and weak beam mechanism can be well realized at stories below the upper ground. Numerical analysis model was developed and calibrated with the test results. Three pairs of six case study buildings considering various structural configurations were designed and analyzed, showing similar dynamic characteristics between frames on two ground levels and flat ground of each pair. Incremental dynamic analyses (IDA) were then conducted to obtain the seismic collapse fragility curves and collapse margin ratios of nine analysis cases designated based on the case study buildings, considering amplification of earthquake effect and strengthening measures. Analysis results indicate that the seismic collapse safety is mainly determined by the stories above the upper ground. The most probable collapse mechanism may be induced by the story yielding of the bottom story on the upper ground level. The use of tie beam and column strengthening can effectively enhance the seismic collapse safety of frames on two ground levels.