• Title/Summary/Keyword: 콘크리트 건물

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Analysis of a Behavior of Shear Stud in Steel-concrete Composite Beam using High-rise Building (초고층 건물에 적합한 합성보에서 전단스터드의 거동에 관한 비교 분석 연구)

  • Shim, Hak-Bo;Jang, Sung-Hoon;Park, Soon-Joen;Lee, Joo-Ho
    • 한국방재학회:학술대회논문집
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    • 2010.02a
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    • pp.34.2-34.2
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    • 2010
  • 건물이 초고층화됨에 따라 고강도 콘크리트를 구조물에 적용하고 있으며 내화 시 폭열 예방을 위해서 고강도 콘크리트에 섬유를 첨가하는 경우도 있다. 초고층 구조물 합성부재에서 강재보와 콘크리트 슬래브의 합성작용을 위해서는 전단스터드를 필요로 하게 된다. 오늘날 제시된 전단스터드 설계식은 일반강도 콘크리트 실험에 의해 제시되었고 전단스터드는 항복강도에만 제한되는 것으로 나타났다. 따라서 본 논문은 초고층 건물에 적합한 고강도콘크리트를 기존 제안식으로 비교 분석하고 새로운 설계식의 필요성을 확인하며 ANSYS 모델링을 통한 전단스터드의 거동을 분석하는데 그 목적이 있다.

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A Proposal of Rapid-Screening Method for Seismic Capacity Evaluation of Low-Rise R/C Buildings - Part 3. Verification of Applicability of Rapid-Screening Method - (저층 철근콘크리트 건물의 간이 내진성능 평가법 제안 - Part 3. 내진성능 평가법의 타당성 검증 -)

  • Lee, Kang-Seok;Kim, Yong-In;Wi, Jeong-Doo
    • Proceedings of the Korea Concrete Institute Conference
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    • 2009.05a
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    • pp.467-468
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    • 2009
  • In this study, seismic capacity of R/C school buildings are investigated on the basis of the 2nd and 3rd level procedures of the Japanese Standard for Evaluation of Seismic Capacity of Existing R/C Buildings, push-over analysis and nonlinear dynamic analysis, respectively. In order to verify the applicability of the new method proposed in this study, relationships between evaluation results of the proposed methods shown in Part-2 and detailed evaluation methods mentioned above are compared.

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Effect of Seismic Load on Residential RC Buildings under Construction Considering Construction Period (시공기간을 고려한 주거용 철근콘크리트 건물의 시공 중 지진하중 영향 분석)

  • Choi, Seong-Hyeon;Kim, Jea-Yo
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.35 no.4
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    • pp.235-242
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    • 2022
  • Compared with buildings that have already been constructed, buildings under construction may be more vulnerable to such natural disasters as earthquakes because the concrete strength is not yet sufficient. Currently, Korean design standards present minimum performance targets for each seismic grade of buildings, but the seismic load for design is based on a return period of 2400 years. However, because the construction period of the building is much shorter than the period of use of the building, the application of the earthquake return period of 2400 years to buildings under construction may be excessive. Therefore, in this study, a construction stage model of buildings with 5, 15, 25, and 60 floors was created to analyze earthquake loads during construction of residential reinforced concrete (RC) buildings. The structural stability was confirmed by applying reduced seismic loads according to the return period. As a result, the structural stability was checked for an earthquake of the return period selected according to the construction period, and the earthquake return period that can secure structural safety according to the size of the building was confirmed.

Aircraft Impact Analysis of Steel Fiber Reinforced Containment Building (강섬유를 적용한 원전 격납건물의 항공기 충돌해석)

  • Seo, Dong Won;Noh, Hyuk Chun
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.26 no.2
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    • pp.157-164
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    • 2013
  • In this study, the structural performance of nuclear power plant containment buildings, which are made of steel fiber reinforced concrete(SFRC) and subject to aircraft crash, is examined by finite element analyses. The applied loads by aircraft crash against the buildings are modeled using Riera impact load function and by the varying aircraft contact area with respect to time. CSCM concrete model in LS-DYNA is employed to model SFRC. The parameters for the material model are determined from SFRC strength prediction models. Based on the volume ratio of steel fiber in SFRC, the structural performance of nuclear containment buildings subject to aircraft crash are analysed using a commercial finite element analysis program LS-DYNA. The safety assessments of the buildings subject to the crash are discussed and the effectiveness of SFRC for nuclear power plant containment building on the increase of aircraft crash resistance is also evaluated.

A Study on the Prediction of Shortening for Steel-Reinforced Concrete(SRC) Column in the High-Rise Buildings (초고층 건물에서 철골철근콘크리트(SRC) 기둥의 축소량 예측에 관한 연구)

  • Jeong Eun-Ho;Kim Jeom-Han
    • Journal of the Korea Concrete Institute
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    • v.16 no.1 s.79
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    • pp.36-42
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    • 2004
  • Although steel-reinforced concrete(SRC) is widely used in a high-rise building, a methods used to predict the column shortening of SRC structural members has many problems in applying a theoretical equation which considers only the material characteristics of reinforced concrete. In this study, the degree of accuracy of the existing method calculating the column shortening of a high-rise building is examined. For this, first, the actual measurement data are chosen about the column shortening of a high-rise building established with SRC structural members. Then the column shortening of a SRC structural member is calculated through computer program. Finally, the comparison between the measurement data and the analytical ones is executed. According to this study, it can be concluded that there is little difference between the former and the latter. Therefore, the existing method can be used to evaluate the column shortening of a high-rise building using a SRC structural members.

Structural Behavior of Reinforced Concrete Short Columns by Pseudo-Dynamic Test (유사동적실험을 이용한 철근콘크리트 단주실험에 관한 연구)

  • Min, Kyung-Min;Kim, Yong-In;Lee, Kang-Seok
    • Proceedings of the Korea Concrete Institute Conference
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    • 2008.11a
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    • pp.73-76
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    • 2008
  • According to the survey of earthquake disaster, low-rise reinforced concrete building larger by the extent of damage and because of the underlying distribution of reinforced concrete structures more, it is very likely to be disasters. The purpose of this study is to discuss how strength and stiffness of each system in low-rise reinforced concrete buildings consisted of extremely brittle, shear and flexural failure lateral-load resisting systems have influence on seismic capacities of the overall system. Generally, if shear failure members including extremely brittle failure members are failed during an earthquake, the lateral-load resisting seismic capacities of RC buildings are lower rapidly, and if the seismic capacities of shear failure members were higher than that of flexural failure members, failures of shear failure members have influence on failures of the overall system. The result of this paper will provide pseudo-dynamic test of carried out to estimate the possibility of proposals.

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Seismic Capacity Evaluation of Low-Rise Reinforced Concrete Buildings in Korea (국내 저층 철근콘크리트 건물의 내진성능 평가)

  • Lee, Kang-Seok;Kim, Yong-In;Min, Kyung-Min
    • Proceedings of the Korea Concrete Institute Conference
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    • 2008.11a
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    • pp.241-244
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    • 2008
  • The authors proposed a new rapid-screening method for more reasonably evaluating seismic capacities of medium and low-rise RC buildings controlled by both shear and flexure in Ref. [1]. The method proposed in Ref. [1] was based on relationships between required strengths of each failure system for ductility factors and damage degrees of overall system derived from the view-point of ductility factors. The proposed method was also verified using observed real damage data of low-rise RC buildings caused by past earthquakes. Results indicated that the methodology proposed in Ref. [1] compares well with real damages and is a useful strategy for rapidly identifying low-rise RC buildings having high potential seismic risk. In this study, in order to verify the applicability of the new methodology proposed in Ref. [1] to real RC building systems, seismic capacities of existing eleven low-rise RC buildings in Korea are evaluated based on the new method.

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Earthquake Damage Assessment of Reinforced Concrete School Buildings in Korea (국내 철근콘크리트 학교건물의 지진피해율 분포에 관한 연구)

  • Jeon, Kyeong-Joo;Wi, Jeong-Du;Lee, Kang-Seok;Hwang, Ki-Tae;Yoon, Seok-Hoon
    • Proceedings of the Korea Concrete Institute Conference
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    • 2010.05a
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    • pp.117-118
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    • 2010
  • In this study, seismic capacities of reinforced concrete school buildings in S, G and J provinces(korea) are evaluated based on the rapid-screening method proposed in the previous research(Ref.1). And also, slight, medium and severe earthquake damage ratios, estimated in terms of ground acceleration levels(0.1g~0.25g), are also assessed herein.

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A Study on Evaluation of Ultimate Internal Pressure Capacity of CANDU-type Nuclear Containment Buildings (CANDU형 원자로 격납건물의 극한내압능력 평가에 관한 연구)

  • Kim, Sun-Hoon
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.24 no.3
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    • pp.343-351
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    • 2011
  • Nuclear containment building is the last barrier for being secure from any nuclear power plant accident. Therefore, it is very important to understand the ultimate capacity of nuclear containment building to loads associated with severe accidents. LOCA (loss of coolant accident) is considered as the basic accidental load and CANDU-type containment building is considered as a target structure in order to conduct the numerical analysis for the structural safety of a containment building. The CANDU-type containment building is a prestressed concrete shell structure which has the dome and the cylindrical wall and is reinforced with bonded tendons. In this paper, the evaluation of ultimate internal pressure capacity was carried out by nonlinear analysis of a prestressed concrete containment building using 3-dimensional structural analysis system.