• 제목/요약/키워드: Tall Office Building

검색결과 55건 처리시간 0.019초

비틀림 하중(荷重)을 받는 심벽구조물(心壁構造物)의 해석(解析)에 관한 연구(研究) (A Study on Analysis of Core-Wall Structure Subjected to Torque)

  • 김성칠
    • 대한토목학회논문집
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    • 제3권2호
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    • pp.137-144
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    • 1983
  • 고층건물에서의 전단벽(剪斷壁)은 횡하중을 지지(支持)하기 위해서 설치되는 구조물이다. 이 전단벽(剪斷壁)의 단면의 형태는 여러 가지 형태가 있을 수 있는데 개방단면을 갖게 되는 경우 이 부재는 비틀림에 약하기 때문에 이 점이 문제가 된다. 특히 그 구조물이 thin walled member인 경우는 더욱 그러하다. 최근에는 건물이 점점 고층화됨에 따라 이 문제는 더욱더 중요(重要)시 되어 보다 정확한 지식이 요구(要求)되고 있다. 본 논문(論文)에서는 고층건물에 설치되는 에리베이터 츄브가 전단벽 역할을 하는 경우로 단면의 형태는 channel형이고, 각 층마다 중방(中枋)(connecting beam)에 의해서 개방단면의 일부가 닫혀있게 되는 경우의 문제를 택하였다. 이를 해석(解析)하는데 복잡한 계산과 많은 계산량을 줄이고 적용에 대한 융통성을 부여하기 위해서 discrete 방법(方法)과 transfer matrix method을 사용(使用)하였다. 중방(中枋)의 영향을 고려함에 있어서는 중방(中枋)의 강도가 클 때나 적을 때나 합리적(合理的)으로 사용할 수 있는 식(式)을 적용하였다. 특히 이 방법(方法)은 불규칙한 변단면에도 쉽게 적용할 수 있을뿐만 아니라 여러 가지 하중조건에 대한 해를 일일이 구할 필요가 없으며, 형성되는 transfer matrix의 크기가 $4{\times}4$ 밖에 안되므로 쉽게 구할 수 있다.

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Structural Design and Performance Evaluation of a Mid-story Seismic Isolated High-Rise Building

  • Tamari, Masatoshi;Yoshihara, Tadashi;Miyashita, Masato;Ariyama, Nobuyuki;Nonoyama, Masataka
    • 국제초고층학회논문집
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    • 제6권3호
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    • pp.227-235
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    • 2017
  • This paper describes some of the challenges for structural design of a mid-story seismic isolated high-rise building, which is located near Tokyo station, completed in 2015. The building is a mixed-use complex and encompasses three volumes: one substructure including basement and lower floors, and a pair of seismic isolated superstructures on the substructure. One is a 136.5m high Main Tower (office use), and the other is a 98.5 m high South Tower (hotel use). The seismic isolation systems are arranged in the $3^{rd}$ floor of the Main Tower and $5^{th}$ floor of the South Tower, so that we call this isolation system as the mid-story seismic isolation. The primary goal of the structural design of this building was to secure high seismic safety against the largest earthquake expected in Tokyo. We adopted optimal seismic isolation equipment simulated by dynamic analysis to minimize building damage. On the other hand, wind-induced vibration of a seismic isolated high-rise building tends to be excited. To reduce the vibration, the following strategies were adopted respectively. In the Main Tower with a large wind receiving area, we adopted a mechanism that locks oil dampers at the isolation level during strong wind. In the South Tower, two tuned mass dampers (TMDs) are installed at the top of the building to control the vibration. In addition, our paper will also report the building performance evaluated for wind and seismic observation after completion of the building. In 2016, an earthquake of seismic intensity 3 (JMA scale) occurred twice in Tokyo. The acceleration reduction rate of the seismic isolation level due to these earthquakes was approximately 30 to 60%. These are also verified by dynamic analysis using observed acceleration data. Also, in April 2016, a strong wind exceeding the speed of 25m/s occurred in Tokyo. On the basis of the record at the strong wind, we confirmed that the locking mechanism of oil damper worked as designed.

Field Measurement and Modal Identification of Various Structures for Structural Health Monitoring

  • Yoshida, Akihiko;Tamura, Yukio
    • 국제초고층학회논문집
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    • 제4권1호
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    • pp.9-25
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    • 2015
  • Field measurements of various structures have been conducted for many purposes. Measurement data obtained by field measurement is very useful to determine vibration characteristics including dynamic characteristics such as the damping ratio, natural frequency, and mode shape of a structure. In addition, results of field measurements and modal identification can be used for modal updating of FEM analysis, for checking the efficiency of damping devices and so on. This paper shows some examples of field measurements and modal identification for structural health monitoring. As the first example, changes of dynamic characteristics of a 15-story office building in four construction stages from the foundation stage to completion are described. The dynamic characteristics of each construction stage were modeled as accurately as possible by FEM, and the stiffness of the main structural frame was evaluated and the FEM results were compared with measurements performed on non-load-bearing elements. Simple FEM modal updating was also applied. As the next example, full-scale measurements were also carried out on a high-rise chimney, and the efficiency of the tuned mass damper was investigated by using two kinds of modal identification techniques. Good correspondence was shown with vibration characteristics obtained by the 2DOF-RD technique and the Frequency Domain Decomposition method. As the last example, the wind-induced response using RTK-GPS and the feasibility of hybrid use of FEM analysis and RTK-GPS for confirming the integrity of structures during strong typhoons were shown. The member stresses obtained by hybrid use of FEM analysis and RTK-GPS were close to the member stresses measured by strain gauges.

고층건물의 자연 진동실험 및 시스템판별 (Ambient Vibration Testing and System Identification for Tall Buildings)

  • 조순호
    • 한국지진공학회논문집
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    • 제16권3호
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    • pp.23-33
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    • 2012
  • 구조물의 특성치를 결정하기 위하여 18층 규모의 사무용 건물 3동에 대하여 자연진동 조건하에서 동적계측실험을 수행하였다. 대상건물은 기본적으로 보-기둥 골조시스템에 횡하중을 보다 효율적으로 지지하기 위하여 추가적으로 코아가 배치된 혼합 구조형식을 나타낸다. 매층 마다 측정한 일련의 진동기록으로부터 고유진동수, 모드형태 및 감쇠율 등과 같은 모달계수를 추출하기 위하여 최신 주파수- 및 시간영역-기반 응답의존 시스템판별법인 FDD, pLSCF 및 SSI를 적용하였다. 3방법에 의하여 추출한 결과는 대체로 일치하였으나, 초기 FE 해석결과와 비교하여 저차 3개 고유진동수는 대략 1.2~1.7배나 되는 단단한 거동을 나타냈다. 진동응답으로부터 추출된 값, 기준에서 제시하는 약산식 및 FE해석에 의하여 산정된 고유주기를 비교하여 보면, FE결과가 가장 유연한 거동을 예측하였으며, 높이를 변수로 하는 약산식이 추출된 값에 가장 근접한 결과를 나타냈다. 이러한 차이는 현재의 실험 추출치에는 콘크리트 균열 등과 같은 강성저감 요인을 포함하고 있지 않으며, 또한 FE 해석치는 비구조체 및 사용된 재료의 실제성능 등과 관련된 강성증가 요소를 포함하고 있지 않기 때문이다.

A Study on the POE (Post Occupancy Evaluation) according to the Residential Environment of Mixed-use Apartment Complexes In Seoul

  • Ha, Man Joon
    • 국제초고층학회논문집
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    • 제9권2호
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    • pp.197-212
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    • 2020
  • In this study, POE(Post Occupancy Evaluation) evaluation indexes were selected into six categories through the consideration of theories and prior research. Therefore, qualitative supply can be achieved through POE according to the aspect of residential environment after the quantitative supply of mixed-use apartment complex by the population concentration in Seoul due to industrialization and urbanization. As the evaluation elements, detailed survey contents were selected for livability, convenience, comfort, safety, economy, and sociality. Based on the survey contents, six elements were evaluated and analyzed using Data coding and Likert scale after surveying 12 complexes (Urban areas and non-urban areas) in Seoul. As a result of the study, six categories selected as the POE showed that importance of quality of life and safety was developed in high recognition according to high satisfaction with convenience and safety. Sociality showed the lowest satisfaction in the following order : livability, comfort, economy and sociality. Residents' sense of community, interaction with neighborhood, etc., showed low satisfaction, and it seems that it is necessary to improve and supplement the system for the development of mixed-use apartment complex in the future. The detailed characteristics of livability showed high satisfaction of the living room, the front door and the main room which are main uses of housing, and low satisfaction in storage size. The analysis of convenience is that convenient public transportation was the highest, and educational environment and additional facilities were the lowest, showing the advantages and disadvantages of location characteristics. As a result of the analysis of comfort, satisfaction with the landscape area was low and it seems that green space is needed for the development of mixed-use apartment complex in the future. Lastly, regarding the safety, the satisfaction of the access control, the location of security office, etc. were high, however separation of circulation was low. Therefore, it is necessary to clearly separate the circulation between the residence and other facilities in the mixed-use apartment complex.