• 제목/요약/키워드: Super Tall Building

검색결과 130건 처리시간 0.025초

Numerical simulation on fluid-structure interaction of wind around super-tall building at high reynolds number conditions

  • Huang, Shenghong;Li, Rong;Li, Q.S.
    • Structural Engineering and Mechanics
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    • 제46권2호
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    • pp.197-212
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    • 2013
  • With more and more high-rise building being constructed in recent decades, bluff body flow with high Reynolds number and large scale dimensions has become an important topic in theoretical researches and engineering applications. In view of mechanics, the key problems in such flow are high Reynolds number turbulence and fluid-solid interaction. Aiming at such problems, a parallel fluid-structure interaction method based on socket parallel architecture was established and combined with the methods and models of large eddy simulation developed by authors recently. The new method is validated by the full two-way FSI simulations of 1:375 CAARC building model with Re = 70000 and a full scale Taipei101 high-rise building with Re = 1e8, The results obtained show that the proposed method and models is potential to perform high-Reynolds number LES and high-efficiency two-way coupling between detailed fluid dynamics computing and solid structure dynamics computing so that the detailed wind induced responses for high-rise buildings can be resolved practically.

TORANOMON HILLS - Super High-Rise Building on Urban Highway -

  • Hitomi, Yasuyoshi;Takahashi, Hiroshi;Karasaki, Hidenori
    • 국제초고층학회논문집
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    • 제3권3호
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    • pp.167-171
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    • 2014
  • TORANOMON HILLS is the main building of a large-scale re-development project located in the center of Tokyo. This high-rise building has a height of 247 m and 52 floors above ground, 5 floors below ground, and $62m{\times}80m$ in plan. It is used as hotel, residential facilities, offices, shops and conference facilities. The super structure is mainly a rigid steel frame with response-control devices, using concrete-filled steel tube columns. The underground section is a mixed structure composed of steel, steel-reinforced concrete and reinforced concrete framings. The piled-raft foundation type is used. The remarkable feature of this high-rise building is that the motorway runs through the basements of the building, which makes it stand just above the motorway. This condition is an important factor of the building design. The plan shape is designed to fit along the curve of the motorway. Special columns at the corners are required to avoid placing columns in the motorway. This special column is a single inclined column in the lower floors that branches into two columns in the mid-floors to suit the column location in the upper floors. The cast steel joint is used for the branching point of each special column to securely transfer the stress.

Experimental and numerical investigations on seismic performance of a super tall steel tower

  • He, Minjuan;Li, Zheng;Ma, Renle;Liang, Feng
    • Earthquakes and Structures
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    • 제7권4호
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    • pp.571-586
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    • 2014
  • This paper presents experimental and numerical study on seismic performance of a super tall steel tower structure. The steel tower, with a height of 388 meters, employs a steel space truss with spiral steel columns to serve as its main lateral load resisting system. Moreover, this space truss was surrounded by the spiral steel columns to form a steel mega system in order to support a 12-story platform building which is located from the height of 230 meters to 263 meters. A 1/40 scaled model for this tower structure was made and tested on shake table under a series of one- and two-dimensional earthquake excitations with gradually increasing acceleration amplitudes. The test model performed elastically up to the seismic excitations representing the earthquakes with a return period of 475 years, and the test model also survived with limited damages under the seismic excitations representing the earthquakes with a return period 2475 years. A finite element model for the prototype structure was further developed and verified. It was noted that the model predictions on dynamic properties and displacement responses agreed reasonably well with test results. The maximum inter-story drift of the tower structure was obtained, and the stress in the steel members was investigated. Results indicated that larger displacement responses were observed for the section from the height of 50 meters to 100 meters in the tower structure. For structural design, applicable measures should be adopted to increase the stiffness and ductility for this section in order to avoid excessive deformations, and to improve the serviceability of the prototype structure.

설계기준강도 60~80MPa급 고강도콘크리트의 재료 특성 및 크리프 예측모델식 제안 (Suggestion of the Prediction Model for Material Properties and Creep of 60~80MPa Grade High Strength Concrete)

  • 문형재;구경모;김홍섭;석원균;이병구;김규용
    • 한국건축시공학회지
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    • 제18권6호
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    • pp.517-525
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    • 2018
  • 초고층 RC구조물 건설은 콘크리트 크리프에 대한 반영이 반드시 검토되어야 한다. Fck60~80MPa를 적용하는 국내 초고층 건축물에 대하여 각종 역학적 특성과 양생조건(Dried/Sealed)별 크리프에 대해 검토하였다. Sealed 조건에서의 압축강도 및 탄성계수는 Unsealed 조건에 비해 약 5% 높게 나타났으며, 시간이 지날수록 차이가 크게 나타났다. 크리프 계수의 경우 Unsealed 조건에서 Sealed 조건 대비 2~3배 높게 평가되었고, ACI 209 모델을 보완한 수정 예측 모델의 경우 수직부재(코어월 및 메가칼럼)에서의 장기재령 예측식으로 적용하였다. 향후 실제 부재에서 측정되는 다양한 데이터를 바탕으로 최적 크리프 모델에 대해 보완 및 제안할 예정이다.

초고층건물 계단실 단독 급기가압 제연조건이 연돌효과에 미치는 영향 (The Influence of Stairway Pressurization Conditions on the Stack Effect in Super-tall Buildings)

  • 박용환;김범규
    • 한국화재소방학회논문지
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    • 제24권4호
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    • pp.109-115
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    • 2010
  • 중앙코어형 80층 초고층건물에서 평상시 동절기 연돌효과에 따른 최대차압은 약 75Pa로 외부 풍속이 없을 시에는 별 문제가 되지 않았으며, 화재로 계단실 단독 급기가압 시에는 급기가압 팬의 위치에 따라 급기 초기에 최대 약 225pa의 차압이 발생할 수 있으며 이를 해소하기 위한 적절한 과압배출장치나 대책이 필요하였다. 급기 송풍기의 위치에 따른 단독하부급기 방식이 최대차압의 크기와 분포 특성 및 최소설계차압 유지를 위한 소요풍량 면에서 가장 유리하였으며, 단독 상부급기방식은 소요급기풍량이나 차압분포 특성을 고려할 때 우리나라 특성에는 가장 적합하지 않는 것으로 나타났다. 차가운 외기 급기로 인해 계단실의 온도가 점차 하강하게 되면 계단실 연돌효과의 감소로 인해 소요풍량이 줄어들었으며 고층부에서의 차압은 줄어드는 반면 저층부에서의 차압이 크게 증가하는 양상으로 변화하는 것으로 나타났다.

The Structural Design of Tianjin Goldin Finance 117 Tower

  • Liu, Peng;Ho, Goman;Lee, Alexis;Yin, Chao;Lee, Kevin;Liu, Guang-lei;Huang, Xiao-yun
    • 국제초고층학회논문집
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    • 제1권4호
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    • pp.271-281
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    • 2012
  • Tianjin Goldin Finance 117 tower has an architectural height of 597 m, total of 117 stories, and the coronation of having the highest structural roof of all the buildings under construction in China. Structural height-width ratio is approximately 9.5, exceeding the existing regulation code significantly. In order to satisfy earthquake and wind-resisting requirements, a structure consisting of a perimeter frame composed of mega composite columns, mega braces and transfer trusses and reinforced concrete core containing composite steel plate wall is adopted. Complemented by some of the new requirements from the latest Chinese building seismic design codes, design of the super high-rise building in high-intensity seismic area exhibits a number of new features and solutions to professional requirements in response spectrum selection, overall stiffness control, material and component type selection, seismic performance based design, mega-column design, anti-collapse and stability analysis as well as elastic-plastic time-history analysis. Furthermore, under the prerequisite of economic viability and a series of technical requirements prescribed by the expert review panel for high-rise buildings exceeding code limits, the design manages to overcome various structural challenges and realizes the intentions of the architect and the client.

The Structural Engineering Design And Construction Of The Tallest Building In Europe Lakhta Center, St. Petersburg. Russia

  • Abdelrazaq, Ahmad;Travush, Vladimir;Shakhvorostov, Alexey;Timofeevich, Alexander;Desyatkin, Mikhail;Jung, Hyungil
    • 국제초고층학회논문집
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    • 제9권3호
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    • pp.283-300
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    • 2020
  • The Lakhta Center is a Multifunction Complex Development (MFCD) consisting of 1) an 86 story office tower rising 462 m above the ground to provide high-end offices for Gazprom Neft and Gazprom Group affiliates 2) a Multi-Function Building (MFB) that includes, a scientific/educational center, a sport center, a children's technopark, a planetarium, a multi-transformable hall, an exhibition center, shops, restaurants, and other public facilities 3) a Stylobate 4) "The Arch, which forms the main entrance to the tower, restaurants, and cafes 5) underground parking and 6) a wide range of large public plazas. While each of the MFCD buildings is technically challenging in its own right, the focus of the paper is to present the development and integration of the structural and foundation systems of the bowed, tapered, and twisted shape of the tower into the fabric of the tallest Tower in Europe.

Stability of Diagrid Structures

  • Rahimian, Ahmad
    • 국제초고층학회논문집
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    • 제5권4호
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    • pp.263-270
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    • 2016
  • In this paper, the stability requirements for diagrid and mega braced structures are examined. The role of the secondary bracing system for the stability of a diagrid structure is discussed. A simple procedure is proposed for the design of the secondary bracing system when it is required. As a case study, the design of the Hearst Tower diagrid and its secondary bracing system are presented.

W350 - The Roadmap Of Super High-Rise Timber Building -

  • Harada, Hiroaki;Fukushima, Takashi;Hatori, Tatsuya;Aoyagi, Hajime
    • 국제초고층학회논문집
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    • 제9권3호
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    • pp.255-260
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    • 2020
  • This research and technology development project is based on the concept and plan of Sumitomo Forestry Co., Ltd., and designed by Nikken Sekkei Ltd., and is aiming to realize 350 m supertall timber-framed buildings in urban areas by 2041, the 350 year anniversary of Sumitomo Forestry's founding(Fig. 1). By constructing office-based multi-use buildings which have 70 stories above ground with GFA of 455,000 ㎡, using a huge amount of timber of 185,000 ㎥, this project envisions to connect forests and cities, and to solve the problems in both of forests and cities. At the present stage, the main objective is to identify the issues related to wood, such as building structural systems, construction methods, materials used, and resource development, and to create a roadmap for future technologies to be researched and developed.

초고층빌딩의 융합적 건축형태 분류와 경향에 관한 연구 (A Study on Classifications and Trends with Convergence Form Characteristics of Architecture in Tall Buildings)

  • 박상준
    • 한국과학예술포럼
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    • 제37권5호
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    • pp.119-133
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    • 2019
  • 본 연구는 초고층 건물의 치열한 높이 경쟁이 지속되면서 더 이상 높이만으로는 다른 건물과의 차별성이 부족하다는 인식이 팽배하면서 비정형적 형태에서 경쟁력이 새롭게 부각되고 있다. 또한 비정형 초고층 건물은 높이뿐만 아니라 그 형태로도 국가, 도시, 기업의 경제적 경쟁력을 표출하는 상징성을 드러내고 있다. 디지털 미디어가 도입되기 이전에는 건축물의 구조와 형태사이에 간극이 존재했으며 이를 해결하기 위한 별도의 구조적인 매개물이 요구되었다. 1980년대 후반부터 디지털 기반의 비정형재현 과정이 실험적으로 활용하기 시작하였고 2000년 이전에는 사무공간의 초고층건축으로 사용하거나 산업용 굴뚝, 통신탑 등의 용도가 대부분이었다. 2000년 이후 대다수 글로벌 브랜드호텔 또는 상·주거공간으로 복합·다양한 용도의 초고층건축이 증가하는 추세에 의해 최근의 건축사례들은 이전의 한계를 벗어나고 있음을 분명하게 확인된다. 복잡한 비정형형상으로부터 직접적인 구조체계를 도출하고 사선형, 곡면형이 지닌 조형적인 표현성을 실현할 수 있는 디지털 기반의 형성을 통해 구조와 형태사의 새로운 관계설정에 대한 필요성이 요구된다. 이에 2000년 이후 신축된 건축 가운데 국제초고층협의회(CTBUH)의 데이터를 기준에 의해 초고층 100위의 빌딩을 대상으로 정형 및 사선형, 곡면형 등으로 구분하여 조형적 형태를 인지하는 실질적인 설계가 이루어지는 설계 프로세스를 근거로 한다. 본 연구의 목적은 복잡·다양한 비정형 건축형태를 구축하기 위한 형태의 상호관련성을 유추하는데 목적이 있다. 따라서 연구 결과는 다음과 같다. 첫째, 복합된 용도의 건물에 따른 다양한 형태구성의 고층부의 외관이 보인다. 둘째, 접힘은 내부방향으로 반복적 접힘이 적용되어 나타난다. 셋째, 2방향 곡면은 twist의 속성을 가지는 pure, helix, spiral twist 유형의 대부분 나타난다. 그러므로 향후 본 연구를 기반으로 미래 초고층건축의 형태분류 및 양상을 예측하는데 기초적 데이터로서 활용하고자 한다.