• 제목/요약/키워드: High rise building foundation

검색결과 81건 처리시간 0.022초

Investigation of effects of twin excavations effects on stability of a 20-storey building in sand: 3D finite element approach

  • Hemu Karira;Dildar Ali Mangnejo;Aneel Kumar;Tauha Hussain Ali;Syed Naveed Raza Shah
    • Geomechanics and Engineering
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    • 제32권4호
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    • pp.427-443
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    • 2023
  • Across the globe, rapid urbanization demands the construction of basements for car parking and sub way station within the vicinity of high-rise buildings supported on piled raft foundations. As a consequence, ground movements caused by such excavations could interfere with the serviceability of the building and the piled raft as well. Hence, the prediction of the building responses to the adjacent excavations is of utmost importance. This study used three-dimensional numerical modelling to capture the effects of twin excavations (final depth of each excavation, He=24 m) on a 20-storey building resting on (4×4) piled raft. Because the considered structure, pile foundation, and soil deposit are three-dimensional in nature, the adopted three-dimensional numerical modelling can provide a more realistic simulation to capture responses of the system. The hypoplastic constitutive model was used to capture soil behaviour. The concrete damaged plasticity (CDP) model was used to capture the cracking behaviour in the concrete beams, columns and piles. The computed results revealed that the first excavation- induced substantial differential settlement (i.e., tilting) in the adjacent high-rise building while second excavation caused the building tilt back with smaller rate. As a result, the building remains tilted towards the first excavation with final value of tilting of 0.28%. Consequently, the most severe tensile cracking damage at the bottom of two middle columns. At the end of twin excavations, the building load resisted by the raft reduced to half of that the load before the excavations. The reduced load transferred to the piles resulting in increment of the axial load along the entire length of piles.

초고층 건축물 대형기초의 시공 사례 (바레트 말뚝 중심) (A Construction Case of Massive Foundation for High Rise Building (A Case of Barrette Pile))

  • 정경환;정동영;문준배;김동준
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2007년 가을학술발표회
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    • pp.90-104
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    • 2007
  • The trend of current urban redevelopment and new city development project shows that the superstructure of building is getting larger and higher in consequence of a limited plottage condition and the preference of landmark. For this reason, it is definitely required to extend pile diameter and install the pilein deep foundation to support superstructure. The pile method causes construction-related problems such as increasing quantities, difficulty of storage & transportation material and decreasing design load while construct pile in deep foundation. The Bored Pile method has applied to minimize those problems. As above shown, this article will be presented construction case study of Barrette Pile and R.C.D in order to make a counterproposal for the quality control of a large building foundation work.

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잠열재를 사용한 결합재의 수화발열 특성에 관한 실험적 연구 (Experimental Study on the Generation of Hydration Heat of Binder using Latent Heat Material)

  • 김용로;김도수;길배수;김욱종;이도범
    • 한국건축시공학회지
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    • 제9권3호
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    • pp.103-107
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    • 2009
  • It is necessary to develop a new technology for effectively controlling thermal crack caused hydration heat according to the increasing construction of large size massive concrete structures such as mat foundation of high-rise building. Therefore, to develop a new technology for reducing hydration heat of large size massive concrete in this study, it was investigated hydration heat generation properties of binder using latent heat materials. As a test result, it was confirmed that latent heat materials were advanced on the reduction of hydration heat and control of thermal crack. It is expected to be applied as the excellent technology on the management of hydration heat and thermal crack in large size massive concrete structures.

Structural Design and Construction for Tall Damped Building with Irregularly-Shaped Plan and Elevation

  • Yamashita, Yasuhiko;Kushima, Soichiro;Okuno, Yuuichirou;Morishita, Taisei
    • 국제초고층학회논문집
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    • 제7권3호
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    • pp.255-264
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    • 2018
  • This paper introduces three distinctive means for the use of a 189-meter high damped structure ensuring safety against earthquake: 1. Realization of L-shaped elevational structural planning: The bottom and top of the tower have belt trusses and hat trusses respectively to restrain the bending deformation. Furthermore, large-capacity oil dampers (damping force 6,000 kN) are installed in the middle part of the tower to restrain the higher-mode deformation. 2. Realization of L-shaped planar structural planning: We devised a means of matching the centers of gravity and rigidity by adjusting planar rigidity. Moreover, viscous damping devices are located at the edges of the L-shaped plan, where torsional deformation tends to be amplified. We call this the "Damping Tail" system. 3. Composite foundation to equalize deformations under different loading conditions: We studied the vertical and horizontal deformations using sway-rocking and 3D FEM models including the ground, and applied multi-stage diameter-enlarged piles to the tower and a mat foundation to the podium to keep the foundations from torsional deformations and ensure structural safety.

Structural Design and Construction of the Foundation of TOKYO SKYTREE

  • Konishi, Atsuo;Emura, Masaru
    • 국제초고층학회논문집
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    • 제4권4호
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    • pp.249-259
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    • 2015
  • This paper introduces the structural design and construction method for the foundation of the TOKYO SKYTREE, a new digital broadcasting tower in Tokyo, which has a height of 634 meters. The surface layer of the ground is occupied by soft soil, thus the foundation of this tower is an SRC continuous underground wall pile, designed and developed to have horizontal rigidity and pull-out resistance. The structural integrity and construction method of the wall pile was verified with an on-site full scale pull-out test concluding a maximum load of 40,000 kN.

양방향 고유압 말뚝재하시험(BDH PLT)을 이용한 초고층 건축물의 대구경 현장타설말뚝 설계절차에 관한 연구 (A Study on the Design Procedure of Mega Foundations for a High-rise Building Using Bi-Directional High Pressure Pile Load Test (BDH PLT))

  • 김성호;최용규
    • 한국지반환경공학회 논문집
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    • 제10권3호
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    • pp.29-36
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    • 2009
  • 본 논문에서는 초고층 건축물이 풍화대지반에 위치하여 대구경 현장타설 말뚝기초로 지지되고 있는 사례를 분석하였다. 본 논문에서 제시한 말뚝기초의 설계 사례는 "예비설계-검증시험-예비설계의 보완"의 3단계를 거쳐 말뚝기초의 설계를 완성한 대표적인 사례로 볼 수 있으며, 검증시험으로 2회의 양방향 고유압 말뚝재하시험이 수행되었다. 이와 같은 설계절차를 준수할 경우 말뚝기초의 경제적인 설계를 수행할 수 있으며, 이를 통하여 말뚝기초 공사비의 대폭적인 절감을 이룰 수 있을 것이다.

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지반-구조물 상호작용을 고려한 고층 구조물의 거동에 관한 연구 (A Study on the Behavior of High-rise Buildings Considering Soil-Structure Interaction)

  • 김세현;박성수
    • 한국구조물진단유지관리공학회 논문집
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    • 제9권4호
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    • pp.243-251
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    • 2005
  • 본 연구에서는 골조튜브 및 가새튜브시스템의 60층 철골구조물에 말뚝-지반간의 상대변위를 고려한 p-y 스프링 계수를 지반의 깊이별로 적용시키는 방법과, 지반 및 기초를 나타내는 6개의 선형 스프링 계수를 구조물 하부에 적용시키는 방법을 사질토와 점성토에 적용하여 지반 연성을 고려하는 고층 구조물의 지진해석을 수행하였다. 각 경우에 대한 횡변위 및 층간변위, 최대응력, 주기 및 1차 모드 질량참여율을 비교하여 지반-구조물 상호작용에 따른 고층 구조물의 거동을 분석하였고, 그 결과 건축구조설계에서 지반-구조물의 상호작용에 대한 고려가 중요 변수임을 확인하고, 구조시스템 변화에 따른 지반-구조물 상호작용의 영향을 알아보았다.

축소모형말뚝을 이용한 현장타설말뚝의 지지력 평가 (Bearing Capacity Evaluation of the Drilled Shaft Using Small Scale Model Test)

  • 조천환;김홍묵;김웅규
    • 한국지반공학회논문집
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    • 제20권5호
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    • pp.117-126
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    • 2004
  • 최근 건축구조물이 대형화됨에 따라 현장타설말뚝을 이용한 Top-Down공법이 공기단축 및 경제성 등의 이유로 자주 채택되고 있다. Top-Down 기초로 시공되는 현장타설말뚝의 경우 설계하중이 크다는 이유로 인해 품질확인용 재하시험을 생략하는 경우가 대부분이며, 대규모 설계하중을 검증하기 위한 전통적인 재하시험 방법 또한 적용하기 곤란한 경우가 많다. Top-Down 공법에 있어 건축구조물의 대형화에 의한 현장타설말뚝의 사용하중이 증대됨에 따라 현장타설말뚝에 대한 품질확인은 점차 중요시되고 있으며, 이에 대한 대안으로서 축소모형말뚝을 이용한 시험방법의 적용이 가능할 것으로 판단된다. 본 연구에서는 대구경 현장타설말뚝의 지지력 측정시 전통적인 재하시험 방법의 한계를 극복하기 위하여 축소모형말뚝을 이용하는 방안을 제시하였으며 특히, 시험결과의 해석을 위해 암반에 근입된 현장타설말뚝의 치수효과에 관한 분석 방법을 제안하고 평가해 보았다.

국내 고층 비내진 철근콘크리트 벽식 아파트의 지진취약도 평가 (Seismic Fragility Assessment for Korean High-Rise Non-Seismic RC Shear Wall Apartment Buildings)

  • 전성하;신동현;박지훈
    • 한국지진공학회논문집
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    • 제24권6호
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    • pp.293-303
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    • 2020
  • Seismic fragility was assessed for non-seismic reinforced concrete shear walls in Korean high-rise apartment buildings in order to implement an earthquake damage prediction system. Seismic hazard was defined with an earthquake scenario, in which ground motion intensity was varied with respect to prescribed seismic center distances given an earthquake magnitude. Ground motion response spectra were computed using Korean ground motion attenuation equations to match accelerograms. Seismic fragility functions were developed using nonlinear static and dynamic analysis for comparison. Differences in seismic fragility between damage state criteria including inter-story drifts and the performance of individual structural members were investigated. The analyzed building had an exceptionally long period for the fundamental mode in the longitudinal direction and corresponding contribution of higher modes because of a prominently insufficient wall quantity in such direction. The results showed that nonlinear static analyses based on a single mode tend to underestimate structural damage. Moreover, detailed assessments of structural members are recommended for seismic fragility assessment of a relatively low performance level such as collapse prevention. On the other hand, inter-story drift is a more appropriate criterion for a relatively high performance level such as immediate occupancy.

인천 LNG 지하탱크 Bottom 의 온도균열제어 (Thermal Crack Control about of LNG in Inchon)

  • 구본창;하상욱;김동석;하재담;이종열;권영호
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 봄 학술발표회 논문집
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    • pp.291-296
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    • 2000
  • The crack of concrete induced by the heat of hydration is s serious problem, particularly in concrete structures such as bridge piers. thick walls, box type walls, mat-slab of nuclear reactor building, dams of foundations of high rise buildings, etc. As a result of the temperature rise and restriction condition of foundation, the thermal stress which way induce the cracks can occur. Therefore the various techniques of the thermal stress control in massive concrete have been widely used. One of them is prediction of the thermal stress, besides low-heat cement which mitigates the temperature rise, design change which consider steel bar reinforcement, operation control and so on. In this study, firstly it introduce the thermal cracks control technique by employing low-heat cement concrete, thermal stress analysis, Secondly it shows the application of the cracks control technique like the bottom of No.15,16 Underground LNG Tank in Inchon.

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