• 제목/요약/키워드: floor stiffness

검색결과 229건 처리시간 0.023초

Loading capacity of simply supported composite slim beam with deep deck

  • Shi, Yongjiu;Yang, Lu;Wang, Yuanqing;Li, Qiuzhe
    • Steel and Composite Structures
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    • 제9권4호
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    • pp.349-366
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    • 2009
  • The composite slim beam has become popular throughout Europe in recent years and has also been used on some projects in China. With its steel section encased in a concrete slab, the steel-concrete composite slim beam can provide the floor construction with minimum depth and high fire resistance. However, the design method of the T-shape steel-concrete composite beam is no longer applicable to the composite slim beam with deep deck for its special construction, of which the present design models are not available but mainly depend on experiences. The elevation of the flexural stiffness and bending capacity of composite slim beams with deep deck is rather complicated, because the influences of many factors should be taken into account, such as the variable section dimensions, development of cracks and non-linear characteristics of concrete, etc. In this paper, experimental investigations have been conducted into the flexural behavior of two specimens of simply supported composite slim beam with deep deck. The emphases were laid on the bonding force on the interface between steel beam and concrete, the stress distribution of beam section, the flexural stiffness and bending capacity of the composite beams. Based on the experimental results, the reduction factor of equivalent stress distribution in concrete flange is suggested, and the calculation method of flexural stiffness and bending capacity of simply supported slim beams are proposed.

노후 아파트의 바닥충격음 및 급·배수 소음 저감방안에 관한 연구 (A Study on the Reduction Method of Heavy-weight floor impact sound and Plumbing noise in Decrepit Apartment houses)

  • 주문기;한명호;오양기
    • KIEAE Journal
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    • 제9권2호
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    • pp.99-106
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    • 2009
  • The noise in apartment buildings are major factor that determine the quality of indoor noise environment. Particularly, the noise from children's running footsteps and plumbing noise have caused the residents who live in decrepit apartment houses to uncomfortable environment. And as time go by, sound performance are getting worse according to the aging of the facilities. So this study deals with the plans to improve the sound performance of decrepit apartment house. To compare the noise reduction, we measured the heavy-weight impact sound level and plumbing noise level before and after changes the measurement conditions. As the results of measurements, the heavy-weight impact sound level were decreased when stiffness reinforcement were installed on slab. Especially the sound level were decreased 2.1-7.6dB in 50-80Hz of low frequency range. Instead of PVC pipe system, cast iron pipe and triple elbow drain pipe systems were installed. Noise level were decreased 15dB(A) in 250Hz. Noise level of pipe system's on the slab is less than under slab one. On the contrary water saving stool showed increasing the noise level.

Anchored blind bolted composite connection to a concrete filled steel tubular column

  • Agheshlui, Hossein;Goldsworthy, Helen;Gad, Emad;Mirza, Olivia
    • Steel and Composite Structures
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    • 제23권1호
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    • pp.115-130
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    • 2017
  • A new type of moment-resisting bolted connection was developed for use in composite steel- concrete construction to connect composite open section steel beams to concrete filled steel square tubular columns. The connection was made possible using anchored blind bolts along with two through bolts. It was designed to act compositely with the in-situ reinforced concrete slab to achieve an enhanced stiffness and strength. The developed connection was incorporated in the design of a medium rise (five storey) commercial building which was located in low to medium seismicity regions. The lateral load resisting system for the design building consisted of moment resisting frames in two directions. A major full scale test on a sub-assembly of a perimeter moment-resisting frame of the model building was conducted to study the system behaviour incorporating the proposed connection. The behaviour of the proposed connection and its interaction with the floor slab under cyclic loading representing the earthquake events with return periods of 500 years and 2500 years was investigated. The proposed connection was categorized as semi rigid for unbraced frames based on the classification method presented in Eurocode 3. Furthermore, the proposed connection, composite with the floor slab, successfully provided adequate lateral load resistance for the model building.

시트-인체 진동 모델링을 이용한 승차감 해석 (Ride Quality Analysis Using Seated Human Vibration Modeling)

  • 강주석
    • 한국철도학회논문집
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    • 제18권3호
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    • pp.194-202
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    • 2015
  • 본 연구에서는 수직 진동에 노출된 승객의 승차감을 정량적으로 분석하기 위해 점탄성 특성을 가진 시트에 기댄 인체의 동적 모델링을 제시한다. 시트 위 인체의 운동을 기술하기 위해 문헌에서 찾은 5자유도계 다물체 동역학 모델이 이용되었다. 철도차량 시트에 사용되는 점탄성 특성은 비선형 강성 특성과 시간 지연을 표현하는 컨볼루션 적분으로 수식화된다. 바닥 가진에 대한 전달함수를 분석 결과 시트의 비선형 특성으로 인해 입력 가진의 크기에 따라 전달함수는 변하는 것으로 나타났다. 측정된 철도차량의 바닥 가진을 이용하여 실제적인 인체 진동 특성을 분석한다. 주파수 가중치 자승평균치 값을 계산하고 시트 설계 파라미터가 이 주파수 가중치 자승평균치에 미치는 영향을 제시한다.

대학 기숙사 건물의 안전성 및 사용성 평가 연구 (A Study on the Safety and Usability of University Dormitory Buildings)

  • 채경훈;허석재;허무원
    • 교육시설 논문지
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    • 제26권2호
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    • pp.3-10
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    • 2019
  • This study evaluated the vibration use and safety of students living in the dormitories on the 12th and 14th floors by feeling uncomfortable. The measurement method was to measure the acceleration due to free vibration and single - person walking. The slab stiffness was then calculated, and the usability and safety were compared according to international standards. The natural frequency of the slab was 6.8 Hz. The natural frequency of a typical slab is around 15Hz. Therefore, the evaluation slab is judged as a flexible floor structure. It is considered that there is a high possibility of resonance in the middle of daily life because of low natural frequency and near harmonic component of walking vibration. As a result, the RMS acceleration level is within the tolerance range defined by ISO 10137 code, but the 13th floor exceeds the reference limit, so that a sensitive person could detect the vibration somewhat in the lying position.

수직증축형 공동주택 리모델링 구조해석을 위한 PC말뚝 강성에 관한 연구 (A Study of Prestressed Concrete Pile Stiffness for Structural Analysis of Condominium Remodeling with Vertical Story Extension)

  • 최창호;이현지;최기선;유영찬;김진영
    • 한국지반공학회논문집
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    • 제33권12호
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    • pp.81-92
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    • 2017
  • 2013년 주택법 개정에 따라 최대 3개층까지 공동주택의 수직증축 리모델링 사업이 가능해졌다. 수직증축 리모델링은 추가하중으로 인한 구조 안전성 및 강화된 내진기준을 만족해야 하므로 기초보강을 필요로 하며, 말뚝 보강설계에서는 기존 말뚝과 보강 말뚝의 하중분담을 고려해야 한다. 말뚝의 하중분담을 계산하기 위해서는 말뚝의 수직 강성($K_v$)이 필요하지만, 20~30년 전에 설치된 PC 말뚝 강성에 대한 연구는 매우 미미한 실정이다. 본 논문에서는 1990년대 아파트 신축시 수행된 38건의 현장 말뚝재하 시험 결과를 검토하여, 직경 및 길이의 변화에 따른 PC말뚝의 강성을 분석하였다. 분석 결과 말뚝강성은 장경비(L/D)가 증가함에 따라 감소하는 것으로 나타났다. 또한, 현장 말뚝재하 시험결과를 도로교설계기준해설(2008) 및 한국철도시설공단 말뚝기초의 설계(2012)에서 제안하고 있는 말뚝강성 산정을 위한 계수 'a'와 비교하였다. 비교결과 10

복합구조물의 상부층수 변화에 따른 탄소성 정적 및 동적 응답특성 (The Response Characteristics of Push-over and Nonlinear Time History Analysis with Variations in the Upper Stories of the Mixed Building Structure)

  • 강병두;전대한;김재웅
    • 한국지진공학회논문집
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    • 제5권5호
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    • pp.73-83
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    • 2001
  • 상부벽식-하부골조구조(복합구조)는 상.하부 구조물의 서로 다른 구조형식으로 인해 전이층 부근에서 질량 및 강성의 큰 차이를 보인다. 이러한 복합구조의 특징은 일반적으로 강성, 질량 및 기하학적 수직 비정형성을 갖게 된다. 본 연구에서는 복합구조물의 상부층수가 변화하는 네 가지 해석모델을 선정하여 탄소성 정적 및 동적 해석을 수행하고 해석결과를 통해 구조물의 탄소성 응답특성을 살펴보고자 한다. 본 연구의 결론은 다음과 같다. 1) 탄소성 정적해석에서는 하부골조 구조의 보와기둥의 항복힌지가 상부벽식구조의 층수 변화에 상관없이 전 모델에 걸쳐 비슷한 크기의 설계용 밑면전단력에서 항복이 발생되었고 그 분포 또한 비슷하였다. 그러나 상부벽식구조의 경우 전단벽이 고층화될수록 coupling beam에서 설계용 밑면전단력 V에 대해서도 휨항복한지가 발생되었다. 2) 탄소성 동적해석으로부터는 하부골조의 일부층의 보는 55gal의 작은 지진동에서 소성이 발생되었고 상부벽식구조의 경우 coupling beam과 전이층 상부의 전단벽에서 소성변형이 집중되었다. 3) 탄소성 해석으로부터 상부벽식구조의 층수가 낮아질수록 하부골조구조의 층강성이 상대적으로 줄어들게 되어 하부골조에서 연약층(soft story) 현상이 나타났다.

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플랫플레이트 구조물의 효율적인 해석을 위한 수퍼요소의 활용 (Use of Super Elements for Efficient Analysis of Flat Plate Structures)

  • 김현수;이승재;이동근
    • 한국전산구조공학회논문집
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    • 제16권4호
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    • pp.439-450
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    • 2003
  • 근래에 들어서 경제적 및 계획적인 요구에 의하여 충고를 줄일 수 있는 이점을 가진 플랫플레이트 구조물이 많이 건설되고 있다. 구조기술자들은 실무에서 플랫플레이트 구조물을 해석하기 위하여 일반적으로 유효보폭모델을 사용한다. 그러나 유효보폭 모델을 적용하기가 어려운 경우에는 유한요소법을 사용할 필요가 있으며, 이때 바닥판의 정확한 거동을 예측하기 위해서는 세분한 유한요소 모델을 사용하는 것이 필요하다. 전체 구조물을 수많은 유한요소로 세분하여 모형화하면 막대한 해석시간과 컴퓨터 메모리가 필요하게 된다. 따라서 본 연구에서는 상당히 정확한 해석결과를 쉽게 얻을 수 있는 효율적인 해석기법을 제안한다. 제안된 해석기법은 행렬응축기법을 통하여 생성된 수퍼요소를 사용하며 수퍼요소 경계부분의 변형적합조건을 만족시키기 위하여 수퍼요소를 개발할 때 가상보를 도입한다. 본 연구에서는 슬래브의 탄성계수를 감소시킴으로서 유효보폭모델에서 사용되고 있는 강성저감을 고려하였다. 수많은 요소론 사용한 유한요소모델 및 유효보폭모델을 사용하여 여러 가지의 예제구조물에 대하여 정적해석과 동적해석을 수행하고 본 연구에서 제안된 해석방법에 의한 결과와 비교함으로써 제안된 방법의 효율성과 정확성을 검증하였다.

Development of analytical modeling for an energy-dissipating cladding panel

  • Maneetes, H.;Memari, A.M.
    • Structural Engineering and Mechanics
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    • 제32권5호
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    • pp.587-608
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    • 2009
  • Modern earthquake-resistant design aims to isolate architectural precast concrete panels from the structural system so as to reduce the interaction with the supporting structure and hence minimize damage. The present study seeks to maximize the cladding-structure interaction by developing an energy-dissipating cladding system (EDCS) that is capable of functioning both as a structural brace, as well as a source of energy dissipation. The EDCS is designed to provide added stiffness and damping to buildings with steel moment resisting frames with the goal of favorably modifying the building response to earthquake-induced forces without demanding any inelastic action and ductility from the basic lateral force resisting system. Because many modern building facades typically have continuous and large openings on top of the precast cladding panels at each floor level for window system, the present study focuses on spandrel type precast concrete cladding panel. The preliminary design of the EDCS was based on existing guidelines and research data on architectural precast concrete cladding and supplemental energy dissipation devices. For the component-level study, the preliminary design was validated and further refined based on the results of nonlinear finite element analyses. The stiffness and strength characteristics of the EDCS were established from a series of nonlinear finite element analyses and are discussed in detail in this paper.

The Evolution of Outrigger System in Tall Buildings

  • Ho, Goman W.M.
    • 국제초고층학회논문집
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    • 제5권1호
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    • pp.21-30
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    • 2016
  • The structural efficiency of tall buildings heavily depends on the lateral stiffness and resistance capacity. Among those structural systems for tall buildings, outrigger system is one of the most common and efficient systems especially for those with relatively regular floor plan. The use of outriggers in building structures can be traced back from early 50 from the concept of deep beams. With the rise of building height, deep beams become concrete walls or now in a form of at least one story high steel truss type of outriggers. Because of the widened choice in material to be adopted in outriggers, the form and even the objective of using outrigger system is also changing. In the past, outrigger systems is only used to provide additional stiffness to reduce drift and deflection. New applications for outrigger systems now move to provide additional damping to reduce wind load and acceleration, and also could be used as structural fuse to protect the building under a severe earthquake condition. Besides analysis and member design, construction issue of outrigger systems is somehow cannot be separated. Axial shortening effect between core and perimeter structure is unavoidable. This paper presents a state-of-the-art review on the outrigger system in tall buildings including development history and applications of outrigger systems in tall buildings. The concept of outrigger system, optimum topology, and design and construction consideration will also be discussed and presented.