• 제목/요약/키워드: Full-scale structure

검색결과 447건 처리시간 0.031초

원심모형시험에 의한 준설지반의 압밀특성연구 (A Study on Consolidation Characteristic of Dredged Fill Using Geotechnical Centrifuge)

  • 김희철;김흥석;이송
    • 한국지반공학회논문집
    • /
    • 제24권10호
    • /
    • pp.45-55
    • /
    • 2008
  • 현장실험의 경우 규모에 따라 시간이나 비용 등의 측면에서 많은 제약과 어려움이 따르지만, 실내모형실험은 현장 실험에 비해 매개변수에 따라 다양한 실험을 실시할 수 있다. 본 연구에서는 축소된 모형을 사용하여 경제적으로 현장 원형구조물의 지반공학적 거동을 재현하기 위하여 인위적으로 원심력을 가하여 현장의 응력상태를 재현시킬 수 있는 원심모형실험기법을 실시하여 준설지반의 압밀거동을 예측하고 분석하는데 이용하였다. 자중압밀단계의 간극비-유효응력-투수계수의 관계를 유추하기 위하여 저응력 침투압밀 시험을 실시한 결과를 Curve fitting 결과 누승함수 형태의 구성관계를 얻을 수 있었다. 구성관계식을 이용하여 대표단면을 프로그램으로 수치해석 한 결과 최종침하량은 원심모형 실험에 의한 자중압밀 실험결과와 유사한 경향의 결과를 보이고 있었으나 원심모형실험 결과보다 다소 작게 산정되었다.

순환골재를 사용한 철근콘크리트 보의 휨거동 특성 (Flexural Behavior of Reinforced Recycled Aggregate Concrete Beams)

  • 송선화;최기선;유영찬;김긍환;윤현도
    • 콘크리트학회논문집
    • /
    • 제21권4호
    • /
    • pp.431-439
    • /
    • 2009
  • 이 연구는 순환골재 콘크리트의 활용성 증대 및 규준 정립에 관한 연구의 일환으로, 순환굵은골재 및 순환 잔골재 치환율에 따른 실규모 철근콘크리트 보의 휨거동 특성을 실험적으로 수행하고자 실험체를 총 7개로 제작하여 최종파괴시까지 변위제어 방식에 의해 4점 가력하였다. 흡수율 3.0%, 절건밀도 2.49 g/cm3의 순환굵은골재를 치환한 실 험체를 천연골재 실험체와 비교한 결과, 초기강성은 동등하였으며 순환굵은골재를 고품질과 저품질로 구분하여 혼합굵 은골재를 치환한 실물모형 보 부재의 휨성능 또한 현행 설계기준에서 규정하는 휨내력을 만족하는 것으로 나타났다. 순 환잔골재를 100% 치환한 실험체에서도 천연골재 실험체와 유사한 거동을 나타냈으며, 모든 실험체의 실험값은 KCI 설 계기준식과 비교한 결과 기준값을 안전측으로 평가하고 있어 순환골재를 사용한 휨부재 설계에 적용 가능할 것으로 판 단된다. 따라서 순환골재 콘크리트의 활용성 증대라는 측면에서 순환골재 콘크리트로 제작된 RC 부재는 구조용 휨 부 재로의 적용이 가능한 것으로 판단된다.

정양사(正陽寺) 약사전의 건축사적 변천 - 금강산 기행문을 중심으로 - (A Study on the Architectural Transformation of the Hall of Bhaisajyaguru(Healing) Budda(藥師殿) in Chung Yang Temple(正陽寺) -from the main source of the travelogues on Mt. Kumgang. -)

  • 강병희
    • 건축역사연구
    • /
    • 제12권3호
    • /
    • pp.163-179
    • /
    • 2003
  • The records of about 60 travel essays of the Hall of Bhaisajyaguru(Healing) Budda which was built in Chung Yang Temple passed down since 1525. The chronological change of that Hall architecture according to each period was traced upon. The building structure of the Hall of Bhaisajyaguru Budda which has a roundabout way, and 6 pillars inside, sometimes each 6 pillars inside and outside is hexagonal, one story building in Japanese colonial period(picture 3-1) or the present(picture 3-3). The panaromic picture of Chung Yang Temple shows no alterations of the layout of buildings(picture 1-1), in which the Hall of $Praj{\tilde{n}}{\bar{a}}$(般若殿), the main building in the center and the Hall of Bhaisajyaguru(Healing) Budda, three story stone pagoda, stone lighthouse in front of it became the central axis. The Hall of Bhaisajyaguru(Healing) Budda remained as it was until Japanese invasions in 1592 and 1597. However, it was greatly damaged by the flood in 1717. It was newly built by Lee Ha Gon's leading in 1717-1732. At that time, the interior design was changed. With Bhaisajyaguru(Healing) Budda, 53 Buddhas and ${\acute{S}}arira$ of Stone stupa which show itself by the flood in 1717 was located in the image of the Mountain of Chunchuk or Cheontae like Yu Jeom Temple. The doors of this Hall are located in the front and back. In the four walls each, two realistic and cubic buddhism pictures were drawn, The color of those picture was partly taken off in 1671 and repainted in 1714. The new building in 1717-1732 regained its colorful appearance. However, the names written beside each Images of Buddha disappeared. The notable remark in these records is that some of these travel essays in 17th-18th centuries was calling this hexagonal hall as the octagonal one. It is very important records because it means that before 1525 the octagonal hall might have existed. Chung Yang Temple was rebuilt between 1976 and 1985 after the destruction in the Korean War. After the records are carefully read, the full scale excavation about this historic site was not done yet. The interesting issue of the existence of octagonal building will be resolved by the full scale excavation.

  • PDF

Validating the Structural Behavior and Response of Burj Khalifa: Synopsis of the Full Scale Structural Health Monitoring Programs

  • Abdelrazaq, Ahmad
    • 국제초고층학회논문집
    • /
    • 제1권1호
    • /
    • pp.37-51
    • /
    • 2012
  • New generation of tall and complex buildings systems are now introduced that are reflective of the latest development in materials, design, sustainability, construction, and IT technologies. While the complexity in design is being overcome by the availability and advances in structural analysis tools and readily advanced software, the design of these buildings are still reliant on minimum code requirements that yet to be validated in full scale. The involvement of the author in the design and construction planning of Burj Khalifa since its inception until its completion prompted the author to conceptually develop an extensive survey and real-time structural health monitoring program to validate all the fundamental assumptions mad for the design and construction planning of the tower. The Burj Khalifa Project is the tallest structure ever built by man; the tower is 828 meters tall and comprises of 162 floors above grade and 3 basement levels. Early integration of aerodynamic shaping and wind engineering played a major role in the architectural massing and design of this multi-use tower, where mitigating and taming the dynamic wind effects was one of the most important design criteria established at the onset of the project design. Understanding the structural and foundation system behaviors of the tower are the key fundamental drivers for the development and execution of a state-of-the-art survey and structural health monitoring (SHM) programs. Therefore, the focus of this paper is to discuss the execution of the survey and real-time structural health monitoring programs to confirm the structural behavioral response of the tower during construction stage and during its service life; the monitoring programs included 1) monitoring the tower's foundation system, 2) monitoring the foundation settlement, 3) measuring the strains of the tower vertical elements, 4) measuring the wall and column vertical shortening due to elastic, shrinkage and creep effects, 5) measuring the lateral displacement of the tower under its own gravity loads (including asymmetrical effects) resulting from immediate elastic and long term creep effects, 6) measuring the building lateral movements and dynamic characteristic in real time during construction, 7) measuring the building displacements, accelerations, dynamic characteristics, and structural behavior in real time under building permanent conditions, 8) and monitoring the Pinnacle dynamic behavior and fatigue characteristics. This extensive SHM program has resulted in extensive insight into the structural response of the tower, allowed control the construction process, allowed for the evaluation of the structural response in effective and immediate manner and it allowed for immediate correlation between the measured and the predicted behavior. The survey and SHM programs developed for Burj Khalifa will with no doubt pioneer the use of new survey techniques and the execution of new SHM program concepts as part of the fundamental design of building structures. Moreover, this survey and SHM programs will be benchmarked as a model for the development of future generation of SHM programs for all critical and essential facilities, however, but with much improved devices and technologies, which are now being considered by the author for another tall and complex building development, that is presently under construction.

하수 슬러지와 혐기성 입상슬러지를 식종한 혐기성 암모니아 산화 반응기의 미생물 탐색 (Investigation of Microbial Communities in the Anammox Reactor Seeded with Sewage Sludge and Anaerobic Granule)

  • 박경순;배효관;정윤철;박용근;정진영
    • 한국물환경학회지
    • /
    • 제23권3호
    • /
    • pp.397-402
    • /
    • 2007
  • Anammox reactor seeded with sewage sludge from RBC reactor and anaerobic granule from full-scale UASB reactor treating distillery wastewater was operated. Mixed granule and suspended sludge in the ammonium oxidizing process were taken and analyzed to investigate microbial community structure by molecular methods such as gene cloning and phylogenetic tree analysis after 250 days of continuous cultivation. The average nitrogen removal rate showed $0.9kg\;N/m^3-day$ after 250 days of continuous operation, then the maximum nitrogen removal rate showd $1.9kg\;N/m^3-day$ when $2.1kg\;N/m^3-day$ of nitrogen loading rate was applied. As results of gene cloning and phylogenetic tree analysis, Three kinds of phylum were found to be Proteobacteria, Acidobacteria and Planctomycetes (anammox bacteria) in mixed granule. Five kinds of phylum were found to be Proteobacteria, Chlorobi, Planctomycetes, Nitrospirae and Verrucomicrobia in suspended sludge. We found planctomycete KSU-1 and putative new anammox bacteria in the reactor. Microbial structure represented different consortia depending on the types of sludge in the anammox reactor.

Seismic performance of precast joint in assembled monolithic station: effect of assembled seam shape and position

  • Liu, Hongtao;Du, Xiuli
    • Earthquakes and Structures
    • /
    • 제17권6호
    • /
    • pp.611-621
    • /
    • 2019
  • Precast concrete structure has many advantages, but the assembled seam will affect potentially the overall seismic performance of structure. Based on the sidewall joint located in the bottom of assembled monolithic subway station, the main objectives of this study are, on one hand to present an experimental campaign on the seismic behavior of precast sidewall joint (PWJ) and cast-in-place sidewall joint (CWJ) subjected to low-cycle repeated loading, and on the other hand to explore the effect of shape and position of assembled seam on load carrying capacity and crack width of precast sidewall joint. Two full-scale specimens were designed and tested. The important index of failure pattern, loading carrying capacity, deformation performance and crack width were evaluated and compared. Based on the test results, a series of different height and variably-shape of assembled seam of precast sidewall joint were considered. The test and numerical investigations indicate that, (1) the carrying capacity and deformation capacity of precast sidewall and cast-in-place sidewall were very similar, but the crack failure pattern, bending deformation and shearing deformation in the plastic hinge zone were different obviously; (2) the influence of the assembled seam should be considered when precast underground structures located in the aquifer water-bearing stratum; (3) the optimal assembled seam shape and position can be suggested for the design of precast underground concrete structures according to the analysis results.

복합자재 화재확산방지구조에 대한 연구 (A Study on Flame Spread Prevention of Sandwich Panel)

  • 조남욱;김도현;심지훈
    • 한국화재소방학회논문지
    • /
    • 제29권6호
    • /
    • pp.84-90
    • /
    • 2015
  • 복합자재(샌드위치패널)는 불연성재료인 양면 철판 또는 이와 유사한 재료와 불연성이 아닌 재료인 심재로 구성된다. 단열재를 가연성 재료로 사용하는 샌드위치패널은 화재 시 철판 내부로 화염이 확산되어 외부에서 진화가 어렵고 화염의 확산이 빠르게 진행되어 건물의 붕괴를 야기할 수 있다. 현행 건축법에 의해 샌드위치패널은 건축물의 용도 및 규모에 따라 난연성능을 확보하도록 하고 있다. 본 연구에서는 일부 외벽에 적용되는 화재확산방지구조를 복합자재에 적용하여 실제 규모의 화재시험을 통해 그 효과를 측정하였으며 향후 복합자재에서도 화재확산방지구조의 적용을 통해 복합자재 건축물의 화재안전 확보 가능성을 제시하였다.

고온에 노출된 H-형강 압축재의 유한요소해석 (Finite Element Analysis of H-Shaped Compressive Member Exposed High Temperatures)

  • 이수헌;이희두;최준호;신경재
    • 한국화재소방학회논문지
    • /
    • 제30권5호
    • /
    • pp.54-59
    • /
    • 2016
  • 구조재료 중에서 강재는 불연성 재료이지만 열전도가 높고, 온도상승에 의하여 강성의 저하가 높은 편이다. 일반적으로 강재의 항복강도 및 탄성계수는 $350^{\circ}C$에서 70%, $600^{\circ}C$에서 50% 이하로 감소하기 때문에 고온에서의 철골구조의 재하능력은 급격히 감소하게 된다. 통상 내화구조로 인정받기 위해서는 공인기관으로부터의 품질시험을 거쳐야 한다. 하지만, 실물내화실험은 공간과 시간의 제약, 고비용의 문제점을 안고 있으므로, 본 연구에서는 ABAQUS 프로그램의 유한요소법을 이용한 열해석을 수행하여 압축을 받는 H-형강기둥의 내화실험과의 비교로 해석모델의 신뢰성을 입증하고, 실물실험의 보완책으로의 가능성을 제시한다.

Combining GPS and accelerometers' records to capture torsional response of cylindrical tower

  • AlSaleh, Raed J.;Fuggini, Clemente
    • Smart Structures and Systems
    • /
    • 제25권1호
    • /
    • pp.111-122
    • /
    • 2020
  • Researchers up to date have introduced several Structural Health Monitoring (SHM) techniques with varying advantages and drawbacks for each. Satellite positioning systems (GPS, GLONASS and GALILEO) based techniques proved to be promising, especially for high natural period structures. Particularly, the GPS has proved sufficient performance and reasonable accuracy in tracking real time dynamic displacements of flexible structures independent of atmospheric conditions, temperature variations and visibility of the monitored object. Tall structures are particularly sensitive to oscillations produced by different sources of dynamic actions; such as typhoons. Wind forces induce in the structure both longitudinal and perpendicular displacements with respect to the wind direction, resulting in torsional effects, which are usually more complex to be detected. To efficiently track the horizontal rotations of the in-plane sections of such flexible structures, two main issues have to be considered: a suitable sensor topology (i.e., location, installation, and combination of sensors), and the methodology used to process the data recorded by sensors. This paper reports the contributions of the measurements recorded from dual frequency GPS receivers and uni-axial accelerometers in a full-scale experimental campaign. The Canton tower in Guangzhou-China is the case study of this research, which is instrumented with a long-term structural health monitoring system deploying both accelerometers and GPS receivers. The elaboration of combining the obtained rather long records provided by these two types of sensors in detecting the torsional behavior of the tower under ambient vibration condition and during strong wind events is discussed in this paper. Results confirmed the reliability of GPS receivers in obtaining the dynamic characteristics of the system, and its ability to capture the torsional response of the tower when used alone or when they are combined with accelerometers integrated data.

ICP-RIE 기술을 이용한 차압형 가스유량센서 제작 (Fabrication of a Pressure Difference Type Gas Flow Sensor using ICP-RIE Technology)

  • 이영태;안강호;권용택
    • 반도체디스플레이기술학회지
    • /
    • 제7권1호
    • /
    • pp.1-5
    • /
    • 2008
  • In this paper, we fabricated pressure difference type gas flow sensor using only dry etching technology by ICP-RIE(inductive coupled plasma reactive ion etching). The sensor's structure consists of a common shear stress type piezoresistive pressure sensor with an orifice fabricated in the middle of the sensor diaphragm. Generally, structure like diaphragm is fabricated by wet etching technology using TMAH, but we fabricated diaphragm by only dry etching using ICP-RIE. To equalize the thickness of diaphragm we applied insulator($SiO_2$) layer of SOI(Si/$SiO_2$/Si-sub) wafer as delay layer of dry etching. Size of fabricated diaphragm is $1000{\times}1000{\times}7\;{\mu}m^3$ and overall chip $3000{\times}3000{\times}7\;{\mu}m^3$. We measured the variation of output voltage toward the change of gas pressure to analyze characteristics of the fabricated sensor. Sensitivity of fabricated sensor was relatively high as about 1.5mV/V kPa at 1kPa full-scale. Nonlinearity was below 0.5%F.S. Over-pressure range of the fabricated sensor is 100kPa or more.

  • PDF