• 제목/요약/키워드: reinforced buildings

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철근콘크리트 구조물의 강재를 이용한 내진성능 보강효과 (Retrofitting Effects of Seismic Resistance capacity of Reinforced Concrete Fraed Structure)

  • 정란;박현수;박태원;백인관
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 1999년도 추계 학술발표회 논문집 Proceedings of EESK Conference-Fall
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    • pp.281-288
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    • 1999
  • This paper studied the efficiency of retrofitting of reinforced concrete structure which was not designed to endure an earthquake. The earthquake in Kobe Japan showed that there was a great possibility of having an earthquake even in big city and the damages were concentrated on mid or low story buildings which were not considered to be protected from an earthquake, . This experiment used reinforced concrete structure which restrained side-by-side displacement to test durability against an earthquake. This study deals with the structural performance of reinforced concrete frame structures strengthened with steel materials.

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강섬유를 적용한 원전 격납건물의 항공기 충돌해석 (Aircraft Impact Analysis of Steel Fiber Reinforced Containment Building)

  • 서동원;노혁천
    • 한국전산구조공학회논문집
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    • 제26권2호
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    • pp.157-164
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    • 2013
  • 본 연구에서는 여객용 항공기 충돌 시 강섬유보강콘크리트를 사용한 철근콘크리트 원전 격납건물의 구조적 거동을 유한요소해석을 이용하여 고찰한다. 항공기 충돌에 의해 원전 격납건물에 가해지는 하중은 Riera 충격하중 시간함수와 충돌 시 접촉면적을 이용하여 모델링하였다. 강섬유보강콘크리트의 재료모델은 CSCM Concrete Model을 사용하였다. 기존에 제안된 강섬유보강콘크리트의 강도예상모델을 이용하여 재료모델의 입력변수를 결정하였다. 강섬유의 함유량에 따른 원전 격납 건물의 항공기 충돌에 대한 구조적 거동을 상용 유한요소 해석 프로그램인 LS-DYNA를 이용하여 해석하였다. 해석결과를 바탕으로 항공기 충돌에 대한 저항성을 평가하였으며, 보수적인 안전성이 요구되는 원전 격납건물에 강섬유보강콘크리트를 적용할 경우 항공기 충돌에 대한 저항성 증대 효과를 기대할 수 있는 것으로 고찰되었다.

Seismic risk estimation of the Kirikkale province through street survey based rapid assessment method (SSRA)

  • Sonmezer, Yetis Bulent;Bas, Selcuk;Akbas, Sami Oguzhan
    • Earthquakes and Structures
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    • 제14권6호
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    • pp.615-626
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    • 2018
  • The seismic vulnerability of Turkey is relatively high due to its active fault systems with potential to create destructive earthquakes. Thus, reducing the loss of life and property, the number of the earthquake-prone buildings and their retrofit requirements are considerably significant key issues under the scenario earthquakes. The street survey based rapid assessment (SSRA) method can be considered as a powerful tool to determine the seismic vulnerability of building stock of an earthquake-prone city/state. In this study, the seismic vulnerability of the building stock of the Kirikkale province in Turkey is aimed to be estimated adopting the street survey based rapid assessment method (SSRA). For this purpose, central 2074 existing reinforced concrete (R/C) buildings were structurally surveyed with rapid visual site screening and disadvantages such as, the existence of short-column, soft-story, heavy overhangs, pounding effect and local soil conditions were determined for obtaining the structural performance score of each. The results obtained from the study demonstrate that 11-25% of the surveyed buildings in the study region needs to be investigated through more advanced assessment methods. Besides, higher correlation between increasing story number and unsafe/safe building ratio is obtained for the buildings with soft-story parameter than that for those with heavy overhangs and short-column parameters. The conformity of the results of the current study with the previous documented cases of rapid assessment efforts in the recent earthquakes in Turkey shows that the SSRA method for the Kirikkale province performed well, and thus this methodology can be reliably used for similar settlement areas.

Observational failure analysis of precast buildings after the 2012 Emilia earthquakes

  • Minghini, Fabio;Ongaretto, Elena;Ligabue, Veronica;Savoia, Marco;Tullini, Nerio
    • Earthquakes and Structures
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    • 제11권2호
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    • pp.327-346
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    • 2016
  • The 2012 Emilia (Italy) earthquakes struck a highly industrialized area including several thousands of industrial prefabricated buildings. Due to the lack of specific design and detailing for earthquake resistance, precast reinforced concrete (RC) buildings suffered from severe damages and even partial or total collapses in many cases. The present study reports a data inventory of damages from field survey on prefabricated buildings. The damage database concerns more than 1400 buildings (about 30% of the total precast building stock in the struck region). Making use of the available shakemaps of the two mainshocks, damage distributions were related with distance from the nearest epicentre and corresponding Pseudo-Spectral Acceleration for a period of 1 second (PSA at 1 s) or Peak Ground Acceleration (PGA). It was found that about 90% of the severely damaged to collapsed buildings included into the database stay within 16 km from the epicentre and experienced a PSA larger than 0.12 g. Moreover, 90% of slightly to moderately damaged buildings are located at less than 25 km from the epicentre and were affected by a PSA larger than 0.06 g. Nevertheless, the undamaged buildings examined are almost uniformly distributed over the struck region and 10% of them suffered a PSA not lower than 0.19g. The damage distributions in terms of the maximum experienced PGA show a sudden increase for $PGA{\geq}0.28g$. In this PGA interval, 442 buildings were collected in the database; 55% of them suffered severe damages up to collapse, 32% reported slight to moderate damages, whereas the remaining 13% resulted undamaged.

메디컬빌딩의 건축계획특성 연구 - 청주지역을 중심으로 (A Study on the Architectural Planning Characteristics of Medical Buildings - Focused on Cheong-ju Area)

  • 백상열;김기수
    • 의료ㆍ복지 건축 : 한국의료복지건축학회 논문집
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    • 제21권3호
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    • pp.69-77
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    • 2015
  • Purpose: Under a trend of hospitals that repeated expansion in line with fast increasing factors of medical demands in the past, medical buildings where clinic businesses have regularly gathered in one building have exponentially increased since separation of prescribing and dispensing in 2000. Thus, this study aims at analyzing characteristics of architectural plan of the current medical buildings, identifying strengths and weaknesses through Post Occupancy Evaluation and suggesting an architectural planning method of medical buildings to be planned in the future. Methods: Scope of study has been limited to 23 medical buildings that are registered in the building register as medical buildings out of the Class 1 neighborhood facilities build as 5 floors or more in Cheongju region since 2000 and being actually used for the usage. Study method is to define concepts of the medical buildings through literature review and advanced researches, analyze characteristics of architectural plan through drawing analysis and site survey. Results: General characteristics of architectural plans for the medical buildings in Cheongju have been analyzed. There are the most frequencies in general commercial area and semi-residential area, most of them are reinforced concrete structure and the Class 1 neighborhood facilities. Average land area is $482.68m^2$, gross floor area $3720.8m^2$, the number of underground floors level 1.16, the number of floors level 7.76, total number of floors 8.92, the building-to-land ratio 67.28%, floor area ratio 452.6%, height 31.44m, and the number of parked vehicles 24.16. Implications: This research will contribute to the establishment of the planning methods which increase the quality of Medical Buildings in Cheongju.

역사적 도심 내 현존하는 옛 건축물의 유형 및 분포 특성 - 청주시 성안동과 중앙동을 대상으로 - (Types and Distribution Characteristics of Old Buildings in Historic Urban Area of Cheongju, Korea - Focused on Seongan-dong and Jungang-dong -)

  • 김태영
    • 한국농촌건축학회논문집
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    • 제24권4호
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    • pp.59-66
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    • 2022
  • This study is to investigate the old buildings that have been built more than 50 years ago, targeting the areas of Seongan and Jungang-dong, the historic urban area of Cheongju. Their types and distribution characteristics are as follows. 1) First, the old buildings existing in downtown Cheongju account for 21.4% of 1,070 out of the total 5,000 buildings. Among them, wooden buildings before the 1950s accounted for 60% of them, resulting in severe aging. 2) Second, by use, 728 detached houses and 276 neighborhood living facilities account for 93.8% of the total, with 16 offices and 12 religious facilities. By structure, there are wood 65%, masonry 30%, and reinforced concrete 5% (54 buildings). By number of floors, the first floor 90%, the second floor 7.3%, and the third floor or higher 2.7% (30 buildings). The roof material is 51.6% of earthenware, followed by slate, cement, and slab. 3) Third, the old buildings are scattered all over the streets, and are concentrated in Namju-dong, Nammun-ro 1-ga-dong, Seoun-dong, and Sudong at the foot of Uamsan Mountain, a former refugee village. Also old buildings are distributed in Seoun-dong and Seokgyo-dong where hanok(korean traditional houses) are concentrated, in Namju and Nammunro 1 ga-dong blocks connected by alleys, and in cul-de-sac all over the place.

Analytical model for hybrid RC frame-steel wall systems

  • Mo, Y.L.;Perng, S.F.
    • Structural Engineering and Mechanics
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    • 제16권2호
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    • pp.127-139
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    • 2003
  • Reinforced concrete buildings with shearwalls are very efficient to resist earthquake disturbances. In general, reinforced concrete frames are governed by flexure and shearwalls are governed by shear. If a structure included both frames and shearwalls, it is generally governed by shearwalls. However, the ductility of ordinary reinforced concrete is very limited. To improve the ductility, a series of tests on framed shearwalls made of corrugated steel was performed previously and the experimental results were compared with ordinary reinforced concrete frames and shearwalls. It was found that ductility of framed shearwalls could be greatly improved if the thickness of the corrugated steel wall is appropriate to the surrounding reinforced concrete frame. In this paper, an analytical model is developed to predict the horizontal load-displacement relationship of hybrid reinforced concrete frame-steel wall systems according to the analogy of truss models. This analytical model is based on equilibrium and compatibility conditions as well as constitutive laws of corrugated steel. The analytical predictions are compared with the results of tests reported in the previous paper. It is found that proposed analytical model can predict the test results with acceptable accuracy.

Prediction of shear strength and drift capacity of corroded reinforced concrete structural shear walls

  • Yang, Zhihong;Li, Bing
    • Structural Engineering and Mechanics
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    • 제83권2호
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    • pp.245-257
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    • 2022
  • As the main lateral load resisting system in high-rise reinforced concrete structures, the mechanical performance of shear wall has a significant impact on the structure, especially for high-rise buildings. Steel corrosion has been recognized as an important factor affecting the mechanical performance and durability of the reinforced concrete structures. To investigate the effect on the seismic behaviour of corroded reinforced concrete shear wall induced by corrosion, analytical investigations and simulations were done to observe the effect of corrosion on the ultimate seismic capacity and drift capacity of shear walls. To ensure the accuracy of the simulation software, several validations were made using both non-corroded and corroded reinforced concrete shear walls based on some test results in previous literature. Thereafter, a parametric study, including 200 FE models, was done to study the influence of some critical parameters on corroded structural shear walls with boundary element. These parameters include corrosion levels, axial force ratio, aspect ratio, and concrete compressive strength. The results obtained would then be used to propose equations to predict the seismic resistance and drift capacity of shear walls with various corrosion levels.

L형 프리캐스트 콘크리트 벽패널로 채운 기존 철근 콘크리트 골조 구조물의 휨 거동 분석 (Analysis on the Flexural Behavior of Existing Reinforced Concrete Frame Structures Infilled with L-Type Precast Wall Panel)

  • 유승룡;주호성;손국원
    • 복합신소재구조학회 논문집
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    • 제6권2호
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    • pp.52-62
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    • 2015
  • This study aims at developing a new seismic resistant method by using precast concrete wall panels for existing low-rise, reinforced concrete beam-column buildings such as school buildings. Three quasi-static hysteresis loading tests were performed on one unreinforced beam-column specimen and two reinforced specimens with U-type precast wall panels. Top shear connection of the PC panel was required to show the composite strength of RC column and PC wall panel. However, the strength of the connection did not influence directly on the ultimate loading capacities of the specimens in the positive loading because the loaded RC column push the side of PC wall panel and it moved horizontally before the shear connector receive the concentrated shear force in the positive loading process. Under the positive loading sequence(push loading), the reinforced concrete column and PC panel showed flexural strength which is larger than 97% of the composite section because of the rigid binding at the top of precast panel. Similar load-deformation relationship and ultimated horizontal load capacities were shown in the test of PR1-LA and PR1-LP specimens because they have same section dimension and detail at the flexural critical section. An average of 4.7 times increase in the positive maximum loading(average 967kN) and 2.7 times increase in the negative maximum loading(average 592.5kN) had resulted from the test of seismic resistant specimens with anchored and welded steel plate connections than that of unreinforced beam-column specimen. The maximum drift ratios were also shown between 1.0% and 1.4%.

유사동적실험을 이용한 철근콘크리트 단주실험에 관한 연구 (Structural Behavior of Reinforced Concrete Short Columns by Pseudo-Dynamic Test)

  • 민경민;김용인;이강석
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 추계 학술발표회 제20권2호
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    • pp.73-76
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    • 2008
  • 과거 지진피해 조사에 의하면 건물이 많은 피해를 입었으며, 현재 널리 보급되어진 저층 철근콘크리트(RC) 건물도 예외는 아니었다. 우리나라의 경우 과반수이상이 저층 RC 건물로서 대규모지진이 발생한다면 저층 RC 건물에 거대한 피해가 발생할 것으로 예상된다. 한편, 대다수의 저층 RC 건물은 다양한 수평저항시스템으로 이루어져 있으며, 이것들은 각기 다른 변위에서 파괴될 것으로 판단된다. 그 가운데에서도 강성 및 강도는 높지만 소성영역에서 극취성적인 파괴성상(Extremely Brittle Failure)을 보이는 극단주(Extremely Short Column)(본 연구에서는 h/D<2 인 기둥을 극단주라 정의함, h: 순높이, D: 폭), 전단벽 등의 전단파괴형 부재 및 비교적 강성 및 강도는 낮지만 연성능력이 우수한 기둥 등의 휨파괴형 부재는 전형적인 수평저항시스템으로 다수의 피해지진에 의하여 그것들의 중요성이 대두되었다. 일반적으로, 극취성파괴형 부재를 포함한 전단파괴형 부재가 지진시 파괴되면, 건물의 수평저항능력은 급속히 저하되며, 전단파괴형 부재의 내력이 휨파괴형 부재의 내력에 비해 비교적 높다면, 전단파괴형 부재의 파괴가 건물 전체의 파괴를 야기할 것이다. 본 연구에서는 상기 전단 파괴형 부재의 지진시의 손상메커니즘을 파악할 목적으로 전단파괴를 하는 철근콘크리트 기둥(극단주) 실험체를 계획 제작하여 유사동적실험(Pseudo-dynamic Test)을 실시하였다.

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