• 제목/요약/키워드: Large steel plate

검색결과 269건 처리시간 0.032초

Safety assessment of Generation III nuclear power plant buildings subjected to commercial aircraft crash Part I: FE model establishment and validations

  • Liu, X.;Wu, H.;Qu, Y.G.;Xu, Z.Y.;Sheng, J.H.;Fang, Q.
    • Nuclear Engineering and Technology
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    • 제52권2호
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    • pp.381-396
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    • 2020
  • Investigations of the commercial aircraft impact effect on nuclear island infrastructures have been drawing extensive attention, and this paper aims to perform the safety assessment of Generation III nuclear power plant (NPP) buildings subjected to typical commercial aircrafts crash. At present Part I, finite element (FE) models establishment and validations for both the aircrafts and NPP buildings are performed. (i) Airbus A320 and A380 aircrafts are selected as the representative medium and large commercial aircrafts, and the corresponding fine FE models including the skin, beam, fuel and etc. are established. By comparing the numerically derived impact force time-histories with the existing published literatures, the rationality of aircrafts models is verified. (ii) Fine FE model of the Chinese Zhejiang Sanao NPP buildings is established, including the detailed structures and reinforcing arrangement of both the containment and auxiliary buildings. (iii) By numerically reproducing the existing 1/7.5 scaled aircraft model impact tests on steel plate reinforced concrete (SC) panels and assessing the impact process and velocity time-history of aircraft model, as well as the damage and the maximum deflection of SC panels, the applicability of the existing three concrete constitutive models (i.e., K&C, Winfrith and CSC) are evaluated and the superiority of Winfrith model for SC panels under deformable missile impact is verified. The present work can provide beneficial reference for the integral aircraft crash analyses and structural damage assessment in the following two parts of this paper.

긴급시공이 가능한 FRP 내진보강재 개발 및 최적 보강량 산정을 위한 해석적 연구 (Analytical Study for Optimal Reinforcement Amount and Development of FRP Seismic Reinforcement that can be Emergency Construction)

  • 김진섭;권민호;서현수;임정희;김동영
    • 한국구조물진단유지관리공학회 논문집
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    • 제17권5호
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    • pp.136-145
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    • 2013
  • 최근 발생한 대규모 지진으로 구조물의 내진보강에 대한 사회적 관심도가 높아지고 있다. 특히 내진 설계가 반영되지 않은 기둥은 취성적인 파괴로 구조물 전체붕괴를 유발하기 때문에 내진보강이 적용 되어야한다. 과거에는 단면증설법, 강판보강법등이 주로 적용되었고 최근에는 복합재료의 장점을 이용한 섬유보강법이 선호되고 있다. 그러나 이러한 보강법들은 구조물의 물리적 손상을 유발하며, 작업공간과 시간소비가 크다는 단점이 있다. 본 연구에서는 기존 보강법의 단점을 보강하여 복합재료 (Fiber reinforced polymer)와 Aluminum 체결부 이용한 FRP 내진보강재를 개발하였다. 비선형 유한요소 해석프로그램을 통해 개발된 FRP 내진보강재의 최적 보강량을 결정하였다.

3D BIM 기반 철골 제작도면 산출 생산성 분석 (A Study on the Productivity Analysis of 3D BIM-based Fabrication Documents Extraction)

  • 함남혁;양정혜;여옥경
    • 한국BIM학회 논문집
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    • 제9권3호
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    • pp.30-40
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    • 2019
  • Extraction of fabrication documents is very important because it provides information related to tasks of fabrication and construction. Therefore, in the case of a prefabricated member such as a steel structure, it is necessary to improve the productivity of fabrication documents through 3D BIM. However, research and evidence data on direct comparison analysis of 3D BIM-based documents extraction versus 2D CAD-based documents extraction are hard to find. Thus, this study focuses on productivity analysis of 3D BIM based fabrication documents extraction. In this study, the productivity data of fabrication documents extraction for module construction of EPC project was analyzed. For the productivity analysis, a case study on the fabrication documents of Module A (1,965 sheets) and Module B (1,216 sheets) was conducted. Fabrication documents for each module include general arrangement drawing, assembly drawing, single part drawing and single plate drawing. Comparison of 2D CAD based fabrication documents extraction and 3D BIM based fabrication documents extraction, the productivity for the entire work was improved from 17 hours to 16 hours for Module A and 12 hours to 7 hours for Module B. Especially, the productivity of the assembly drawings, which occupies a large part of the fabrication documents, was improved by about 48.75% from the total time required from 281 hours to 144 hours.

Spatial mechanical behaviors of long-span V-shape rigid frame composite arch bridges

  • Gou, Hongye;Pu, Qianhui;Wang, Junming;Chen, Zeyu;Qin, Shiqiang
    • Structural Engineering and Mechanics
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    • 제47권1호
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    • pp.59-73
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    • 2013
  • The Xiaolan channel super large bridge is unique in style and with greatest span in the world with a total length of 7686.57 m. The main bridge with spans arranged as 100m+220m+100m is a combined structure composed of prestressed concrete V-shape rigid frame and concrete-filled steel tubular flexible arch. First of all, the author compiles APDL command flow program by using the unit birth-death technique and establishes simulation calculation model in the whole construction process. The creep characteristics of concrete are also taken into account. The force ratio of the suspender, arch and beam is discussed. The authors conduct studies on the three-plate webs's rule of shear stress distribution, the box girder's longitudinal bending normal stress on every construction stage, meanwhile the distribution law of longitudinal bending normal stress and transverse bending normal stress of completed bridge's box girder. Results show that, as a new combined bridge, it is featured by: Girder and arch resist forces together; Moment effects of the structure are mainly presented as compressed arch and tensioned girder; The bridge type brings the girder and arch on resisting forces into full play; Great in vertical stiffness and slender in appearance.

FATIGUE DESIGN OF BUTT-WELDED TUBULAR JOINTS

  • Kim, D. S.;S. Nho;F. Kopp
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2002년도 Proceedings of the International Welding/Joining Conference-Korea
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    • pp.127-132
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    • 2002
  • Recent deepwater offshore structures in Gulf of Mexico utilize butt welded tubular joints. Application of welded tubular joint includes tendons, production risers, and steel catenary risers. Fatigue life assessment of these joints becomes more critical because the structures to which they are attached are allowed to undergo cyclic and sometimes large displacements around an anchored position. Estimating the fatigue behavior of these tubular members in the design stage is generally conducted by using S-N curves specified in the codes and standards. Applying the stress concentration factor of the welded structure to S-N approach often results in very conservative assessment because the stress field acting on the tubular has a non-uniform distribution through the thickness. Fracture mechanics and fitness for service (FFS) technology have been applied in the design of the catenary risers. This technology enables the engineer to establish proper requirements on weld quality and inspection acceptance criteria to assure satisfactory structural integrity during its design life. It also provides guidance on proper design curves to be used and a methodology for accounting for the effects of non-uniform stress distribution through the wall thickness. An attempt was made to develop set of S-N curves based on fracture mechanics approach by considering non-uniform stress distribution and a threshold stress intensity factor. Series of S-N curves generated from this approach were compared to the existing S-N curves. For flat plate butt joint, the S-N curve generated from fracture mechanics matches with the IIW class 100 curve when initial crack depth was 0.5 mm (0.02"). Similar comparison with API X′ was made for tubular joint.. These initial crack depths are larger than the limits of inspection by current Non-destructive examination (NDE) means, such as Automatic Ultrasonic Inspection (AUT). Thus a safe approach can be taken by specifying acceptance criteria that are close to limits of sizing capability of the selected NDE method. The comparison illustrates conservatism built into the S-N design curve.

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젖소농가의 사육규모별 축사시설 분석 (Surveying for Barn Facilities of Dairy Cattle Farms by Holding Scale)

  • 민병로;서광욱;최희철;이대원
    • 한국축산시설환경학회지
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    • 제15권3호
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    • pp.251-262
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    • 2009
  • 본 연구는 우리나라 젖소농가의 사육규모별 축사시설 현황을 파악하고자 전국 9개도시의 젖소 50두 이상사육농가 4,198호를 대상으로 축사시설 실태를 조사하였으며 그 결과는 다음과 같다. 50두 이상 전업농가에서 344,514마리를 사육하였으며 농가당 50~99마리 사육규모가 78.9%로 대부분이었고 농가당 평균 사육두수는 82.1두 이었다. 젖소 우사의 건축 시기는 평균 건축연도가 1995년 9월로타 축종에 비하여 노후한 편이었으며 농가당 축사면적은 $1,740.0\;m^2$이었다. 젖소 우사의 건축형태는 톱밥우사 84.0%로 가장 높은 비율을 차지하였고 후리스톨 5.1%, 계류식+톱밥 운동장 17.3%, 기타 4.4%이었다. 규모별 우사의 건축형태는 소규모 농가에서 톱밥우사가 많은 반면, 대규모 농가에서는 후리스톨이 10.9%로서 소규모 농가의 후리스톨 보다 높게 나타났다. 착유시설은 파이프라인 41.5%, 헤링본 22.8%, 탠덤 35.8% 이었으나 50~99두의 소규모 농가는 파이프라인이 48.0%로 많은 반면, 200두 이상에서는 헤링본 38.3%, 탠던 48.9%로 착유실 착유가 많은 것을 알 수 있다. 우사 바닥은 깔짚이 94.9%로 스크레이퍼에 비하여 상당히 높게 나타났으나 대규모 농가에서는 스크레파가 13.1%로 소규모 농가의 6.4%에 비하여 높은 경향이었다. 유우사 지붕의 재질은 슬레이트 32.5%, 비닐 16.3%, 썬라이트 11.1%, 판넬 10.9, 함석 8.8, 강판 8.3%로 조사되었다. 1995년 이전에는 슬레이트가 많았으나 1995년 이후 비닐지붕이 증가하고 있으며 대규모 농가에서도 비닐지붕이 23.8%로 소규모 농가에 비하여 많았다. 우사 외벽 재질은 개방식이 83.3%이며 윈치커튼이 26.8%로 대부분 개병형 우사 이었다. 젖소 사육시설의 사용년수는 착유기 9.2년, 사료자동급이기 7.9년, 급수기 9.2년, 전기시설 10.4년으로 최근 사료자동급이기의 시설개선이 많이 있었던 것으로 나타났다.

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긴급시공이 가능한 FRP 내진보강재로 보강된 기둥의 내진성능평가 실험 (An Experimental Study on Seismic Performance Evaluation of Retrofitted Column of FRP Seismic Reinforcement that can be Emergency Construction)

  • 김진섭;권민호;서현수;임정희;김동영
    • 한국구조물진단유지관리공학회 논문집
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    • 제17권6호
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    • pp.21-30
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    • 2013
  • 최근 발생한 대규모 지진으로 구조물의 내진보강에 대한 사회적 관심도가 높아지고 있다. 특히 내진설계가 반영되지 않은 기둥의 경우 지진에 의한 횡하중을 저항하지 못하고, 취성적인 파괴가 유발되어 구조물 전체적 붕괴를 유발할 수 있다. 따라서 빠른 시간내에 보강이 가능하면서 기둥에 손상을 주지 않는 기존의 보강법과 구별되는 응급 보강법이 필요하다. 과거에는 기둥 보강법으로 단면 증설법과 강판보강법 등이 개발되어 현장에 적용되었지만, 최근에는 FRP (Fiber Reinforced Polymer)의 장점을 활용한 탄소섬유시트공법이 많이 사용되고 있다. 본 연구에서는 긴급시공이 가능한 체결식 FRP 내진보강재를 사용한 구조물의 내진성능보강효과를 검토하고자 하였다. 검토를 위하여 실제 구조물의 축소모델의 철근콘크리트 시험체를 제작하고 횡방향 변위하중을 가력하였다. FRP 내진보강재를 이용한 내진보강시공 후 실내시험을 통하여 내진성능을 평가하였다. 그 결과 개발된 보강재의 철근콘크리트 구조물에 보강 시, 내진성능이 향상됨을 확인하였다.

에폭시 수지 모르터의 특성에 관한 실험적 연구 (Experimental Studies on the Properties of Epoxy Resin Mortars)

  • 연규석;강신업
    • 한국농공학회지
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    • 제26권1호
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    • pp.52-72
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    • 1984
  • This study was performed to obtain the basic data which can be applied to the use of epoxy resin mortars. The data was based on the properties of epoxy resin mortars depending upon various mixing ratios to compare those of cement mortar. The resin which was used at this experiment was Epi-Bis type epoxy resin which is extensively being used as concrete structures. In the case of epoxy resin mortar, mixing ratios of resin to fine aggregate were 1: 2, 1: 4, 1: 6, 1: 8, 1:10, 1 :12 and 1:14, but the ratio of cement to fine aggregate in cement mortar was 1 : 2.5. The results obtained are summarized as follows; 1.When the mixing ratio was 1: 6, the highest density was 2.01 g/cm$^3$, being lower than 2.13 g/cm$^3$ of that of cement mortar. 2.According to the water absorption and water permeability test, the watertightness was shown very high at the mixing ratios of 1: 2, 1: 4 and 1: 6. But then the mixing ratio was less than 1 : 6, the watertightness considerably decreased. By this result, it was regarded that optimum mixing ratio of epoxy resin mortar for watertight structures should be richer mixing ratio than 1: 6. 3.The hardening shrinkage was large as the mixing ratio became leaner, but the values were remarkably small as compared with cement mortar. And the influence of dryness and moisture was exerted little at richer mixing ratio than 1: 6, but its effect was obvious at the lean mixing ratio, 1: 8, 1:10,1:12 and 1:14. It was confirmed that the optimum mixing ratio for concrete structures which would be influenced by the repeated dryness and moisture should be rich mixing ratio higher than 1: 6. 4.The compressive, bending and splitting tensile strenghs were observed very high, even the value at the mixing ratio of 1:14 was higher than that of cement mortar. It showed that epoxy resin mortar especially was to have high strength in bending and splitting tensile strength. Also, the initial strength within 24 hours gave rise to high value. Thus it was clear that epoxy resin was rapid hardening material. The multiple regression equations of strength were computed depending on a function of mixing ratios and curing times. 5.The elastic moduli derived from the compressive stress-strain curve were slightly smaller than the value of cement mortar, and the toughness of epoxy resin mortar was larger than that of cement mortar. 6.The impact resistance was strong compared with cement mortar at all mixing ratios. Especially, bending impact strength by the square pillar specimens was higher than the impact resistance of flat specimens or cylinderic specimens. 7.The Brinell hardness was relatively larger than that of cement mortar, but it gradually decreased with the decline of mixing ratio, and Brinell hardness at mixing ratio of 1 :14 was much the same as cement mortar. 8.The abrasion rate of epoxy resin mortar at all mixing ratio, when Losangeles abation testing machine revolved 500 times, was very low. Even mixing ratio of 1 :14 was no more than 31.41%, which was less than critical abrasion rate 40% of coarse aggregate for cement concrete. Consequently, the abrasion rate of epoxy resin mortar was superior to cement mortar, and the relation between abrasion rate and Brinell hardness was highly significant as exponential curve. 9.The highest bond strength of epoxy resin mortar was 12.9 kg/cm$^2$ at the mixing ratio of 1:2. The failure of bonded flat steel specimens occurred on the part of epoxy resin mortar at the mixing ratio of 1: 2 and 1: 4, and that of bonded cement concrete specimens was fond on the part of combained concrete at the mixing ratio of 1 : 2 ,1: 4 and 1: 6. It was confirmed that the optimum mixing ratio for bonding of steel plate, and of cement concrete should be rich mixing ratio above 1 : 4 and 1 : 6 respectively. 10.The variations of color tone by heating began to take place at about 60˚C, and the ultimate change occurred at 120˚C. The compressive, bending and splitting tensile strengths increased with rising temperature up to 80˚ C, but these rapidly decreased when temperature was above 800 C. Accordingly, it was evident that the resistance temperature of epoxy resin mortar was about 80˚C which was generally considered lower than that of the other concrete materials. But it is likely that there is no problem in epoxy resin mortar when used for unnecessary materials of high temperature resistance. The multiple regression equations of strength were computed depending on a function of mixing ratios and heating temperatures. 11.The susceptibility to chemical attack of cement mortar was easily affected by inorganic and organic acid. and that of epoxy resin mortar with mixing ratio of 1: 4 was of great resistance. On the other hand, when mixing ratio was lower than 1 : 8 epoxy resin mortar had very poor resistance, especially being poor resistant to organicacid. Therefore, for the structures requiring chemical resistance optimum mixing of epoxy resin mortar should be rich mixing ratio higher than 1: 4.

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과수재배용 온실의 구조유형과 설계요소 분석 (Analysis of Structural Types and Design Factors for Fruit Tree Greenhouses)

  • 남상운;고기혁
    • 생물환경조절학회지
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    • 제22권1호
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    • pp.27-33
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    • 2013
  • 본 연구는 과수재배 시설의 표준화 및 환경조절기술개발을 위한 기초자료로 제공하는 것을 목적으로 과수재배용 온실의 실태를 조사하여 구조유형과 설계요소를 분석하고, 기상재해에 대한 안전성과 구조 및 환경관리에 대한 개선방안을 검토하였다. 시설재배 면적이 가장 많은 5개 품목 중 주로 제주도에서 재배되고 있는 감귤과 현재 재배온실을 찾을 수 없는 단감을 제외한 포도, 배 및 복숭아재배 온실을 연구대상으로 하였다. 감귤과 포도재배 온실은 꾸준히 증가하고 있으나 저장시설의 발달로 배와 단감재배 온실은 감소하고 있는 추세이다. 앞으로는 비가림 효과가 크고 저장성이 떨어지는 품목을 중심으로 과수재배 온실의 변화가 예상된다. 조사대상 온실 중 배 재배 온실과 복숭아재배 대형 단동온실을 제외하고는 대체로 보급형 온실의 규격을 따르고 있으며, 재배작목별로 특성화된 온실은 없는 것으로 나타났다. 과수재배 온실의 대부분은 농촌진흥청과 농림수산식품부에서 고시한 농가보급형 모델이나 내재해형 모델의 부재규격을 따르고 있었다. 기초는 대부분 콘크리트 기초를 사용하고 있었으며, 배 재배 온실의 경우에는 내재해형 모델보다 두꺼운 단면의 기둥을 사용하고, 강판을 기둥의 하단에 용접하여 매설한 형태의 특수한 기초를 적용하고 있었다. 조사대상 온실의 구조적 안전성을 검토한 결과 대부분 안전하였으나 김천과 천안의 포도재배 온실, 남원과 천안의 복숭아재배 온실에서 적설에 불안전한 것으로 나타났고, 남원의 복숭아재배 온실은 풍속에 대한 안전성도 부족한 것으로 나타났다. 또한 채소재배 온실을 복숭아재배로 전용한 온실의 경우 적설과 풍하중 모두 상당히 불안정한 것으로 나타났다. 과수의 수형, 수고 및 재식간격을 고려하여 과수 재배 온실의 적정규격을 검토한 결과 포도재배 온실은 폭 7.0~8.0m, 측고 2.5~2.8m가 적당하고, 배와 복숭아재배 온실은 폭 6.0~7.0m, 측고 3.0~3.3m 정도가 적당한 것으로 판단된다.