• 제목/요약/키워드: Brick element

검색결과 93건 처리시간 0.02초

7~9세기 석탑조영방법을 통해 본 안동 조탑리 오층전탑의 조영방법 고찰 (Consideration on how to build on AndongJotap-ri five-story brick pagoda using the building methodology of a stone pagoda between the 7th~9th century)

  • 김상구;이정수
    • 한국산학기술학회논문지
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    • 제16권1호
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    • pp.744-754
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    • 2015
  • 동아시아에서 불사의 건립은 도성 및 궁궐과 더불어 가장 중요한 건축 활동 중의 하나로 인지되며, 특히 불탑은 부처의 사리를 모시는 상징적인 의미를 가진 불교건축의 가장 중요한 요소로서 불사의 중심에 위치하였다. 이에 본 연구는 안동 조탑리 오층전탑이 해체 보수 하고 있는 상황에서, 7-9세기 석탑의 내부구조체계를 통하여 전탑의 축조과정 등을 해석하고자 연구를 실시하였다. 그 결과, 첫째, 전탑의 파괴현상으로 측력으로 인한 밀림현상과 부재의 소성온도, 배합물질의 차이로 인한 부재의 파손을 들 수 있었다. 둘째, 전탑은 석탑과 같이 의장적인 부분과 구조적인 부분으로 구분되어 조영된 것을 알 수 있었다. 의장적인 부분은 가장자리에 있는 전으로 구성되며, 구조적인 부분은 가장자리 전과 내부 중심까지로 의장적인 전의 안쪽에는 완충공간 즉 상부하중이 수직으로 내려오면서 측력이 발생하는 것을 잡아주는 공간에 석재를 둔 것으로 분석되었다. 셋째, 내부중앙에 목주를 두어 전탑의 조영 시 중심축을 잡아주는 역할을 하였으며, 그 중심축은 찰주공의 하단까지 이어져 있었다. 넷째, 찰주공은 따로 내부 적심의 중앙에 따로 분리 축조하였다. 그리고 찰주공의 하단에는 찰주의 안착 및 위치선정, 뒤틀림보정을 위하여 구멍을 뚫어 놓았다. 이로 인하여 찰주는 자중으로 움직이지 않는 철재보다 목재로 설치하였을 가능성을 두었다.

Equivalent frame model and shell element for modeling of in-plane behavior of Unreinforced Brick Masonry buildings

  • Kheirollahi, Mohammad
    • Structural Engineering and Mechanics
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    • 제46권2호
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    • pp.213-229
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    • 2013
  • Although performance based assessment procedures are mainly developed for reinforced concrete and steel buildings, URM (Unreinforced Masonry) buildings occupy significant portion of buildings in earthquake prone areas of the world as well as in IRAN. Variability of material properties, non-engineered nature of the construction and difficulties in structural analysis of masonry walls make analysis of URM buildings challenging. Despite sophisticated finite element models satisfy the modeling requirements, extensive experimental data for definition of material behavior and high computational resources are needed. Recently, nonlinear equivalent frame models which are developed assigning lumped plastic hinges to isotropic and homogenous equivalent frame elements are used for nonlinear modeling of URM buildings. The equivalent frame models are not novel for the analysis of masonry structures, but the actual potentialities have not yet been completely studied, particularly for non-linear applications. In the present paper an effective tool for the non-linear static analysis of 2D masonry walls is presented. The work presented in this study is about performance assessment of unreinforced brick masonry buildings through nonlinear equivalent frame modeling technique. Reliability of the proposed models is tested with a reversed cyclic experiment conducted on a full scale, two-story URM building at the University of Pavia. The pushover curves were found to provide good agreement with the experimental backbone curves. Furthermore, the results of analysis show that EFM (Equivalent Frame Model) with Dolce RO (rigid offset zone) and shell element have good agreement with finite element software and experimental results.

Analysis of stress dispersion in bamboo reinforced wall panels under earthquake loading using finite element analysis

  • Kumar, Gulshan;Ashish, Deepankar K.
    • Computers and Concrete
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    • 제21권4호
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    • pp.451-461
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    • 2018
  • Present study is mainly concerned about the idea of innovative utilization of bamboo in modern construction. Owing to its compatible mechanical properties, a beneficial effect of its use in reinforced concrete (RC) frame infills has been observed. In this investigation, finite element analyses have been performed to examine the failure pattern and stress distribution pattern through the infills of a moment resisting RC frame. To validate the pragmatic use of bamboo reinforced components as infills, earthquake loading corresponding to Nepal earthquake had been considered. The analysis have revealed that introduction of bamboo in RC frames imparts more flexibility to the structure and hence may causes a ductile failure during high magnitude earthquakes like in Nepal. A more uniform stress distribution throughout the bamboo reinforced wall panels validates the practical feasibility of using bamboo reinforced concrete wall panels as a replacement of conventional brick masonry wall panels. A more detailed analysis of the results have shown the fact that stress concentration was more on the frame components in case of frame with brick masonry, contrary to the frame with bamboo reinforced concrete wall panels, in which, major stress dispersion was through wall panels leaving frame components subjected to smaller stresses. Thus an effective contribution of bamboo in dissipation of stresses generated during devastating seismic activity have been shown by these results which can be used to concrete the feasibility of using bamboo in modern construction.

Field investigation and seismic analysis of a historical brick masonry minaret damaged during the Van Earthquakes in 2011

  • Muvafik, Murat
    • Earthquakes and Structures
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    • 제6권5호
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    • pp.457-472
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    • 2014
  • The paper presents the field investigations and seismic analyses of a historical masonry brick minaret damaged during October 23 (Erciş) and November 9 (Edremit), 2011 Van earthquakes in Turkey. Ulu Mosque Minaret located on Tebriz Kap1 Street in the city centre of Van, Turkey is selected for investigation. Two earthquakes hit the minaret within seventeen days, causing progressive damage. It was seen from the field investigations that the minaret was heavily damaged. To validate the field investigations, three dimensional finite element model of the minaret is constituted by ANSYS software using relievo drawings. Finite element model of the minaret is analyzed under the Van earthquake records to determine the seismic behavior. The displacements, maximum and minimum principal stresses and strains are obtained from the analyses and compared with field observations.

Analysis of the in-plane shear behaviour of FRP reinforced hollow brick masonry walls

  • Gabor, A.;Ferrier, E.;Jacquelin, E.;Hamelin, P.
    • Structural Engineering and Mechanics
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    • 제19권3호
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    • pp.237-260
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    • 2005
  • This paper presents an experimental as well as a numerical analysis of the in-plane shear behaviour of hollow, $870{\times}840{\times}100mm$ masonry walls, externally strengthened with FRP composites. The experimental approach is devoted to the evaluation of the effectiveness of different composite strengthening configurations and the methodology consists in the diagonal compression of masonry walls. The numerical study assesses the stress and strain state distribution in the unreinforced and strengthened panels using a commercial finite element code. The effect of FRP reinforcement on the masonry behaviour and the capability of modelling to forecast a representative failure mode of the unreinforced and reinforced masonry walls is investigated.

Index Machine의 Jig Body 강도 및 변위해석 (Analysis of Strength and Displacement of Jig Body in Index Machine)

  • 한근조;오세욱;김광영;안성찬;전형용
    • 한국정밀공학회지
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    • 제15권3호
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    • pp.24-30
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    • 1998
  • Strength and displacement of jig body in index machine utilized for multiprocess machining such as drilling, boring and tapping, etc, at the same time were analyzed by the use of finite element analysis soft ware ANSYS 5.2A. The whole geometry was constructed by 4048 elements and 7016 nodes employing 8 node brick element. The analyses were carried out on five loading cases combining vertical and horizontal machining to simulate the case occurring large displacement and the one occurring small displacement one and provided following conclusions. (1) Jig body had sufficient strength because its safety factor was 6.95 even in the most severe loading case. (2) The largest displacement in Z direction was 549 m and that in radial direction was 43.7 m. (3) In order to reduce the displacement, vertical machining rather than horizontal or two or three processes should be adopted in the same station. (4) Alternate change of horizontal machining direction at consecutive stations can reduce the displace ment. (5) The dimension of the slider should be increased to reduce the displacement by the tolerance in the sliding part. (6) A bypass idle piston head needs to be installed to give a counterpart supporting load from opposite direction for a single horizontal machining case.

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지반-골조구조물 상호작용계의 3차원 정.동적 해석 (3-Dimensional Static and Dynamic Analysis of Soil-Framework Interaction System)

  • 서상근;장병순
    • 전산구조공학
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    • 제10권2호
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    • pp.243-254
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    • 1997
  • 기초 지반상에 존재하는 3차원 골조구조물에 진동을 유발시키는 기계하중, 풍하중, 지진과 같은 동적 하중이 작용한다면, 지반-골조구조물 상호작용계의 동적거동을 해석하여야한다. 따라서, 본 연구에서는 실제 구조물에 근접한 기하학적 형상으로 이상화 시키기 위해, 슬래브와 기초판은 유연성을 갖는 4-절점 판요소, 보.기둥은 2-절점 보요소, 탄성지반은 8-절점 입체요소를 사용하여 유한요소법으로 3차원 상호작용계를 해석하였다. 본 연구의 목적은 지반-골조구조물 상호작용계의 동적 거동을 해석하기 위해, 동적 운동 방정식을 정리한 후 유한요소 프로그램으로 상호작용계의 동적 거동을 해석하는 것이다.

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증기 터빈 블레이드 그룹의 3차원 유한요소 진동 해석 (A 3-Dimentional Finite-Element Vibration Analysis of Blade Groups for Steam Turbines)

  • 서자력;류석주;박종포
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2001년도 춘계학술대회논문집
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    • pp.729-734
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    • 2001
  • A 3-dimentional finite element model for vibration analysis of steam-turbine blade groups is presented, employing the 3-dimentional incompatible brick element with 8 nodes. The skew coordinate system is introduced in the model for considering multi-axis symmetry and specialty of displacement constrain condition of blade groups. Vibration characteristics of blade groups are analyzed, and compared with experimental results.

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엘보우 시편에서의 재료 경화 거동 모델에 따른 최적의 유한 요소 선정 (Selection of the Optimal Finite Element Type by Material Hardening Behavior Model in Elbow Specimen)

  • 허은주;권형도
    • 한국압력기기공학회 논문집
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    • 제13권1호
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    • pp.84-91
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    • 2017
  • This paper is proposed to select the optimal finite element type in finite element analysis. Based on the NUREG reports, static analyses were performed using a commercial analysis program, $ABAQUS^{TM}$. In this study, we used a nonlinear kinematic hardening model proposed by Chaboche. The analysis result of solid elements by inputting the same material constants was different from the results of the NUREG report. This is resulted from the difference between shell element and solid element. Therefore, the material constants that have similar result to the experimental result were determined and compared according to element type. In case of using solid element for efficient finite element analysis, we confirmed that the use of C3D8I element type(incompatible mode 8-node linear brick element) leads the accurate result while reducing the analysis time.

인텔리전트 브릭 시스템 완구의 디자인 확장성에 관한 연구 (A Study on the Extended Design of Intelligent Brick System Toy)

  • 권효정;김치용
    • 한국HCI학회:학술대회논문집
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    • 한국HCI학회 2006년도 학술대회 2부
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    • pp.69-75
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    • 2006
  • 디지털 테크놀로지의 비약적인 발전으로 우리는 연령과 계층을 막론하고 실생활 측면에서 사용자 환경의 변화, 디자인 시각의 변화 등 많은 변화의 사례들을 인지할 수 있다. 그 중에서도 최근 유아들의 전유물이었던 완구 시장이 학생, 성인들 대상으로 마케팅이 확장되면서 기존에 없었던 보다 지능적인 시스템과 다양한 콘텐츠를 보유하고 혁신적인 인터페이스를 갖춘 디지털 인텔리전트 브릭(Digital Intelligent Brick)완구가 시장을 빠르게 확대해 나가고 있다. 이처럼 아날로그 브릭에서 디지털 브릭으로의 새로운 변화를 주도한 대표적인 예로는 MIT와 공동연구로 개발된 로보틱스 인벤션 시스템(Robotics Invention System)인 레고(Lego)의 '마인드스톰'을 들 수 있다. 인텔리전트 브릭 시스템 완구는 Stud와 Tube의 Elements로 이루어진 기본적이고 반복적인 재료의 속성에서 시스템의 무한한 가변성과 사용자의 다양한 조건에 맞춘 인터페이스를 적용함으로써 창의적 결과물로의 확장성을 나타내고 있다. 본 연구에서는 디지털 테크놀로지를 기반으로 한 사용자중심 콘텐츠 속성을 지닌 인텔리전트 브릭 시스템에서의 시스템 구조 가변성 및 인터페이스 디자인의 확장성, 그리고 사용자 인터랙션 측면에 관하여 분석해 보고자 한다. 이를 토대로 인텔리전트 브릭 시스템이 향후 디지털 디자인 산업의 다양한 측면에서 보다 적극적으로 활용될 수 있는 기초를 제시하는 데 본 연구의 목적이 있다고 할 것이다.

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