• 제목/요약/키워드: applied element method

검색결과 3,675건 처리시간 0.035초

추락낙하 사고 시 지면과 충돌하는 고준위폐기물 처분용기의 비선형구조해석 (Nonlinear Structural Analysis of the Spent Nuclear Fuel Disposal Canister Subjected to an Accidental Drop and Ground Impact Event)

  • 권영주
    • 한국전산구조공학회논문집
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    • 제32권2호
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    • pp.75-86
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    • 2019
  • 원자력발전의 최대 걸림돌은 사용 후 핵연료인 고준위폐기물이다. 높은 방사능과 발생하는 열은 사용 후 핵연료의 안전한 처분을 어렵게 하고 있다. 현재 유일한 처리방법은 심지층 처분기술이다. 본 논문은 이와 같은 심지층 처분기술의 핵심기술 중의 하나인 처분용기의 구조안전성 설계문제를 다루고 있다. 특히 처분장에서 처분용기 처분 시 사고로 운송차량에서 추락낙하 하여 지면과 충돌하는 경우 처분용기에 가해지는 충격력에 의하여 처분용기에 발생하는 응력 및 변형에 대한 비선형구조해석을 수행하였다. 해석의 주된 내용은 심지층 처분장에서 운반차량으로 처분용기 운반 중 사고로 추락낙하 하여 지면과의 충돌 시에 처분용기에 가해지는 충격력을 기구동역학해석 상용 컴퓨터코드인 RecurDyn으로 구하고 이 충격력에 의하여 처분용기에 발생하는 응력 및 변형을 유한요소 정적 구조해석 상용 컴퓨터코드인 NISA를 이용하여 구한 것이다. 해석결과는 충돌 충격 시간 중 발생하여 처분용기에 가해지는 충격력에 의하여 처분용기, 특히 처분용기의 위 덮개 혹은 아래 덮개에 큰 응력과 대변형이 발생함을 보여주고 있다.

선박용 Shaver Type 로프절단장치의 안전성 및 성능평가에 관한 연구 (A Study on Safety and Performance Evaluation to Shaver Type Rope Cutter for Ships)

  • 강성훈;고재용
    • 해양환경안전학회지
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    • 제28권4호
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    • pp.632-638
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    • 2022
  • 우리나라는 연안해역을 집약적으로 활용하기 때문에 폐기물로 인한 해양사고 발생률도 높은 편이다. 항해하는 선박의 추진기에 해양부유물, 폐로프, 폐어망 등이 감기는 사고를 부유물감김사고로 정의하고 있다. 이러한 사고를 예방하기 위해 본 연구에서는 국내에 상용화되어 세이버 타입(Shaver type)의 로프절단장치를 유한요소법을 이용하여 구조안전성 검토와 수조시험을 통해 절단 과정 및 성능평가를 진행하였다. 그 결과 로프절단장치를 구성하는 모든 파트는 0.5s 도달하기 전 파손되었으며, 인장강도 대비 발생한 최대응력을 기준으로 각 파트의 안전계수는 최소 2이상으로 나타났다. 수조시험에서는 세이버타입의 절단장치의 절단 과정을 살펴보았고, 실제 해상에서 부유중인 폐로프가 다양한 각도로 진입하는 것을 고려하여 케이스 별로 설치 각도를 설정하였다. 그 결과 모든 케이스에서 절단이 되었으며, 절단 날이 어떠한 각도에 장착되어도 로프를 절단하는데 문제가 없을 것으로 판단된다.

Stress analysis of high-temperature superconducting wire under electrical/magnetic/bending loads

  • Dongjin Seo;Yunjo Jung;Hong-Gun Kim;Hyung-Seop Shin;Young-Soon Kim
    • 한국초전도ㆍ저온공학회논문지
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    • 제25권4호
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    • pp.19-23
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    • 2023
  • The Second-generation high-temperature superconducting (HTS) Rare-Earth Barium Copper Oxide (REBCO) wire is a composite laminate having a multi-layer structure (8 or more layers). HTS wires will undergo multiple loads including the bending-tension loads during winding, high current density, and high magnetic fields. In particular, the wires are subjected to bending stress and magnetic field stress because HTS wires are wound around a circular bobbin when making a high-field magnetic. Each of the different laminated wires inevitably exhibits damage and fracture behavior of wire due to stress deformation, mismatches in thermal, physical, electrical, and magnetic properties. Therefore, when manufacturing high-field magnets and other applications, it is necessary to calculate the stress-strain experienced by high-temperature superconducting wire to present stable operating conditions in the product's use environment. In this study, the finite element model (FEM) was used to simulate the strain-stress characteristics of the HTS wire under high current density and magnetic field, and bending loads. In addition, the result of obtaining the neutral axis of the wire and the simulation result was compared with the theoretical calculation value and reviewed. As a result of the simulation using COMSOL Multiphysics, when a current of 100 A was applied to the wire, the current value showed the difference of 10-9. The stress received by the wire was 501.9 MPa, which showed a theoretically calculated value of 500 MPa and difference of 0.38% between simulation and theoretical method. In addition, the displacement resulted is 30.0012 ㎛, which is very similar to the theoretically calculated value of 30 ㎛. Later, the amount of bending stress by the circular mandrel was received for each layer and the difference with the theoretically obtained the neutral axis result was compared and reviewed. This result will be used as basic data for manufacturing high-field magnets because it can be expanded and analyzed even in the case of wire with magnetic flux pinning.

H-Pile과 Plastic Sheet Pile을 결합한 토류벽체에 대한 수치해석적 연구 (Numerical study for Application of H-Pile Connection Plastic Sheet Pile Retaining Wall (HCS))

  • 이규남;임희대
    • 지질공학
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    • 제27권3호
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    • pp.331-343
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    • 2017
  • 본 연구에서는 기존의 H-Pile+토류판 또는 H-Pile+토류판+차수그라우팅 공법의 안정성, 시공성 및 경제성을 개선하기 위해 H-Pile에 Plastic Sheet Pile(P.S.P)과 연성벽체인 P.S.P의 간격유지 및 보강기능을 위한 간격재(각형강관)를 결합한 토류벽체 System인 HCS공법을 개발하고, HCS공법을 구성하는 각 부재의 거동을 3차원 유한요소해석에 의해 규명하는 연구이다. HCS공법의 거동을 수치해석적으로 규명하기 위해 Plastic Sheet Pile 규격 3종류, H-Pile 규격 2종류 및 설치간격 3종류, 간격재 규격 1종류 및 설치간격 4종류에 대해 광범위한 3차원 유한요소해석을 실시하였다. 수치해석결과 $P.S.P-460{\times}131.5{\times}7t$ (PS7)와 H-Pile $250{\times}250{\times}9{\times}14$ (H250), $P.S.P473{\times}133.5{\times}9t$ (PS9)와 H-Pile $300{\times}200{\times}9{\times}14$ (H300)의 조합에서 상대적으로 유사한 응력비(=발생응력/허용응력)를 갖는 것으로 검토되어 이 제품의 조합이 경제적인 것으로 확인되었으며, P.S.P+H-Pile+간격재 복합체의 강성이 증가할수록 벽체의 수평변위와 상부지반의 연직변위가 감소하였다. 특히, H-Pile과 P.S.P의 강성차이로 인한 Arching 현상으로 P.S.P의 토압의 상당부분이 H-Pile로 응력(토압) 전이가 발생하여 P.S.P의 응력 및 변위는 미소하게 나타났다. 본 연구를 통하여 HCS공법을 구성하는 각각의 부재들의 거동을 확인할 수 있었으며, 확인된 연구결과를 통해 향후 HCS공법을 합리적이고 안정하며 경제적으로 적용하는 데 활용 가능하리라 판단된다.

공용 공간의 패러다임 변화와 질적 공간 분석 - 500병상 이상 국내 종합병원 진입층을 중심으로 - (A Study on the Change of Paradigm and Analysis of Qualitative Space in Public Space - Focused on the Entrance Floor in General Hospital over 500 beds in Korea -)

  • 손지혜;양내원
    • 한국실내디자인학회논문집
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    • 제23권6호
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    • pp.212-220
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    • 2014
  • Entrance floor in hospital has became important space for medical service in holistic perspective and image enhancement. However, basically a discussion of the qualitative properties and the role of public space is paucity in change of public spaces paradigm. In accordance with this problem, this study consider the change of paradigm in public space based on earlier studies and create classification criterion of space. According to the criterion, G/D ratio and the qualitative spatial area ratio of 26 general hospitals which were planned over 500 beds are analyzed by case study method. The conclusion of this study is as follows. 1) The space according to the medical function is variable element. So the public space should be planned from function-subordinate space to self-reliance space in the future. 2) There is no correlation between the high G/D ratio and the high ratio of qualitative spacial area. In other word It's hard to say that the public space which G/D ratio is high is qualitative space. 3) Since 2000, various types in accordance with the circulation system is applied to public space. And ratio of qualitative spacial area is relatively high in the street type and the concourse type. 4) The qualitative spatial area ratio of stay space is higher than passage's one.

Dynamic response of functionally gradient austenitic-ferritic steel composite panels under thermo-mechanical loadings

  • Isavand, S.;Bodaghi, M.;Shakeri, M.;Mohandesi, J. Aghazadeh
    • Steel and Composite Structures
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    • 제18권1호
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    • pp.1-28
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    • 2015
  • In this paper, the dynamic response of functionally gradient steel (FGS) composite cylindrical panels in steady-state thermal environments subjected to impulsive loads is investigated for the first time. FGSs composed of graded ferritic and austenitic regions together with bainite and martensite intermediate layers are analyzed. Thermo-mechanical material properties of FGS composites are predicted according to the microhardness profile of FGS composites and approximated with appropriate functions. Based on the three-dimensional theory of thermo-elasticity, the governing equations of motionare derived in spatial and time domains. These equations are solved using the hybrid Fourier series expansion-Galerkin finite element method-Newmark approach for simply supported boundary conditions. The present solution is then applied to the thermo-elastic dynamic analysis of cylindrical panels with three different arrangements of material compositions of FGSs including ${\alpha}{\beta}{\gamma}M{\gamma}$, ${\alpha}{\beta}{\gamma}{\beta}{\alpha}$ and ${\gamma}{\beta}{\alpha}{\beta}{\gamma}$ composites. Benchmark results on the displacement and stress time-histories of FGS cylindrical panels in thermal environments under various pulse loads are presented and discussed in detail. Due to the absence of similar results in the specialized literature, this paper is likely to fill a gap in the state of the art of this problem, and provide pertinent results that are instrumental in the design of FGS structures under time-dependent mechanical loadings.

Investigation of shear transfer mechanisms in repaired damaged concrete columns strengthened with RC jackets

  • Achillopoulou, D.V;Karabinis, A.I
    • Structural Engineering and Mechanics
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    • 제47권4호
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    • pp.575-598
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    • 2013
  • The study presents the results of an experimental program concerning the shear force transfer between reinforced concrete (RC) jackets and existing columns with damages. In order to investigate the effectiveness of the repair method applied and the contribution of each shear transfer mechanism of the interface. It includes 22 concrete columns (core) (of 24,37MPa concrete strength) with square section (150mm side, 500 mm height and scale 1:2). Ten columns had initial construction damages and twelve were subjected to initial axial load. Sixteen columns have full jacketing at all four faces with 80mm thickness (of 31,7MPa concrete strength) and contain longitudinal bars (of 500MPa nominal strength) and closed stirrups spaced at 25mm, 50mm or 100mm (of 220MPa nominal strength). Fourteen of them contain dowels at the interface between old and new concrete. All columns were subjected to repeated (pseudo-seismic) axial compression with increasing deformation cycles up to failure with or without jacketing. Two load patterns were selected to examine the difference of the behavior of columns. The effects of the initial damages, of the reinforcement of the interface (dowels) and of the confinement generated by the stirrups are investigated through axial- deformation (slip) diagrams and the energy absorbed diagrams. The results indicate that the initial damages affect the total behavior of the column and the capacity of the interface to shear mechanisms and to slip: a) the maximum bearing load of old column is decreased affecting at the same time the loading capacity of the jacketed element, b) suitable repair of initially damaged specimens increases the capacity of the jacketed column to transfer load through the interface.

대변형(大變形) 효과(效果)를 고려(考慮)한 평면(平面)뼈대 구조물(構造物)의 탄(彈)-소성(塑性) 유한요소해석(有限要素解析) (Elasto-Plastic F.E. Analysis of Plane Framed Structures including Large Deformation Effects)

  • 김문영;유순재;이명재
    • 대한토목학회논문집
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    • 제14권1호
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    • pp.105-117
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    • 1994
  • 평면(平面)뼈대 구조물(構造物)에 대해 기하학적(幾何學的)인 비선형성(非線形性)과 소성(塑性)힌지의 개념(槪念)을 이용한 재료(材料)의 비선형성(非線形性)이 동시에 고려될 수 있도록 한 유한요소이론(有限要素理論) 및 해석방법(解析方法)을 제시한다. 단면(斷面)은 길이방향으로 일정하고, 구형(矩形) 및 I형(形) 단면(斷面)을 갖는 것으로 가정한다. 휨모멘트와 축방향력(軸方向力)의 결합된 효과를 고려한 한계함수(限界凾數) 사용하여 평면(平面)뼈대부재(部材)의 탄소성(彈塑性) 강도(剛度)매트릭스를 유도(誘導)한다. 변위증분법(變位增分法)을 적용하여 탄소성해석(彈塑性解析)에 의한 뼈대 구조물(構造物)의 극한거동(極限擧動)을 추적한다. 예제(例題)들을 통하여 다른 문헌(文獻)의 결과(結果)와 본(本) 연구(硏究)에 의한 결과(結果)를 비교(比較) 분석(分析)함으로써 제시된 이론(理論)의 정당성(正當性) 입증(立證)한다.

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유연복합재를 이용한 헬리콥터 꼬리날개 구동축의 최적 설계 (Optimum Design of a Helicopter Tailrotor Driveshaft Using Flexible Matrix Composite)

  • 신응수;홍을표;이기녕;김옥현
    • 대한기계학회논문집A
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    • 제28권12호
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    • pp.1914-1922
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    • 2004
  • This paper provides a comprehensive study of optimum design of a helicopter tailrotor driveshaft made of the flexible matrix composites (FMCs). Since the driveshaft transmits power while subjected to large bending deformation due to aerodynamic loadings, the FMCs can be ideal for enhancing the drivetrain performance by absorbing the lateral deformation without shaft segmentation. However, the increased lateral flexibility and high internal damping of the FMCs may induce whirling instability at supercritical operating conditions. Thus, the purpose of optimization in this paper is to find a set of tailored FMC parameters that compromise between the lateral flexibility and the whirling stability while satisfying several criteria such as torsional buckling safety and the maximum shaft temperature at steadystate conditions. At first, the drivetrain was modeled based on the finite element method and the classical laminate theory with complex modulus approach. Then, an objective function was defined as a combination of an allowable bending deformation and external damping and a genetic algorithm was applied to search for an optimum set with respect to ply angles and stack sequences. Results show that an optimum laminate consists of two groups of layers: (i) one has ply angles well below 45$^{\circ}$ and the other far above 45$^{\circ}$ and (ii) the number of layers with low ply angles is much bigger than that with high ply angles. It is also found that a thick FMC shaft is desirable for both lateral flexibility and whirling stability. The genetic algorithm was effective in converging to several local optimums, whose laminates exhibit similar patterns as mentioned above.

Development of a Shower Carrier based on the Needs in Long-term Care Institutions

  • Cho, Deok-Yeon;Ko, Cheol-Woong;Chun, Keyoung-Jin;No, Kon-Woo
    • 대한인간공학회지
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    • 제31권2호
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    • pp.379-388
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    • 2012
  • Objective: This study developed a new shower carrier prototype to reduce caregivers' muscle burden and to increase use convenience by reflecting the needs of domestic long-term care institutions. Background: In the long-term care institutions, one of the ADL(Activities of Daily Life) factors is bathing/showering. Recently, bath/shower-assisting equipment is actively being introduced in care institutions to reduce the caregivers' care cost, but most of the domestic equipment was designed to imitate foreign products and rarely reflected the needs of care institutions. Method: Based on Korean elderly people's body information, the bed size(length: 1,900mm, width: 650mm) was set-up, and a variable headrest with a newly designed headform was developed to provide the comfort for the elderly and convenience for caregivers. To reduce caregivers' muscle burden on transferring and showering activities, a 3-step column lifting module equipped with dual actuators(lowest/highest levels from the ground: 600/1,100mm, Stroke: 500mm) was developed, and the wheelbase parameter(length: 1,250mm, width: 580mm) was defined securing the turn-over safety of the shower carrier. The drivability tests were performed for the prototype and foreign product, and the male and female subject's muscle activities were measured through the tests. Results: The structural stability of the shower carrier prototype was secured by finite element analysis, and the muscle activities of the subjects through the drivability tests largely decreased in the prototype, compared to the foreign product. Conclusion: In this study, a new shower carrier prototype was developed to possibly reduce caregivers' muscle burden and to increase use convenience based on the needs of long-term care institutions. It was expected that the drivability performance of the prototype could be relatively superior to that of the foreign product. Application: The results obtained from the study can be applied for the optimal development of a shower carrier including other equipment to effectively care for the elderly.