• 제목/요약/키워드: Shape of Lattice

검색결과 172건 처리시간 0.022초

비대칭 적설하중 적용을 통한 단층 래티스 지붕 구조물의 좌굴하중 특성 (Buckling Load of Single-layered Lattice Roof Structure Considering Asymmetric Snow Load)

  • 황경주;이승재;손수덕
    • 한국공간구조학회논문집
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    • 제15권3호
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    • pp.43-49
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    • 2015
  • A single-layerd steel lattice roof, which has 50m span, was constructed. In order to figure out the realistic buckling load level, the structural analysis of this roof structure was performed especially by local snow load. Due to the characteristics of application of snow load, the load combinations of snow should be considered not only global area but also local part so that the critical buckling load could be observed as easy as possible. Geometrical imperfection was simulated to consider inaccurate shape of structure. And then nonlinear analysis were performed. Finally, this paper could investigate that the local snow load with geometrical imperfection decreased the level of buckling load significantly.

접합부 강성과 비대칭 적설하중 적용을 통한 목조 래티스 지붕 구조물의 좌굴하중 특성 (Buckling Load of Lattice Timber Roof Structure considering Stiffness of Connection with Asymmetric Snow Load)

  • 황경주
    • 한국공간구조학회논문집
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    • 제23권1호
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    • pp.69-76
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    • 2023
  • A timber lattice roof, which has around 30m span, was constructed. In order to figure out the realistic buckling load level, the structural analysis of this roof structure was performed especially by stiffness of connection with various asymmetric snow load. Due to the characteristics of application of snow load, the load combinations of snow should be considered not only global area but also local part so that the critical buckling load could be observed as easy as possible. Geometrical imperfection was simulated to consider inaccurate shape of structure. And then nonlinear analysis were performed. Finally, this paper could investigate that the asymmetric snow load with the lower level stiffness of connection decreased the level of buckling load significantly.

Lattice-Boltzmann Simulation of Fluid Flow around a Pair of Rectangular Cylinders

  • Taher, M.A.;Baek, Tae-Sil;Lee, Yeon-Won
    • Journal of Advanced Marine Engineering and Technology
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    • 제33권1호
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    • pp.62-70
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    • 2009
  • In this paper, the fluid flow behavior past a pair of rectangular cylinders placed in a two dimensional horizontal channel has been investigated using Lattice-Boltzmann Method(LBM). The LBM has built up on the D2Q9 model and the single relaxation time method called the Lattice-BGK(Bhatnagar-Gross-Krook)model. Streamlines, velocity, vorticity and pressure contours are provided to analyze the important characteristics of the flow field for a wide range of non dimensional parameters that present in our simulation. Special attention is paid to the effect of spacing(d) between two cylinders and the blockage ratio A(=h/H), where H is the channel height and h is the rectangular cylinder height. for different Reynolds numbers. The first cylinder is called upstream cylinder and the second one as downstream cylinder. The downstream fluid flow fields have been more influenced by its blockage ratios(A) and Reynolds numbers(Re) whereas the upstream flow patterns(in front of downstream cylinder) by the gap length(d) between two cylinders. Moreover, it is observed that after a certain gap, both upstream and downstream flow patterns are almost similar size and shape. The simulation result has been compared with analytical solution and it is found to be in excellent agreement.

다중완화시간 가상경계볼쯔만법을 이용한 실린더 주위의 난류유동해석 (NUMERICAL STUDY ON TURBULENT FLOW OVER CYLINDER USING IMMERSED BOUNDARY LATTICE BOLTZMANN METHOD WITH MULTI RELAXATION TIME)

  • 김형민
    • 한국전산유체공학회지
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    • 제15권2호
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    • pp.21-27
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    • 2010
  • Immersed boundary lattice Boltzmann method (IBLBM) has been applied to simulate a turbulent flow over circular cylinder in a flow field effectively. Although IBLBM is very effective method to simulate the flow over a complex shape of obstacle in the flow field regardless of the constructed grids in the calculation domain, the results, however, become numerically unstable in high reynolds number flow. The most effective suggestion to archive the numerical stability in high Reynolds number flow is applying the multiple relaxation time (MRT) model instead of single relaxation time(SRT) model in the collision term of lattice Boltzmann equation. In the research MRT model for IBLBM was introduced and comparing the numerical results obtained by applying SRT and MRT. The hydraulic characteristic of cylinder in a flow field between two parallel plate at the range of $Re{\leqq}2000$represented and it is also compared the drag and lifting coefficients of the cylinder calculated by IBLBM with SRT and MRT model.

가상경계 격자볼쯔만법을 이용한 벽면에 근접하여 이동하는 실린더주위의 유동해석 (Numerical Study on Flow over Moving Circular Cylinder Near the Wall Using Immersed Boundary Lattice Boltzmann Method)

  • 김형민
    • 대한기계학회논문집B
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    • 제32권12호
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    • pp.924-930
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    • 2008
  • Immersed boundary method (IBM) is the most effective method to overcome the disadvantage of LBM (Lattice Boltzmann Method) related to the limitation of the grid shape. IBM also make LBM possible to simulate flow over complex shape of obstacle without any treatment on the curved boundary. In the research, IBLBM was used to perform LBM simulation of a flow over a moving circular cylinder to determine the flow feature and aerodynamics characteristic of the cylinder. To ascertain the applicability of IBLBM on the moving obstacle near the wall, it was first simulated for the case of the flow over a fixed circular cylinder in a channel and the results were compared against the solution of moving cylinder in the channel using IBLBM. The simulations were performed in a moderate range of Reynolds number at each moving cylinder to identify the flow feature and aerodynamic characteristics of circular cylinder in a channel. The drag and lift coefficients of the cylinder were calculated from the simulation results. We have numerically confirmed that the critical Reynolds number for vortex shedding is Re=50 and the result is the same as the case of fixed cylinder. As the cylinder approaching to a wall (${\gamma}<2.5$), the 2nd vortex is developed by interacting with the wall boundary-layer vorticity. When the cylinder is very closed to the wall, ${\gamma}<0.6$, the cylinder acts like blockage to block the flow between the cylinder and wall so that the vortex developed on the upper cylinder elongated and time averaged lifting and drag coefficients abruptly increase.

복합재 격자구조물의 점검창 형상에 따른 구조안전성 해석 (Structure Safety Analysis of Composite Lattice Structure with Inspection Window)

  • 김동건;배주찬;손조화;이상우
    • 한국추진공학회지
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    • 제22권6호
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    • pp.94-103
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    • 2018
  • 발사체 및 유도무기 기체에 사용되는 복합재 격자구조물은 구조물에 작용하는 하중을 고려하여 최소한의 두께와 무게로 설계되는 구조물이다. 이를 위하여 실리콘 몰드에 탄소섬유를 와인딩하는 공정으로 격자구조물을 만들며, 이때 발사체 및 유도무기 기체 내부의 장비 등을 점검하기 위하여 점검창을 설치하는 것이 일반적으로 요구된다. 본 논문에서는 필라멘트 와인딩 공정으로 제작된 실린더형 격자구조물에 대하여 압축시험을 수행하고, 이 구조물에 대한 유한요소해석을 수행하여 얻은 해석 결과를 설치된 격자구조물에 대하여 유한요소해석을 수행하였다. 또한 구조물의 리브(Rib)와 노트(Knot)의 파손강도를 통해 육각형 점검창의 두께 및 위치를 변수로 선정하여 수행한 유한요소해석 결과는 다음과 같다; (1) 육각형 점검창의 안전계수가 사각형 점검창 보다 높게 계산되었으며, (2) 수직 점검창이 상단 헬리컬 리브의 중간에 위치할 때 안전계수가 높게 계산되었고, (3) 구조안전성 확보를 위하여 점검창의 두께를 증가시킬 경우 구조물의 불연속 부분에 응력집중이 발생하므로 유한요소 해석을 통해 안전계수가 가장 높은 점검창 형상을 선정해야 한다.

길이방향으로 연속된 래티스를 가지는 철선 트러스데크의 구조 거동 (Structural Behavior of Steel Wire Truss Deck with Continuous Lattices to the Longitudinal Direction)

  • 이성호;박형철;오보환;조순보
    • 한국강구조학회 논문집
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    • 제21권1호
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    • pp.37-44
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    • 2009
  • 철선 트러스데크는 기존의 재래식 슬래브 거푸집이나 일반 데크플레이트 공법을 대체하여 철골조는 물론 철근콘크리트 구조물에도 사용이 점차 증가하고 있다. 현재 사용되고 있는 기존의 트러스 데크는 래티스 철선과 하부 철선의 비연속적인 절점간격에 의한 트러스의 비렌딜거동에 의해 완전한 트러스형상에 비해 처짐이 커지는 문제점이 있다. 본 연구는 이러한 문제점을 해결하기 위해 래티스 철선과 상하부 철선이 연속적으로 연결되어 비렌딜거동이 없는 순수 트러스형태를 구현함으로써 처짐성능이 우수한 새로운 형태의 데크를 고안하였다. 개발된 시스템의 구조적 거동을 평가하고자, 해석 및 성능평가 실험을 수행하였다. 처짐에 영향을 주는 요소를 중심으로 래티스 철선의 길이방향 연결형태, 간격을 해석과 실험의 주요 변수로 설정하였다. 해석과 실험은 실제 시공 시 타설되는 콘크리트 하중이 아연도 철판을 통해 철선에 작용하는 것을 고려하여 아연도 철판에 직접 등분포 하중을 가력하였다. 구조해석 및 실험을 통한 분석결과 철선 트러스데크의 길이방향 형태, 즉 래티스 철선의 길이방향 연결 형태가 구조적 거동에 영향을 주는 주요한 인자로서 작용했으며, 래티스 철선을 길이방향으로 연속적으로 연결함으로써 비렌딜거동에 의한 영향을 감소시킬 수 있었다. 또한 래티스 철선의 연결간격을 증가 시킬 경우에도, 상, 하부 철선에 큰 응력증가 없이 우수한 처짐 성능을 발현 할 수 있었다.

유기플라스틱 결정체의 PMR 연구 (제 1 보). 피발산 (PMR in Organic Plastic Crystals (I). Pivalic Acid)

  • 최종권;잔 그레함
    • 대한화학회지
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    • 제19권3호
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    • pp.149-155
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    • 1975
  • 플라스틱 결정체인 피발산의 temperature-dependent wide-line NMR line width, second monent 및 spin-lattice relaxation times 의 결과는 이 결정체의 특이한 운동학적 성질 및 수소결합에 기인된 것으로 해석된다. 이 분자의 운동학적 성질은 $C_3-C_3'$ reorientation 및 self-diffusion 으로 구성 되었음을 확인했다. Wide-line NMR 연구결과는 또한 Pople-Karasz 융해설과 비교검토되었고, 이 이론과의 차이점은 피발산의 수소결합에 기인되었음을 알아냈다.

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다중완화시간 격자 볼츠만기법을 이용한 다양한 종횡비의 리드드리븐 공동유동 수치해석연구 (SIMULATION OF LID DRIVEN CAVITY FLOW WITH DIFFERENT ASPECT RATIOS BY MULTI-RELAXATION-TIME LATTICE BOLTZMANN METHOD)

  • 황팅팅;송주헌;임희창
    • 한국가시화정보학회지
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    • 제18권3호
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    • pp.42-51
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    • 2020
  • This study performs a numerical simulation of lid driven rectangular cavity flow with different aspect ratios of k = 0.5 to 4 under Reynolds 100, 1,000, 10,000 by using multi-relaxation time (MRT) Lattice Boltzmann Method (LBM). In order to achieve better convergence, well-posed boundary conditions in the domain should be defined such as no-slip condition on side and bottom solid wall surfaces and uniform horizontal velocity on the top of the cavity. This study focuses on the flow inside different shape of rectangular cavity with the aim to observe the effect of the Reynolds number and aspect ratio on the flow characteristics and primary/secondary vortex formation. In order to validate the study, the results have been compared with existing works. The result shows that the Reynolds number and the aspect ratio both has substantial effects on the flow inside the lid-driven rectangular cavity.

LFFD 및 SFFD를 이용한 3차원 라스트 데이터 생성시스템 개발 (Three Dimensional Last Data Generation System Design Utilizing SFFD and LFFD)

  • 김시경;박인덕
    • 제어로봇시스템학회논문지
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    • 제12권2호
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    • pp.113-118
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    • 2006
  • A new last design approach based on the Limb line FFD (LFFD) and Scale factor FFD (SFFD) is presented in this paper. The proposed last design method utilizes the dynamic trimmed parametric patches for the measured foot 3D data and last 3D data. Furthermore, the proposed last data generation system utilizes cross sectional data extracted obtained from the measured 3D foot data. First, the last design rule of the LFFD is constructed on the FFD lattice based on foot last shape analysis. Secondly, SFFD is constructed on the LFFD new lattice based on scale factor deformation. The scale factor is constructed on the boundary edges of polygonized patch and the cross section last data boundary edge of the polygon object. Suppose the two boundary curves have been preprocessed so that they run in the same direction and they forms the SF(Scale Factor). In addition, the control points of FFD lattice are derived with cross. sectional data interpolation methods from a finite set of 3D foot data.