• Title/Summary/Keyword: Fluid Surface

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비정렬 격자상에서 Moment-of-Fluid 방법을 이용한 자유표면유동계산 (MOMENT-OF-FLUID METHOD FOR FREE SURFACE FLOW SIMULATION USING UNSTRUCTURED MESHES)

  • 안형택
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2011년 춘계학술대회논문집
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    • pp.65-67
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    • 2011
  • The moment-of-fluid (MOF) method is a new volume-tracking method that accurately treats evolving material interfaces. The MOF method uses moment data, namely the material volume fraction, as well as the centroid, for a more accurate representation of the material configuration, interfaces and concomitant volume advection. In this paper, unstructured mesh extension of the MOF method is to be presented. The MOF method is coupled with a stabilized finite element incompressible Navier-Stokes solver for two materials. The effectiveness of the MOF method is demonstrated with a free-surface dam-break problem.

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Parametric studies on smoothed particle hydrodynamic simulations for accurate estimation of open surface flow force

  • Lee, Sangmin;Hong, Jung-Wuk
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제12권1호
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    • pp.85-101
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    • 2020
  • The optimal parameters for the fluid-structure interaction analysis using the Smoothed Particle Hydrodynamics (SPH) for fluids and finite elements for structures, respectively, are explored, and the effectiveness of the simulations with those parameters is validated by solving several open surface fluid problems. For the optimization of the Equation of State (EOS) and the simulation parameters such as the time step, initial particle spacing, and smoothing length factor, a dam-break problem and deflection of an elastic plate is selected, and the least squares analysis is performed on the simulation results. With the optimal values of the pivotal parameters, the accuracy of the simulation is validated by calculating the exerted force on a moving solid column in the open surface fluid. Overall, the SPH-FEM coupled simulation is very effective to calculate the fluid-structure interaction. However, the relevant parameters should be carefully selected to obtain accurate results.

가상수조에서 자유표면을 가진 유체흐름의 가시화시뮤레이션 (The visual Simulation of Fluid Flow with Free Surface in a Virtual Water Tank)

  • 김남형;김남국
    • 한국해양공학회지
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    • 제14권3호
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    • pp.35-40
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    • 2000
  • SMAC method is, one of the numerical simulation techniques, modified from the original MAC for the time-dependent variation of fluid flows. The Navier-Stokes equation for incompressible time-dependent viscous flow is applied and, also marker particles which move with the fluid are used. Two-dimensional numerical computations of fluid flow are carried out in a virtual water tank. This paper has shown very well the movements of marker particles using SMAC method.

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사각형 구조물에 저장된 유체의 동적거동에 미치는 시간-가속도 형상의 영향 (Influence of Earthquake Shape on the Dynamic Behavior of Fluid in a Rectangular Structure)

  • 박건;홍기남
    • 한국구조물진단유지관리공학회 논문집
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    • 제21권6호
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    • pp.59-66
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    • 2017
  • 유체 저장 구조물의 경우 지진 시 유체의 출렁임에 의하여 구조물에 동수압이 작용한다. 이 때, 유체의 동수압은 지진의 강도뿐만 아니라 유체 자유수면의 출렁임 높이(sloshing height)에 의해서도 변화한다. 이러한 하중의 변화에 영향을 미치는 인자로는 지진파의 형상, 최대지진강도, 유체 저장 구조물의 크기, 구조물의 폭, 유체의 높이 등이 있는데, 본 논문에서는 지진파의 형상과 유체 자유수면의 출렁임 형상의 상관관계를 규명하고자 하였다. 이를 위하여 구조물의 폭이 500 mm인 수조에 실지진파를 적용시켜 유체 자유수면의 출렁임 높이를 측정하고, 수치해석을 통하여 실험과 해석의 유사성을 검증하였다. 또한, 실험과 해석의 비교를 통하여 검증된 구조해석 기법을 적용하여 인공지진파의 형상을 다양하게 변화시키면서 유체 자유수면의 출렁임 형상의 변화를 측정하고, 인공지진파의 형상이 유체 자유수면의 출렁임 형상에 미치는 영향을 분석하였다.

적응형 프레임워크 기반의 하이브리드 부호거리장과 표면복원을 이용한 액체와 고체 혼합 표면의 세밀한 표현 (Detailed Representation of Liquid-Solid Mixed Surfaces with Adaptive Framework Based Hybrid SDF and Surface Reconstruction)

  • 김종현
    • 한국컴퓨터그래픽스학회논문지
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    • 제23권4호
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    • pp.11-19
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    • 2017
  • 우리는 액체와 고체가 혼합된 표면을 세밀하게 복원하기 위해 하이브리드 부호거리장과 적응형 유체표면기술을 통합한 유체표면복원의 새로운 파이프라인을 제안한다. 이전 입자기반 유체 시뮬레이션은 입자가 불규칙하게 분포 될 때 유체표면에 노이즈 문제가 발생한다. 이 문제를 줄이기 위해 스무딩(Smoothing)기법을 적용하면 반복적인 스무딩과정으로 인해 선명하고 디테일한 유체의 표면적 특징을 소실하여 유체의 디테일이 사라지는 문제가 발생한다. 우리의 방법은 유체를 구성하는 입자기반의 부호거리값과 고체를 구성하는 삼각형기반의 부호거리값을 결합하여 하이브리드 부호거리장을 구성한다. 그리고 적응적으로 유체의 표면을 복원하는 방법을 제안하여 전체적인 효율성을 한 층 개선시킨다. 이렇게 하면 고체와 액체 부분의 세밀한 표면적 특징을 표현할 수 있을 뿐만 아니라 두 재질이 혼합되었을 때도 디테일한 표면의 특징과 부드러운 유체표면을 모두 나타낼 수 있다. 또한, 가이딩 형상이란 개념을 소개하여 부호거리값을 빠르게 얻어 올 수 있는 방법을 제안한다. 결과적으로, 하이브리드 부호거리장과 메쉬 재복원 기술을 적응형 프레임워크에서 통합함으로써 유체표면을 복원하는 파이프라인의 전반적인 효율성을 개선시켰다.

Development of Free-surface Decomposition Method and Its ApplicationDevelopment of Free-surface Decomposition Method and Its Application

  • Park, Sunho
    • Journal of Advanced Research in Ocean Engineering
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    • 제3권2호
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    • pp.75-82
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    • 2017
  • With the development of computational fluid dynamics (CFD), studies on shipbuilding and maritime issues including free-surface wave flow have been conducted. Although the volume of fluid (VOF) and level-set methods are widely used to study the free-surface wave flow, disadvantages exist. In particular, it takes a long time to obtain solutions. In this study, a free-surface capturing code is developed for ship and offshore structures. The developed code focuses on accuracy and computation time. Open source CFD libraries, termed OpenFOAM, are used to develop the code. The results obtained using the developed code are compared with those obtained using interFoam. The results show that the developed code could be used to capture the free-surface wave flow without numerical diffusion; moreover, the accuracy of the developed code is largely the same as that of interFoam.

STAVAX 강의 마이크로 밀링 중 가공 방향 및 절삭유체 분사형태에 따른 표면 거칠기 경향에 관한 연구 (A study on surface roughness depending on cutting direction and cutting fluid type during micro-milling on STAVAX steel)

  • 이동원;이현화;김진수;김종수
    • Design & Manufacturing
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    • 제17권2호
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    • pp.22-26
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    • 2023
  • As Light-Emitting Diodes(LEDs) continue to advance in performance, their application in automotive lamps is increasing. Automotive LEDs utilize light guides not only for aesthetics but also to control light quantity and direction. Light guides employ patterns of a few hundred micrometers(㎛) to regulate the light, and the surface roughness(Ra) of these patterns can reach tens of nanometers(nm). Given that these light guides are produced through injection molding, mold processing technology with high surface quality micro-patterns is required. This study serves as a preliminary investigation into the development of high surface quality micro-pattern processing technology. It examines the surface roughness of the workpiece based on the cutting direction of the pattern and the cutting fluid type when cutting micro-patterns on STAVAX steel using cubic Boron Nitride(cBN) tools. The experiments involved machining a step-shaped micro-pattern with a height of 60 ㎛ and a pitch of 400 ㎛ in a 22×22 mm area under identical cutting conditions, with only the cutting direction and cutting fluid type being varied. The machining results of four cases were compared, encompassing two cases of cutting direction(parallel to the pattern, orthogonal to the pattern) and two cases of cutting fluid type (flood, mist). Consequently, the Ra value was found to be the highest(Ra 128.33 nm) when machining with the flood type in parallel to the pattern, while it was the lowest(Ra 95.22 nm) when machining with the mist type orthogonal to the pattern. These findings confirm that there is a difference of up to 25.8 % in the Ra value depending on the cutting direction and cutting fluid type.

Effect of Fluid Mesh Modeling on Surface Ship Shock Response under Underwater Explosion

  • Lee, Sang-Gab;Kwon, Jeong-Il;Chung, Jung-Hoon
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2001년도 봄 학술발표회 논문집
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    • pp.351-358
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    • 2001
  • In this study, for the investigation of effects of several parameters, such as fluid mesh boundary size, cylinder or block shape, dimensions of depth, breadth and length at free suface, and fluid mesh element size to the depth direction on a reliable shock response of finite element model under underwater explosion with consideration of the bulk cavitation analysis of a simplified surface ship was carried out using the LS-DYNA3D/USA code. The shock responses were not much affected by the fluid mesh parameters. The computational time was greatly dependent on the number of DAA boundary segments. It is desirable to reduce the DAA boundary segments in the fluid mesh model, and it is not necessary to cover the fluid mesh boundary to or beyond the bulk cavitation zone just for the concerns about an initial shock wave response. It is also the better way to prefer cylinder type of the fluid mesh model to the block one.

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평관형 및 나선 그루브형 열사이폰 내부 작동유체의 포화온도와 단열부의 표면온도에 관한 연구 (A Comparison between the Internal Saturation Temperature of Working Fluid and the Surface Temperature of Adiabatic Zone of Two-Phase Closed Thermosyphons with Various Helical Grooves)

  • 한규일;조동현;박종운;이상진
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 춘계학술대회
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    • pp.1243-1249
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    • 2004
  • This study is focused on the comparison between the internal saturation temperature of the working fluid and the surface temperature of adiabatic zone of two-phase closed thermosyphons with various helical grooves. Distilled water, methanol and ethanol have been used as the working fluid. In the present work, a copper tube of the length of 1200mm and 14.28mm of inside diameter is used as the container of the thermosyphon. Each of the evaporator and the condenser section has a length of 550mm, while the remaining part of the thermosyphon tube is adiabatic section. A experimental study was carried out for analyzing the performances of having 50, 60, 70, 80, 90 helical grooves. A plain thermosyphon having the same inner and outer diameter as the grooved thermosyphons is also tested for the comparison. The results show that the numbers of grooves and the type of working fluids are very important factors for the operation of thermosyphons. A good agreement between the internal saturation temperature of working fluid and the surface temperature of adiabatic zone of two-phase closed thermosyphons with various helical grooves is obtained.

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부유식 해양구조물에 작용하는 시감평균 파표류력에 관한 고찰 (On the Time-Mean Drift Force Acting on a Floating Offshore Structure in Wave)

  • 홍도천
    • 한국해양공학회지
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    • 제16권3호
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    • pp.8-18
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    • 2002
  • Formulation of the far-field method for the prediction of time-mean hydrodynamic force and moment acting on a 3-D surface-piercing body in waves is reviewed. It is found that the inequality between the weight of the floating body and its buoyancy force permits the replacement of the fluid particles inside the control surface by the fluid particles outside the control surface. Under such circumstances, momentum exchanges across the control surface make the time-mean value of the time rate of the momentum of the fluid inside the control surface non-vanishing. It is a second-order quantity which is hard to calculate by the far-field method. The drift forces and moments on half-immersed ellipsoids are calculated by both the far-field method and the near-field method. The discrepancy between two numerical results is presented and discussed.