• 제목/요약/키워드: surface visualization

검색결과 578건 처리시간 0.02초

Mass Conservative Fluid Flow Visualization for CFD Velocity Fields

  • Li, Zhenquan;Mallinson, Gordon D.
    • Journal of Mechanical Science and Technology
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    • 제15권12호
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    • pp.1794-1800
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    • 2001
  • Mass conservation is a key issue for accurate streamline and stream surface visualization of flow fields. This paper complements an existing method (Feng et al. 1997) for CFD velocity fields defined at discrete locations in space that uses dual stream functions to generate streamlines and stream surfaces. Conditions for using the method have been examined and its limitations defined. A complete set of dual stream functions for all possible cases of the linear fields on which the method relies are presented. The results in this paper are important for developing new methods for mass conservative streamline visualization from CFD and using the existing method.

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쑥뜸과 1064 nm 파장의 근적외선 레이저로 가열된 아가젤 조직 팬텀 심부의 온도분포 가시화 (Visualization of Temperature Distribution Deep Inside the Agar Gel Tissue Phantom Heated Using Moxibustion and 1064 nm Infrared Laser)

  • 조지용;김중경
    • 한국가시화정보학회지
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    • 제8권4호
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    • pp.54-59
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    • 2010
  • A laser moxibustion therapy device having effect similar to that of traditional moxibustion is being developed using 1064 nm infrared laser. The therapy device allows direct interaction of laser light with the tissue rendering temperature distribution both on the skin surface and deep under the skin. We made a device that could measure temperature of deep under the surface of agar gel tissue phantom using thermocouples. A thermal imaging camera was used to verify results from the temperature measurement device. We compared the characteristics of heat transfer inside the tissue phantom during moxibustion and laser irradiation. The temperature distribution measured by thermocouples was found to be similar to that of distribution given by thermal imaging camera.

사각용기에서 발생하는 고점성 유체의 슬로싱 유동 (Sloshing Flow of Highly-Viscous Fluid in a Rectangular Box)

  • 박준상
    • 한국가시화정보학회지
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    • 제17권3호
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    • pp.39-45
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    • 2019
  • A study on the sloshing flow of highly-viscous fluid in a rectangular box was made by both of theoretical approach and experimental visualization method. Assuming a smallness of external forcing to oscillate the container, it was investigated a linear sloshing flow of highly-viscous fluid utilizing asymptotic analysis by Taylor-series expansion as a small parameter Re (≪1) in which Re denotes Reynolds number. The theory predict that, during all cycles of sloshing, a linear shape of free surface will prevail in a bulk zone and it has confirmed in experiment. The relevance of perfect slip boundary condition, adopted in theoretical approach, to the bulk zone flow at the container wall was tested in experiment. It is found that quasi-steady coated thin film, which makes a lubricant layer between bulk flow and solid wall, is generated on the wall and the film makes a role to perfect slip boundary condition.

충격파와 경계층 간섭유동 제어에서 오일막을 이용한 유동가시화 (Flow Visualization Using Thin Oil-Film in the Flow Control of Shock Wave/Turbulent Boundary-Layer Interactions)

  • 이열
    • 한국가시화정보학회:학술대회논문집
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    • 한국가시화정보학회 2002년도 추계학술대회 논문집
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    • pp.117-120
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    • 2002
  • An experimental research has been carried out for flow control of the shock wave/turbulent boundary-layer interaction utilizing aeroelastic mesoflaps. Various shapes and thicknesses of the mesoflap are tested to achieve different deflections of the flap, and ail the results are compared to the solid-wall reference case without flow-control mechanism. Quantitative variation of skin friction has been measured downstream of the interactions using the laser interferometer skin friction meter, and qualitative skin friction distribution has been obtained by observing the interference fringe pattern on the oil-film surface. A strong spanwise variation in the fringe patterns with a narrow region of separation near the centerline is noticed to form behind the shock structure, which phenomenon is presumed partially related to three-dimensional flow structures associated with both the sidewalls and the bottom test surface. The effect of the shape of the cavity is also observed and it is noticed that the shape of the cavity is not negligible.

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사각용기의 고점성 슬로싱 유동에서 발생하는 측벽 코팅 유동 (On the Near Wall Coating Flow in a Sloshing Flow of Highly-Viscous Fluid in a Rectangular Box)

  • 박준상
    • 한국가시화정보학회지
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    • 제20권3호
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    • pp.27-35
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    • 2022
  • A problem on the sloshing flow of highly-viscous fluid in a rectangular box was revisited by both of theoretical approach and experimental visualization method. Based on the theoretical prediction that a linear shape of free surface is prevailing in bulk zone, it has been studied an analogy between a near wall coating flow in sloshing problem and dip coating flow in Landau-Levich problem. Phenomenological observation confirms that, in the case of highly-viscous fluid, I.e., Re ≪ 1, viscous dominant near-wall flow in sloshing problem is identical to dip coating flow generated by drag-out of the plate being in both motion of vertical translation and horizontal rotation.

유선 가시화를 이용한 FEM과 실험에 의한 진동판에 대한 개선된 진동 벡터 인텐시티장 (Improved Vibration Vector Intensity Field for FEM and Experimental Vibrating Plate Using Streamlines Visualization)

  • 누룰 파와지;정재은;오재응
    • 한국소음진동공학회논문집
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    • 제22권8호
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    • pp.777-783
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    • 2012
  • 진동 인텐시티는 진동시스템에서 진동원의 위치를 찾는데 사용되어 왔다. 벡터 표현법 사용에 의해 파워흐름의 원인과 진동에너지 전달경로가 밝혀질 수 있다. 그러나, 판과 같은 구조물의 넓은 면적으로 인해 벡터 가시화를 사용하여 명확한 전달경로를 알아낼 수 없었다. 실험적으로 큰 면적의 물체에서는 측정점의 수가 늘어나게 된다. 이것은 측정에 많은 시간이 요구된다. 이번 연구에서는 FEM과 실험에 의한 모든 면에서 파워흐름 전달경로를 분명하게 가리키기 위해 유선 표현법이 사용되었다. 진동 인텐시티 전달경로를 분명하게 향상시키기 위해 실험과 FEM으로부터의 유선 표현을 비교하였다. 또한 FEM과 실험의 개선된 전달경로 가시화를 기존의 벡터표현과 비교하였다. 이 유선 가시화는 큰 표면을 갖는 판과 같은 구조물에 대해 진동원과 상세한 에너지 전달경로를 확인하는데 유용하다. 그 뿐만 아니라, 이 가시화 방법은 실험과 FEM 해석에 대해 많은 측정점을 필요로 하지 않는다.

이중 삼각날개의 와류에 미치는 스트레이크 평면형상의 영향 (Effects of Strake Planform on the Vortex Flow of a Double-Delta Wing)

  • 손명환;정형석
    • 한국항공우주학회지
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    • 제34권8호
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    • pp.16-23
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    • 2006
  • 본 연구에서는 스트레이크의 형상 변화가 삼각날개의 와류 상호작용과 와류 붕괴 특성에 어떤 영향을 미치는지를 규명하기 위해 세 가지의 서로 다른 평면 형상의 스트레이크를 부착한 이중 삼각 날개 형상에 대하여 유동 가시화(flow visualization)와 날개면 정압 분포 측정의 풍동실험을 수행하였다. 압력 측정 결과 스트레이크의 후퇴각이 증가할수록 날개의 상류 시위 위치에서는 보다 강력하고 집중된 와류가 형성되지만 이 와류는 시위 뒤쪽으로 진행되면서 보다 빨리 와류 붕괴(vortex breakdown)현상을 거치며 약해지는 것을 관측하였다. 가시화 결과에서는 스트레이크의 후퇴각이 증가할수록 스트레이크 와류와 날개 와류간의 roll-up 및 통합 과정이 촉진되는 것이 상류 시위에서 집중된 와류를 발달시키는 원인인 것을 확인할 수 있었다.

A Study on 3D File Format for Web-based Scientific Visualization

  • Lee, Geon-hee;Nam, Jeong-hwan;Han, Hwa-seop;Kwon, Soon-chul
    • International Journal of Advanced Culture Technology
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    • 제7권1호
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    • pp.243-247
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    • 2019
  • The most commonly used 3D modeling file formats are OBJ (Wavefront file format specification) and STL (STereoLithography). Although they have a common point of view in 3D on the screen, detailed functions are different according to purpose of development. OBJ is the most commonly used 3D file format and STL is mainly used as 3D file format for 3D printing. However, in the field of Scientific Visualization, precise analysis is required. There is a difference in accuracy depending on the type of 3D file format. OBJ and STL are not suitable for delicate surface description because they form meshes in the form of triangular polygons. And if you increase the number of triangle polygons, it will be smoother, but the file size also increases exponentially and causes excessive CPU usage. In contrast, VTK provides a variety of polygon structures, including triangular polygons as well as rectangular polygons and cube polygons. Thus, delicate surface depiction is possible. Delicate surface rendering is possible and file size is not large. This paper describes the concept and structure of VTK. We also compared the load times and file sizes between VTK, STL, and OBJ in the Chrome browser. In addition, the difference in surface rendering ability between VTK, STL, and OBJ is intuitively viewed based on the screen in which each 3D file format is implemented under the same conditions. This study is expected to be helpful for efficient 3D file format for precise implementation of Web - based Scientific Visualization.

수중 운동체 주변에 형성되는 환기 초공동(ventilated supercavitation) 현상 가시화 (Visualization of ventilated supercavitation phenomena around a moving underwater body)

  • 정재호;조연우
    • 한국가시화정보학회지
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    • 제13권1호
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    • pp.26-29
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    • 2015
  • A laboratory experiment was carried out to observe and visualize ventilated supercavitation phenomena around a moving underwater body which is attached to a newly designed high-speed (Max. 20 m/s) carriage system in a wave tank. Compared to the existing many other experimental studies using cavitation tunnels, where the body is at rest and the fluid is in motion in a bounded or closed environment, the present experimental study deals with super-cavity formation in unbounded or free-surface bounded environments, where the body is in motion and the fluid is at rest. Main attention is paid to the effective visualization of the steady-state cavity formations around a moving body and, those cavity formations are reported pictorially according to the body speed, ventilated air-pressure, and with or without a cavitator.

4자유도 모션 플랫폼을 이용한 잠수함의 운동감 재현과 스테레오 다채널 가시화 (Submarine Behavior Simulation based on 4-DOF Motion Platform and Stereoscopic Multi-Channel Visualization)

  • 허정순;한순흥
    • 한국CDE학회논문집
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    • 제17권5호
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    • pp.333-341
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    • 2012
  • Modeling and simulation is important for military training. People can feel perspective when stereoscope images are created using multi-channel visualizations. A submarine oscillates when the submarine is just below the surface of the sea, so that the reconnaissance becomes difficult. Also, the operator should read the information of the target within 6 seconds using the periscope. The operator must have experience. To solve these problems, stereoscopic multi-channel visualization has been tested. The iCAVE system of KAIST provides a large-scale screen, 7 PCs, and 14 projectors to create the stereoscope images. To simulate the motion of a submarine just below the ocean surface, a 4-DOF motion platform is used. The motion data is transmitted to the visual system and the motion platform through the UDP protocol. Variety of weather conditions are created using the Vega Prime software. The stereoscopic multi-channel visualization and the motion platform system created a realistic simulation system.