• 제목/요약/키워드: 3D roughness measurements

검색결과 19건 처리시간 0.026초

대기 경계층 연직방향 확산의 지면 거칠기에 따른 변화에 관한 실험적 연구 (An Experimental Study on the Variation of Vertical Dispersion within Boundary Layer with Surface Roughness)

  • 박옥현;윤창옥
    • 한국대기환경학회지
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    • 제16권3호
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    • pp.237-246
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    • 2000
  • An experimental study has been carried out using a rotating water channel in order to investigate the effect of surface roughness on the vertical dispersion of plume within boundary layer. Dispersion measurements of tracers released from two sources with different height at neutral conditions over various rough terrain ranging from rural to urban have been performed. Various values of roughness length were simulated by combining of 4 stream velocities and 3 roughness element conditions. Dispersion measurements have also been made for rough terrain where high buildings are locally concentrated. Values of $\sigma$z increase with roughness and this tendency appears to apply both cases of with and without locally concentrated high buildings. The comparisons of the Bowne's nomogram on $\sigma$2 vs x relationship and the measurements of $\sigma$2 with roughness show good accordance in $\sigma$2 distribution at stability D class over rural, suburban and urban terrain. For constant roughness length the $\sigma$2 values of plumes from lower source height are smaller than those of plumes from higher source at short downwind distance, but this relationship becomes reverse as distance increases. Crossing appears to be made before about 2km. The value of constant I in McMullen's equation $\sigma$2=exp [I+J(In x) + K(In x)2] appears to increase with roughness length, however, the relationships between other constants and roughness have been confirmed. The values of $\sigma$2 for various downwind distances, estimated by using an equation which is employed in ISC (Industrial Source Complex) dispersion model for areas where high buildings are locally assembled, are in accordance with measurements from water channel experiments.

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가상현실(VR) 콘텐츠에서 3D 객체의 셰이더 적용에 따른 사이버 멀미 연구 (A Study on Cyber Sickness according to Shader Application of 3D Objects in Virtual Reality Content)

  • 이수열;박선희;배종환
    • 한국멀티미디어학회논문지
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    • 제24권11호
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    • pp.1560-1566
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    • 2021
  • Cyber Sickness, which occurs when using Virtual Reality contents, is the most serious problem in immersive Virtual Reality contents. The purpose of this study is to identify the effects and causes of graphic environmental factors on Cyber Sickness in Virtual Reality contents. To this end, cyber sickness experiments were conducted according to the light source and material settings, which are most commonly used in graphical environmental elements. Cyber Sickness measurements were based on the Simulator Sickness Question(SSQ) tool to derive an index that causes Cyber Sickness As a result of the analysis, the smaller the surface roughness, the higher the degree of Cyber Sickness, and the smaller the surface roughness, the smoother the surface of the 3D object, and many specular reflections from the light source occurred, which was confirmed to be the cause of great Cyber Sickness.

Biomedical Applications of Stereoscopy for Three-Dimensional Surface Reconstruction in Scanning Electron Microscopes

  • Kim, Ki Woo
    • Applied Microscopy
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    • 제46권2호
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    • pp.71-75
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    • 2016
  • The scanning electron microscope (SEM) offers two-dimensional (2D) micrographs of three-dimensional (3D) objects due to its inherent operating mechanisms. To overcome this limitation, other devices have been used for quantitative morphological analysis. Many efforts have been made on the applications of software-based approaches to 3D reconstruction and measurements by SEM. Based on the acquisition of two stereo images, a multi-view technique consists of two parts: (i) geometric calibration and (ii) image matching. Quantitative morphological parameters such as height and depth could be nondestructively measured by SEM combined with special software programs. It is also possible to obtain conventional surface parameters such as roughness and volume of biomedical specimens through 3D SEM surface reconstruction. There is growing evidence that conventional 2D SEM without special electron detectors can be transformed to 3D SEM for quantitative measurements in biomedical research.

초점보정 렌즈설계 및 3D 프린터 이용 가공 특성평가(II) (Optimum Design and Characterization of F-theta lens by a 3D Printer(II))

  • 윤성철;신현명;최해운
    • 한국기계가공학회지
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    • 제14권4호
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    • pp.49-54
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    • 2015
  • The fabrication of a focal length-correcting lens called the F-theta lens was performed by a 3D printer. The fabricated lenses were characterized by transmittance and reflectance measurements. The optical properties of the lens, such as scattering or transmittance efficiency, were analyzed with respect to the wavelength (red, green, and blue) and the surface roughness of the lens. There was almost no shape aberration on the focus location of 0 degrees, but elliptical focus shapes were found at 1 and 2 degrees of the laser incidence angle. The developed process is expected to be used for the quick fabrication of lenses with low costs and quick turn-out. By improving the surface roughness during postprocessing, the optical properties are expected to be comparable to commercial lens quality.

Effect of artificial aging on mechanical and physical properties of CAD-CAM PMMA resins for occlusal splints

  • Julia Correa Raffaini;Eduardo Jose Soares;Rebeca Franco de Lima Oliveira;Rocio Geng Vivanco;Ayodele Alves Amorim;Ana Lucia Caetano Pereira;Fernanda Carvalho Panzeri Pires-de-Souza
    • The Journal of Advanced Prosthodontics
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    • 제15권5호
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    • pp.227-237
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    • 2023
  • PURPOSE. This study aimed to assess and compare the color stability, flexural strength (FS), and surface roughness of occlusal splints fabricated from heat-cured acrylic resin, milled polymethyl methacrylate (PMMA)-based resin, and 3D-printed (PMMA) based-resin. MATERIALS AND METHODS. Samples of each type of resin were obtained, and baseline measurements of color and surface roughness were recorded. The specimens were divided into three groups (n = 10) and subjected to distinct aging protocols: thermomechanical cycling (TMC), simulated brushing (SB), and control (without aging). Final assessments of color and surface roughness and three-point bending test (ODM100; Odeme) were conducted, and data were statistically analyzed (2-way ANOVA, Tukey, P <.05). RESULTS. Across all resin types, the most significant increase in surface roughness (Ra) was observed after TMC (P < .05), with the 3D-printed resin exhibiting the lowest Ra (P < .05). After brushing, milled resin displayed the highest Ra (P < .05) and greater color alteration (∆E00) compared to 3D-printed resin. The most substantial ∆E00 was recorded after brushing for all resins, except for heat-cured resin subjected to TMC. Regardless of aging, milled resin exhibited the highest FS (P < .05), except when compared to 3D-printed resin subjected to TMC. Heat-cured resin exposed to TMC demonstrated the lowest FS, different (P < .05) from the control. Under control conditions, milled resin exhibited the highest FS, different (P < .05) from the brushed group. 3D-printed resin subjected to TMC displayed the highest FS (P < .05). CONCLUSION. Among the tested resins, 3D-printed resin demonstrated superior longevity, characterized by minimal surface roughness and color alterations. Aging had a negligible impact on its mechanical properties.

식생하천의 현장자료를 이용한 조도계수 관계식 유도 (Derivation of Roughness Coefficient Relationships Using Field Data in Vegetated Rivers)

  • 이종석;;김재훈;이태우
    • 한국수자원학회논문집
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    • 제45권2호
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    • pp.137-149
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    • 2012
  • 본 연구는 흐름 저항에 대한 분석을 위해 초본 281개, 관목 150개, 교목 308개의 현장실측 자료로 구성된 739개 식생하천을 대상으로 수행되었다. 실측자료의 Manning 조도계수 분포는 초본자료에서 0.015~0.250, 관목자료에서 0.016~0.250, 교목자료에서 0.018~0.310의 범위를 갖는다. 이들 조도계수의 중요한 분포경향은 Darcy-Weisbach (또는 Manning의 조도계수)와 유량, 마찰경사 및 상대 잠수비에 대한 관계식으로 제시하였다. 식생하천에서 Darcy-Weisbach와 Manning 조도계수에 관한 회귀 방정식은 $f_{veg}=0.436Q^{-0.363}$, $f_{veg}=3.305S_f^{0.508}$$n_{veg}=0.061Q^{-0.124}$, $n_{veg}=0.144S_f^{0.199}$$V=5.3(h/d_{50})^{1/8.3}{\sqrt{ghS_f}}$, $\sqrt{8/f}(=V/u_*)=5.75log(5h/d_{50})$로 유도되었다. 이들 반 경험적 관계식은 수공 실무에서 유용하게 사용될 것이다.

광조형물의 패턴두께에 따른 표면 거칠기 저감을 위한 공정연구 (A Study on the reduction of surface roughness by analyzing the thickness of photocurable sculpture)

  • 김영수;양형찬;김고범;당현우;도양회;최경현
    • 동력기계공학회지
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    • 제20권4호
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    • pp.75-82
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    • 2016
  • In this paper, we developed a 3D printing system using a photo-curing resin in order to reduce the surface roughness of a sculpture produced with the 3D printer. Using the pattern of the resulting variable thickness, that gave rise to a stepped shape, and the area error of the photo-curable sculpture, a study was carried out for the process to reduce the surface roughness. At a given value of stage velocity (40~70 mm/s) and output air pneumatic pressure (20~60 kPa), the minimum pattern thickness of the pattern was achieved $65{\mu}m$ and the maximum pattern thickness of up to $175{\mu}m$. To increases the pattern resolution to about $40{\mu}m$, the process conditions should be optimized. 3D surface Nano profiler was used to find the surface roughness of the sculpture that was measured to be minimum $4.7{\mu}m$ and maximum $8.7{\mu}m$. The maximum surface roughness was reduced about $1.2{\mu}m$ for the maximum thickness of the pattern. In addition, a FDM was used to fabricate the same sculpture and its surface roughness measurements were also taken for comparison with the one fabricated using photo-curing. Same process conditions were used for both fabrication setups in order to perform the comparison efficiently. The surface roughness of the photo-curable sculpture is $5.5{\mu}m$ lower than the sculpture fabricated using FDM. A certain circuit patterns was formed on the laminated surface of the photo-curable sculpture while there was no stable pattern on the laminated surface of the FDM based sculpture the other hand.

ALGORITHM FOR DETERMINING 3D CHANGES IN MICRO-GEOMETRY USING IMAGE PROCESSING TECHNIQUES

  • Sloetjes, J.W.;Tasan, Y.C.;De Rooij, M.B.;Schipper, D.J.
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2002년도 proceedings of the second asia international conference on tribology
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    • pp.251-252
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    • 2002
  • An algorithm has been developed to determine changes in surface topography on asperity level. The software stitches small but detailed images together to create one large image. If such an image is made before and after an experiment, their difference shows a direct 3D view of the changes in micro-geometry, rather than a change in surface parameters. The algorithm is described in detail and illustrated using artificial as well as real surfaces.

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An innovative CAD-based simulation of ball-end milling in microscale

  • Vakondios, Dimitrios G.;Kyratsis, Panagiotis
    • Advances in Computational Design
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    • 제5권1호
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    • pp.13-34
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    • 2020
  • As small size and complex metal machining components demand increases, cutting processes in microscale become necessary. Ball-end milling is a commonly used finishing process, which nowadays can be applied in the microscale size. Surface quality and dimensional accuracy are two basic parameters that affect small size components in their assembly and functionality. Thus, good quality can be achieved by optimizing the cutting conditions of the procedure. This study presents a 3D simulation model of ball-end milling in microscale developed in a commercial CAD software and its optical and computing results. These carried out results are resumed to surface topomorphy, surface roughness, chip geometry and cutting forces calculations that arising during the cutting process. A great number of simulations were performed in a milling machine centre, applying the discretized kinematics of the procedure and the final results were compared with measurements of Al7075-T651 experiments.

콘포컬 레이저 현미경을 이용한 불연속면의 거칠기 측정 연구 (A Study of Roughness Measurement of Rock Discontinuities Using a Confocal Laser Scanning Microscope)

  • Byung Gon Chae;Jae Yong Song;Gyo Cheol Jeong
    • 지질공학
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    • 제12권4호
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    • pp.405-419
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    • 2002
  • 새롭게 개발된 레이저 콘포컬 현미경을 이용해 암석 불연속면의 거칠기를 측정하였다. 레이저의 파장은 488 nm이며, 현미경은 두 개의 galvano-meter scanner mirror를 이용한 광 편광법에 의해 제어된다. 레이저 반사를 통한 자동 초점기능은 관찰대상을 빠르고 정확하게 측정할 수 있다. 이 현미경은 기존의 다른 콘포컬 현미경에 비해 광축방향의 해상도를 크게 개선하였고, 특수 제작한 현미경 스테이지를 이용해 최대 $10{\;}{\times}{\;}10{\;}cm$ 까지 크기의 시료를 측정할 수 있다. 측정간격은 x와 y 방향으로 $2.5{\;}\mu\textrm{m}$씩이며, z방향의 최대 측정해상도는 $10{\;}\mu\textrm{m}$로서, 다른 방범에 비해 훨씬 정확하다. 조립질과 세립질의 입도가 다른 화강암을 대상으로 인장시험(Brazilian test)를 통해 인공절리를 생성시켰고, 생성된 좌우의 절리면에 각각 3개씩의 측선을 설정하였다. 각 측선을 따라 측정한 높이는 1차원은 물론 거칠기의 세밀한 양상을 보여주는 2차원과 3차원의 디지털 이미지로 표현된다. 조립질 화강암의 1차원 단면은 세립질보다 불연속면의 기복이 더 심함을 잘 보여준다. 거칠기를 정량적으로 특성화하고 거칠기를 구성하는 성분 중 가장 큰 영향을 미치는 성분을 파악하기 위해 고속퓨리에 변환 (FFT)를 이용한 스펙트럼 분석을 실시하였다. 스펙트럼 분석결과 저주파 성분이 큰 시효의 경우 거칠기의 기복변화가 심하고 긴 파장을 나타내는 경향이 있음을 구명하였다.