• 제목/요약/키워드: three dimensional volume

검색결과 1,003건 처리시간 0.028초

다면체의 회전 스웹터 볼륨 계산 방법 (Computing Rotational Swept Volumes of Polyhedral Objects)

  • 백낙훈;신성용
    • 한국CDE학회논문집
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    • 제4권2호
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    • pp.162-171
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    • 1999
  • Plane sweep plays an important role in computational geometry. This paper shows that an extension of topological plane sweep to three-dimensional space can calculate the volume swept by rotating a solid polyhedral object about a fixed axis. Analyzing the characteristics of rotational swept volumes, we present an incremental algorithm based on the three-dimensional topological sweep technique. Our solution shows the time bound of O(n²·2?+T?), where n is the number of vertices in the original object and T? is time for handling face cycles. Here, α(n) is the inverse of Ackermann's function.

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도시내 주거지 유형별 녹지구조분석에 관한 연구 (A study on analysis of the structure of green space by the types of urban residential areas)

  • 송태갑;김은일
    • 한국조경학회지
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    • 제25권3호
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    • pp.56-65
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    • 1997
  • This research was conducted to suggest some directions for desirable urban green space planning through 1) establishing a new classification system by examining the existing concept, problems and characteristics of green space and 2) defining the essence of green space environment and finding some analytical and evaluative methods through a clear establishment of functions, indicators of green space. In the research, measurements of the amount of green space was accompanied with measurements of green covered space, green volume, and the structure of greenery within the frame of vision. As result, three-dimensional measurement was possible, three-dimensional measurement was possible, which turned out to be more effective than the existing 2-dimensional measuring method. It is found that the ratio of green covered space is to proportional to the ratio of green volume in this study. Therefore in green space planning process it is desirable to consider the ratio of green volume all together.

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Airway Reactivity to Bronchoconstrictor and Bronchodilator: Assessment Using Thin-Section and Volumetric Three-Dimensional CT

  • Boo-Kyung Han;Jung-Gi Im;Hak Soo Kim;Jin Mo Koo;Hong Dae Kim;Kyung Mo Yeon
    • Korean Journal of Radiology
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    • 제1권3호
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    • pp.127-134
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    • 2000
  • Objective: To determine the extent to which thin-section and volumetric three-dimensional CT can depict airway reactivity to bronchostimulator, and to assess the effect of different airway sizes on the degree of reactivity. Materials and Methods: In eight dogs, thin-section CT scans were obtained before and after the administration of methacholine and ventolin. Cross-sectional areas of bronchi at multiple levels, as shown by axial CT, proximal airway volume as revealed by three-dimensional imaging, and peak airway pressure were measured. The significance of airway change induced by methacholine and ventolin, expressed by percentage changes in cross-sectional area, proximal airway volume, and peak airway pressure was statistically evaluated, as was correlation between the degree of airway reactivity and the area of airways. Results: Cross-sectional areas of the bronchi decreased significantly after the administration of methacholine, and scans obtained after a delay of 5 minutes showed that normalization was insufficient. Ventolin induced a significant increase in cross-sectional areas and an increase in proximal airway volume, while the effect of methacholine on the latter was the opposite. Peak airway pressure increased after the administration of methacholine, and after a 5-minute delay its level was near that of the control state. Ventolin, however, induced no significant decrease. The degree of airway reactivity did not correlate with airway size. Conclusion: Thin-section and volumetric spiral CT with three-dimensional reconstruction can demonstrate airway reactivity to bronchostimulator. The degree of reactivity did not correlate with airway size.

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방사선치료계획의 임상적용을 위한 3차원 볼륨렌더링영상 체적변화의 모형연구 (A Phantom study of Displacement of Three Dimensional Volume Rendering for Clinical Application in Radiation Treatment Planning)

  • 구은회;이재승;임청환
    • 한국콘텐츠학회논문지
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    • 제9권11호
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    • pp.280-288
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    • 2009
  • 본 연구는 3차원 볼륨렌더링 영상의 체적변화를 위한 정밀한 모형을 고안, 제작하고 방사선치료계획 시스템의 재구성 과정에서 모형의 길이, 면적, 부피에 대한 변화를 평가하고자 하였다. 모형을 이용한 표준화된 전산화치료조준계획을 절편두께 1.25, 2.5, 5, 10mm로 시행한 후 3차원 재구성 영상을 절편두께와 모형의 형태에 따라 스캔방향(X), 두께(Y), 테이블 이동거리(Z), 면적(A), 부피(V)에 대한 변화와 분석자간 측정편차 및 최소값과 최대값을 측정하였다. 모형의 횡단면을 재구성한 3차원 볼륨렌더링 영상에서 절편두께가 1.25mm와 2.5mm에서 모형의 형태에 따라 X, Y, Z축 방향으로 최대 0.13cm(p<0.05)의 감소를 보였고 길이, 면적, 부피에 대하여 0.1cm, $0.8cm^2$, $3.99cm^3$(p<0.05) 정도의 감소를 보여 모형과 매우 근접한 영상을 획득하였다. 그러나 절편두께 5mm, 10mm에서 절편두께와 스캔 단면적이 증가하고 원형의 모형일수록 X, Y, Z축 방향으로 최대 0.58cm(p<0.05)의 감소를 보였고 길이, 면적, 부피에 대하여 최대 0.45cm, $8.21cm^2$, $11.03cm^3$(p<0.05)의 감소를 보였다. 모형을 이용한 방사선치료계획의 3차원 볼륨렌더링 영상의 절편두께와 모형의 형태에 따라 체적의 변화가 다양하게 발생하였으며 전산화치료조준계획을 시행할 경우 절편두께가 3mm 이하일 때 임상적으로 적절한 3차원 볼륨렌더링 영상을 얻을 수 있을 것으로 사료된다.

Numerical study of turbulent wake flow behind a three-dimensional steep hill

  • Ishihara, Takeshi;Hibi, Kazuki
    • Wind and Structures
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    • 제5권2_3_4호
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    • pp.317-328
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    • 2002
  • A numerical investigation on the turbulent flows over a three-dimensional steep hill is presented. The numerical model developed for the present work is based on the finite volume method and the SIMPLE algorithm with a non-staggered grid system. Standard $k-{\varepsilon}$ model and Shih's non-linear model are tested for the validation of the prediction accuracy in the 3D separated flow. Comparisons of the mean velocity and turbulence profiles between the numerical predictions and the measurements show good agreement. The Shih's non-linear model is found to predict mean flow and turbulence better than the Standard $k-{\varepsilon}$. Flow patterns have also been examined to explain the difference in the cavity zone between 2D and 3D hills.

A Volume Reconstruction Algorithm and a Coordinate Calibration of an X-ray Three Dimensional Imaging System

  • Roh, Young-Jun;Cho, Hyung-Suck;Jeon, Hyoung-Jo;Kim, Hyeong-Cheol
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2001년도 ICCAS
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    • pp.63.3-63
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    • 2001
  • Inspection and shape measurement of three-dimensional objects are widely needed in industries for quality monitoring and control. In this paper, we propose a three dimensional volume reconstruction method, which is an iterative method and as uniform and simulated algebraic reconstruction technique (USART). In this method, two or more x-ray images projected from different views are needed, and also the geometry of the imaging system need to be a priori identified well. That is to say, the relative locations between the x-ray source, imaging plane and the object should be determined exactly by calibration. To achieve this, we propose a series of coordinate calibration methods of the x-ray imaging system using grid pattern images. Some experimental results of these calibrations is presented and discussed in detail ...

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축류송풍기의 삼차원 유동장 해석 (Three-dimensional analysis of the flow through an axial-flow fan)

  • 김광용;김정엽;정덕수
    • 대한기계학회논문집B
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    • 제21권4호
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    • pp.541-550
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    • 1997
  • Computational and experimental investigations on the three-dimensional flowfield through an automotive cooling fan are carried out in this work. Steady, incompressible, three-dimensional, turbulent flow through a rotating axial-flow fan is analyzed with Reynolds averaged Navier-Stokes equations and standard k-.epsilon. turbulence model. The governing equations are discretized with finite-volume approximations in non-orthogonal curvilinear coordinates. Computational static pressures on the casing wall agree well with the experimental data which are measured in this work. And, they are sensitive to the change of tip clearance. The flowfield is not significantly affected by the thickness of the blade. The k-.omega. model gives the static pressure rise on the casing wall which is similar to that with the k-.epsilon. model.

Development of a Measurement Method for Three Dimensional Treeing Degradation using a Computerized Tomography Method

  • Masateru-Yanagiwara;Noboru-Yoshimura
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1990년도 추계학술대회 논문집
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    • pp.23-25
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    • 1990
  • In this paper, a system to measure tree degradation of three dimensional phenomena in organic insulating materials using image processing system is discussed. Using a computerized tomography method, volume of tree immediately after tree initiation, as well as changes in the configuration of the tree were measured, which up to now have been difficult to measure. The specimens used an acrylic acid resin. As a result, it was possible to record the cross sections of the tree, and to describe the volume of the tree by the three dimensional measurement.

체적제어에 의한 적층 복합재 구멍의 형상 최적화 (Shape Optimization of Cutouts in a Laminated Composite Plate Using Volume Control)

  • 한석영;마영준
    • 대한기계학회논문집A
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    • 제28권9호
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    • pp.1337-1343
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    • 2004
  • Shape optimization was performed to obtain a precise shape of cutouts including the internal shape of cutouts in a laminated composite plate by three dimensional modeling using solid element. Volume control of the growth-strain method was implemented and the distributed parameter chosen as Tsai-Hill fracture index for shape optimization. It makes Tsai-Hill failure index at each element uniform in laminated composites under the predetermined volume a designer requires. Shapes optimized by Tsai-Hill failure index were compared with those of the initial shapes for the various load conditions and cutouts. The following conclusions were obtained in this study; (1) It was found that growth-strain method was applied efficiently to shape optimization of three dimensional cutouts in a laminate composite, (2) The optimal shapes of the various load conditions and cutouts were obtained, (3) The maximum Tsai-Hill failure indices of the optimal shapes were remarkably reduced comparing with those of the initial shapes.

A Form-finding Technique for Three-dimensional Spatial Structures

  • Lee, Sang Jin
    • Architectural research
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    • 제15권4호
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    • pp.207-214
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    • 2013
  • A form-finding technique is proposed for three-dimensional spatial structures. Two-step discrete finite element (FE) mesh generator based on computer aided geometric design (CAGD) is introduced and used to control the shape of three-dimensional spatial structures. Mathematical programming technique is adopted to search new forms (or shapes) of spatial structures. For this purpose, the strain energy is introduced as the objective function to be minimized and the initial volume (or the initial weight) is considered as constraint function. Numerical examples are carried out to test the capability of the proposed form-finding techniques and provided as benchmark tests.