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      유한체적법과 유한요소법 기반의 상용 소프트웨어를 이용한 원심형 펌프의 전산유체해석 = Computational Fluid Dynamic Simulations of a Centrifugal Pump Using Commercial Software based on Finite Volume Method and Finite Element Method

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      https://www.riss.kr/link?id=A106228505

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      Computational fluid dynamic (CFD) simulations of a centrifugal pump have been performed using commercial CFD tools which are each based on finite volume (FVM) and finite element method (FEM). In this work, ANSYS FLUENT and midas NFX CFD were used for FVM and FEM CFD solver, respectively. A multiple reference frame was considered to model rotating and stationary parts for pseudo-transient simulations and a sliding mesh was used for a full time-transient calculations. Two different mesh systems were generated, which of each was appropriate for FVM and FEM to have converged solutions. The general characteristics of fluid flow within the centrifugal pump were compared between FLUENT and NFX and the difference of pressure change between inlet and outlet surface calculated by the two CFD tools were also investigated. The differences of pressure increases for the various flow rates between FVM and FEM pseudo-transient simulation were within 2%, which reflected that the flow behavior such as pressure and velocity within the pump was predicted similarly each other. It was also found that the results obtained from FLUENT were more sensitive to including time consideration than those from NFX.
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      Computational fluid dynamic (CFD) simulations of a centrifugal pump have been performed using commercial CFD tools which are each based on finite volume (FVM) and finite element method (FEM). In this work, ANSYS FLUENT and midas NFX CFD were used for ...

      Computational fluid dynamic (CFD) simulations of a centrifugal pump have been performed using commercial CFD tools which are each based on finite volume (FVM) and finite element method (FEM). In this work, ANSYS FLUENT and midas NFX CFD were used for FVM and FEM CFD solver, respectively. A multiple reference frame was considered to model rotating and stationary parts for pseudo-transient simulations and a sliding mesh was used for a full time-transient calculations. Two different mesh systems were generated, which of each was appropriate for FVM and FEM to have converged solutions. The general characteristics of fluid flow within the centrifugal pump were compared between FLUENT and NFX and the difference of pressure change between inlet and outlet surface calculated by the two CFD tools were also investigated. The differences of pressure increases for the various flow rates between FVM and FEM pseudo-transient simulation were within 2%, which reflected that the flow behavior such as pressure and velocity within the pump was predicted similarly each other. It was also found that the results obtained from FLUENT were more sensitive to including time consideration than those from NFX.

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      참고문헌 (Reference)

      1 이준오, "표면조직 가공한 유압부품면에서의 윤활특성" 사단법인 유공압건설기계학회 9 (9): 26-31, 2012

      2 신하용, "삼차원 직교 격자 생성을 위한 단면 커브를 이용한 옥트리 생성과 셀 절단 알고리듬" 한국CDE학회 13 (13): 450-458, 2008

      3 "http://www.ansys.com"

      4 Runchal, A. K., "Transport Processes in Steady Two-dimensional Separated Flows" Imperial College of London 1969

      5 Wait, R., "The Finite Element Method in Partial Differential Equations" Wiley 52-64, 1977

      6 Zienkiewicz, O. C., "The Finite Element Method" McGraw-Hill 13-63, 1977

      7 Medvitz, R. B., "Performance Analysis of Cavitating Flow in Centrifugal Pumps Using Multiphase CFD" 124 (124): 377-383, 2002

      8 Bathe, K. J., "Numerical Methods in Finite Element Analysis" Prentice Hall 458-460, 1976

      9 Launder B.E., "Mathematical Models of Turbulence" Academic Press 100-152, 1972

      10 Thomasset, F., "Implementation of Finite Element Methods for Navier-Stokes Equations" Springer-Verlag Berlin Heidelberg 37-97, 1981

      1 이준오, "표면조직 가공한 유압부품면에서의 윤활특성" 사단법인 유공압건설기계학회 9 (9): 26-31, 2012

      2 신하용, "삼차원 직교 격자 생성을 위한 단면 커브를 이용한 옥트리 생성과 셀 절단 알고리듬" 한국CDE학회 13 (13): 450-458, 2008

      3 "http://www.ansys.com"

      4 Runchal, A. K., "Transport Processes in Steady Two-dimensional Separated Flows" Imperial College of London 1969

      5 Wait, R., "The Finite Element Method in Partial Differential Equations" Wiley 52-64, 1977

      6 Zienkiewicz, O. C., "The Finite Element Method" McGraw-Hill 13-63, 1977

      7 Medvitz, R. B., "Performance Analysis of Cavitating Flow in Centrifugal Pumps Using Multiphase CFD" 124 (124): 377-383, 2002

      8 Bathe, K. J., "Numerical Methods in Finite Element Analysis" Prentice Hall 458-460, 1976

      9 Launder B.E., "Mathematical Models of Turbulence" Academic Press 100-152, 1972

      10 Thomasset, F., "Implementation of Finite Element Methods for Navier-Stokes Equations" Springer-Verlag Berlin Heidelberg 37-97, 1981

      11 Patankar, S. V., "Heat and Mass Transfer in Turbulent Boundary Layers" Imperial College of London 1967

      12 Eymard, R., "Finite Volume Methods" 7 : 713-1018, 2000

      13 Baker, A. J., "Finite Element Computational Fluid Mechanics" Hemisphere Publishing Co. 407-512, 1983

      14 Sohn, I., "Development and Foundation of Technology for Fostering Domestic Engineering SW" 23 (23): 1-7, 2017

      15 Fletcher, C., "Computational Techniques for Fluid Dynamics 1 Fundamental and general techniques" Springer-Verlag Berlin Heidelberg 98-156, 1988

      16 Molina-Aiz, F. D., "Comparison of Finite Element and Finite Volume Methods for Simulation of Natural Ventilation in Greenhouse" 72 (72): 69-86, 2010

      17 Shah, S. R., "CFD for Centrifugal Pumps : A Review of the State-of-the-art" 51 : 715-720, 2013

      18 Clark, J.A., "Book Review Heat and Mass Transfer in Recirculating Flows: Gosman" Academic Press 1509-1510, 1970

      19 Oden, J. T., "An Introduction to the Mathematical Theory of Finite Elements" Wiley 197-417, 1976

      20 Strang, G., "An Analysis of the Finite Element Method" Prentice-hall 1-135, 1973

      21 Moukalled, F., "An Advanced Introduction with OpenFOAM and Matlab, Fluid Mechanics and Its Applications, Vol.113" Springer 103-106, 2016

      22 Lee, Y., "A Parametric Study of Fluid Structural Interaction Couplings in Partitioned Approach" 402-405, 2012

      23 Felippa, C. A., "A Historical Outline of matRix Structural Analysis : A Play in Three Acts" 79 (79): 1313-1324, 2001

      24 Spence, R., "A CFD Parametric Study of Geometrical Variations on the Pressure Pulsations and Performance Characteristics of a Centrifugal Pump" 38 (38): 1243-1257, 2009

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      2016-06-13 학회명변경 한글명 : 한국CAD/CAM학회 -> 한국CDE학회
      영문명 : Society Of Cadcam Engineers -> Society for Computational Design and Engineering
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      2016-06-13 학술지명변경 한글명 : 한국CAD/CAM학회 논문집 -> 한국CDE학회 논문집
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