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      Source 공개 코드 OpenFOAM에 대한 리뷰

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      https://www.riss.kr/link?id=A82415564

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      다국어 초록 (Multilingual Abstract)

      Recently, several open source codes for computational fluid dynamics (CFD) have been introduced and are spreading fast. Our group has chosen the OpenFOAM as a platform to develop our own in-house code. In this brief review, we would like to share the information on the codes and what we have experienced so for. We introduce several features of OpenFOAM, which include the performance compared with commercial packages, estimation for current user population, and our own prospect for future improvement in performance and growth in user population. In addition, we briefly introduce our experience gained in embedding the level set method into the OpenFOAM.
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      Recently, several open source codes for computational fluid dynamics (CFD) have been introduced and are spreading fast. Our group has chosen the OpenFOAM as a platform to develop our own in-house code. In this brief review, we would like to share the ...

      Recently, several open source codes for computational fluid dynamics (CFD) have been introduced and are spreading fast. Our group has chosen the OpenFOAM as a platform to develop our own in-house code. In this brief review, we would like to share the information on the codes and what we have experienced so for. We introduce several features of OpenFOAM, which include the performance compared with commercial packages, estimation for current user population, and our own prospect for future improvement in performance and growth in user population. In addition, we briefly introduce our experience gained in embedding the level set method into the OpenFOAM.

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      참고문헌 (Reference)

      1 박준권, "레벨셋 기법의 물성 보간 방법에 대한 고찰" 283-289, 2009

      2 박준권, "레벨셋 기법을 이용한 전기습윤 현상의 동적 거동에 대한 해석" 84-87, 2009

      3 ScienceDirect, "http://www.sciencedirect.com"

      4 ParaView, "http://www.paraview.org"

      5 OpenFOAM, "http://www.openfoam.com"

      6 EnSight, "http://www.ensight.com"

      7 FLUENT, "http://www.ansys.com"

      8 CFX, "http://www.ansys.com"

      9 "http://ko.wikipedia.org/wiki/GNU_GPL"

      10 Gagnon, L, "Using OpenFOAM to Model Energy Taken from the Swirl behind a Car" 2009

      1 박준권, "레벨셋 기법의 물성 보간 방법에 대한 고찰" 283-289, 2009

      2 박준권, "레벨셋 기법을 이용한 전기습윤 현상의 동적 거동에 대한 해석" 84-87, 2009

      3 ScienceDirect, "http://www.sciencedirect.com"

      4 ParaView, "http://www.paraview.org"

      5 OpenFOAM, "http://www.openfoam.com"

      6 EnSight, "http://www.ensight.com"

      7 FLUENT, "http://www.ansys.com"

      8 CFX, "http://www.ansys.com"

      9 "http://ko.wikipedia.org/wiki/GNU_GPL"

      10 Gagnon, L, "Using OpenFOAM to Model Energy Taken from the Swirl behind a Car" 2009

      11 Maki, K, "Thin-Ship Theory of Wave Resistance on Finite Volume Grids" 2009

      12 Petit, O, "The ERCOFTAC Centrifugal Pump OpenFOAM Case-Study" 2009

      13 Nilsson, H, "The Dellenback Abrupt Expansion OpenFOAM Case-Study, and the kOmegaSSTF Turbulence Model" 2009

      14 Taylor, G, "Studies in Electrohydrodynamics I. The Circulation Produced in a Drop by an Electric Field" 159-166, 1966

      15 Paterson, E, "Simulation of Wakes, Wave Impact Loads and Seakeeping using OpenFOAM" 2009

      16 Costa, A.B, "Simulated Splashes: Elucidating the Mechanism of Desorption Electrospray Ionization Mass Spectrometry" 464 : 1-8, 2008

      17 이희범, "OpenFOAM을 이용한 유체-구조연성 해석, 교육과학기술부 한국연구재단 선정 우수연구센터(ERC) 2009년도 결과보고서" 89-96, 2010

      18 Jasak, H, "OpenFOAM: A C++ Library for Complex Physics Simulations" 2007

      19 Ambrosino, F, "OpenFOAM and Fluent Features in CFD Simulations on CRESCO High Power Computing System" AVVISO 1575-, 2009

      20 Syamlal, M, "Open-Source Software in Computational Research: a Case Study" 2008 : 937542-, 2008

      21 Fuggetta, A, "Open Source Software-An Evaluation" 66 : 77-90, 2003

      22 Sasongko, N.A, "Open Source Computational Fluid Dynamic: Challenges and its Future" 2009

      23 Olivier, M, "Non-Linear Aeroelasticity for Nano-Air-Vehicles Applications using OpenFOAM" 2009

      24 Drobyshevskii, N, "Modeling of Aerosol Deposition using the Diffusion-Inertia Model in OpenFOAM" 2009

      25 Rusche, H, "Metallurgical Process Simulations using OpenFOAM" 2009

      26 Turnow, J, "LES of Vortex Formation in a Spherical Dimple and Genetic Optimization of Heat Transfer Surfaces" 2009

      27 Moller, S, "Investigation of the Flow around the Ahmed Body using RANS and URANS with Various Turbulence Models" 2008

      28 Sumner, J, "Improving the k-ε Turbulence Model for Simulation of Atmospheric Boundary Layer Flow" 2009

      29 Gasparini, L, "Improved k-ω Turbulence Model and Application to the Computation of Flows on Simplified Car Bodies" 2008

      30 Auvinen, M, "Flow Analysis of a Single-Blade Pump with OpenFOAM" 2009

      31 Mangani, L, "External and Internal Heat Transfer in Turbomachinery Applications" 2008

      32 Saha, A.A, "Effect of Dynamic Contact Angle in a Volume of Fluid (VOF) Model for a Microfluidic Capillary Flow" 339 : 461-480, 2009

      33 Lucchini, T, "Developments in OpenFOAM for Internal Combustion Engine Simulations" 2008

      34 Amouzandeh, A, "Development of a Computational-Fluid-Dynamics Tool to Predict the Thermal Load of Structures in Case of Fire" 2009

      35 Lucchini, T, "Development of OpenFOAM for the Simulation of the Combustion Process and the Exhaust-after Treatment System in Diesel Engines" 2009

      36 Vincent, P.B, "Detached Eddy Simulation of Swirling Flow in a Hydroturbine Draft Tube using OpenFOAM" 2009

      37 Karvinen, A, "Comparison of Turbulence Models in Case of Three-Dimensional Diffuser" 2008

      38 McIntyre, S.M, "Comparison of Interface Capturing Methods using OpenFOAM" 2009

      39 Gel, A, "Comparison of Frameworks for a Next-Generation Multiphase Flow Solver, MFIX: a Group Decision-Making Exercise" 19 : 609-624, 2007

      40 Horvath, A, "CFD Simulation of Bubble Columns using the VOF Model: Comparison of Commercial and Open Source Solvers with an Experiment" 18 : 605-610, 2009

      41 Jacobsen, F, "Application of OpenFOAM for Designing Hydraulic Water Structures" 2009

      42 Campos, F, "Application of OpenFOAM for Automotive Aerodynamics Development" 2009

      43 Islam, M, "Application of OpenFOAM Technology for Vehicle Aerodynamics Development" 2009

      44 Beaudoin, M, "Adaptation of the General Grid Interface (GGI) for Turbomachinery Simulations with OpenFOAM" 2008

      45 Cahill, B.P, "A Dynamic Electrowetting Simulation Using the Level-set Method" 2008

      46 Olsson, E, "A Conservative Level Set Method for Two Phase Flow II" 225 : 785-807, 2007

      47 Jarman, D, "A Comparison of RANS Turbulence Models in the Prediction of Confined Turbulent Swirling Flows in Urban Drainage Flow Controls" 2009

      48 Muntean, S, "3D Numerical Analysis of the Unsteady Turbulent Swirling Flow in a Conical Diffuser using Fluent and OpenFOAM" 2009

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      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2011-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2005-06-16 학술지명변경 외국어명 : Jpurnal of Computatuonal Fluids Engineering -> Korean Society of Computatuonal Fluids Engineering KCI등재후보
      2005-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2004-01-01 평가 등재후보 1차 FAIL (등재후보1차) KCI등재후보
      2002-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.2 0.2 0.19
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