주요 기능
해석 기능
- 난류 모델 : Spalart-Allmaras, SST k-omega, k-epsilon(Standard, RNG, Realizable), LES, DES
- 열전달 : 자연대류, 강제대류, 고체의 열전도, 복합열전달
- 압축성 유동 : 압력기반 솔버(비압축성에서 아음속유동까지), 밀도기반 솔버(아음속에서 초음속유동까지)
- 다상유동 모델 : Volume of Fluid, 캐비테이션 모델(Schnerr-Sauer, Kunz, Merkle)
- 화학종 혼합 : 부력과 확산을 고려한 다양한 물질의 혼합
- 사용자 정의 스칼라 : 임의의 스칼라에 대한 수송방정식 계산 가능, 유동과 함깨 계산하거나 유동장은 고정된 상태에서 스칼라만 계산 가능
- 비뉴턴유체 모델 : Bird-Carreau, Cross power law, Hershel-Bulkley, Power law
- 회전 기계 : 다중기준좌표계 모델(Multiple Reference Frame, MRF), 미끄럼격자(Sliding Mesh), Actuator Disk, Fan 경계조건
- 다공성 영역 모델 : Darcy-Forchheimer, Power law, Porous Jump 경계조건
- 일괄 계산 / 차수 축소 모델 : 사용자가 매개변수를 선언, csv, xlsx 파일 형식을 이용하여 계산 조건을 입력, 차수 축소 모델 제작, 계산되지 않은 조건에 대한 실시간 결과 획득
- 모니터링 : 잔차(Residual), 힘, 유체력 계수, 점, 면, 체적에서의 값
- 데이터 추출 : age, y+, Q, vorticity, heat flux, heat transfer coefficient, shear stress, total pressure, Mach number
격자 기능
- 지원하는 격자 형식 : OpenFOAM PolyMesh, Fluent (.msh, .cas), Gmsh (.msh), I-deas Universal (.unv), StarCCM+ (.ccm)
- 형상
- STL 파일을 이용한 형상 정의
- 닫힌 면을 자동으로 인식하여 볼륨 생성
- 특징 각도(feature angle)을 이용해서 면을 자동 분할
- 육면체, 구, 실린더 기본 형상 제작 기능
- 완벽하게 서로 연결되지 않은 형상 사용 가능(non-watertight surfaces)
- 격자 생성
- 내부유동/외부유동 격자 생성
- 셀존 생성
- 일치(conformal) 및 불일치(non-conformal) 격자 인터페이스 지원
- 복합열전달 계산을 위한 다중영역(Multi-Region) 격자 생성 기능
- 면(surface), 특징선(feature edge), 체적(volume), 좁은 간격(gap), 곡률을 이용한 격자 분할 기능
- 경계층 격자 생성 기능
- 병렬연산 을 통한 빠른 격자 생성
- 2차원 / 축대칭 격자로 내보내기 기능
- 격자 변형 : 확대 / 축소, 이동, 회전
그래픽 후처리 기능
- Boundary surfaces, Iso-surfaces, Cutting planes
- Contour, Vector, Streamline
- ParaView Support
Development Roadmap
- Roadmap
- Most voted
- Newest
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In Progress
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DPM(Discrete Phase Model) stage-1 : Only for Kinematic Cloud. Public Release will be staged for one year. #1Collateral Field Monitoring : Total pressure, Wall heat flux, Heat Transfer Coefficient, Vorticity, Age... #2Automatic matching of coupled boundaries : baramMesh export matched boundaries for interface and baffle #3ROM(Reduced Order Model) stage-2 : DOE sampling, Transient data, ML, Gappy POD #4Atmospheric Boundary Layer Condition Accounting for Atmospheric Stability : Pasquill Class #5
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Planned
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Dynamic Mesh stage-1: Mesh Morphing Capability for Described and n-DoF motion #1STEP file import : Load STEP, Separate Boundaries and Generate STL file #2Aero-Acoustics : Ffowcs Willians-Hawkings Acoustic Analogy #3StarCCM mesh convert : Don\'t use libccmio library - No License Issue #4AI-Driven Prediction Model #5
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Under Review
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Dynamic Mesh stage-2 : Overset mesh, Adaptive Mesh Refinement, Layering Mesh #1DPM(Discrete Phase Model) stage-2 : Surface film model, Atomization model, Breakup model #2Heat exchanger model : Dual cell HEX model #3Compressible VOF : Include Energy, Compressibility, Phase Change #4LLM for Baram #5
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On Hold
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Radiation : Finite Volume Discrete Ordinates Method, Semi Transparent Material #1Chemical Reaction #2Eulerian Multiphase #3DSMC(Direct Simulation Monte Calro) #4Mesh Deform Utility : Parallelize deformMesh Utility NEXTFOAM developed #5
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DPM(Discrete Phase Model) stage-1 : Only for Kinematic Cloud. Public Release will be staged for one year. # 2
Subscription customer can use 2026 Q1.
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Dynamic Mesh stage-1: Mesh Morphing Capability for Described and n-DoF motion # 9
Mesh morphing capability
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StarCCM mesh convert : Don\'t use libccmio library - No License Issue # 19
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Collateral Field Monitoring : Total pressure, Wall heat flux, Heat Transfer Coefficient, Vorticity, Age... # 7
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Automatic matching of coupled boundaries : baramMesh export matched boundaries for interface and baffle # 8
Coupled boundaries such as interface and baffle are automatically matched when baramMesh export mesh.
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Atmospheric Boundary Layer Condition Accounting for Atmospheric Stability : Pasquill Class # 10
Pasquill Class
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Aero-Acoustics : Ffowcs Willians-Hawkings Acoustic Analogy # 11
FW-H analogy
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Radiation : Finite Volume Discrete Ordinates Method, Semi Transparent Material # 12
Finite Volume Discrete Ordinates Method
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Dynamic Mesh stage-2 : Overset mesh, Adaptive Mesh Refinement, Layering Mesh # 13
Overset mesh, AMR, Layering
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ROM(Reduced Order Model) stage-2 : DOE sampling, Transient data, ML, Gappy POD # 14
DOE, Transient, ML, Gappy POD
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DPM(Discrete Phase Model) stage-2 : Surface film model, Atomization model, Breakup model # 17
Surface film, atomization, breakup
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STEP file import : Load STEP, Separate Boundaries and Generate STL file # 18
Import, separate boundaries
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LLM for Baram # 20
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Heat exchanger model : Dual cell HEX model # 21
Dual cell HEX model
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Chemical Reaction # 22
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Mesh Deform Utility : Parallelize deformMesh Utility NEXTFOAM developed # 23
parallelize deformMesh
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Eulerian Multiphase # 24
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DSMC(Direct Simulation Monte Calro) # 25
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Compressible VOF : Include Energy, Compressibility, Phase Change # 26
Include energy, compressibility, phase change
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AI-Driven Prediction Model # 27
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AI-Driven Prediction Model # 27
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Compressible VOF : Include Energy, Compressibility, Phase Change # 26
Include energy, compressibility, phase change
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DSMC(Direct Simulation Monte Calro) # 25
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Eulerian Multiphase # 24
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Mesh Deform Utility : Parallelize deformMesh Utility NEXTFOAM developed # 23
parallelize deformMesh
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Chemical Reaction # 22
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Heat exchanger model : Dual cell HEX model # 21
Dual cell HEX model
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LLM for Baram # 20
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StarCCM mesh convert : Don\'t use libccmio library - No License Issue # 19
-
-
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STEP file import : Load STEP, Separate Boundaries and Generate STL file # 18
Import, separate boundaries
-
-
-
DPM(Discrete Phase Model) stage-2 : Surface film model, Atomization model, Breakup model # 17
Surface film, atomization, breakup
-
-
-
ROM(Reduced Order Model) stage-2 : DOE sampling, Transient data, ML, Gappy POD # 14
DOE, Transient, ML, Gappy POD
-
-
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Dynamic Mesh stage-2 : Overset mesh, Adaptive Mesh Refinement, Layering Mesh # 13
Overset mesh, AMR, Layering
-
-
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Radiation : Finite Volume Discrete Ordinates Method, Semi Transparent Material # 12
Finite Volume Discrete Ordinates Method
-
-
-
Aero-Acoustics : Ffowcs Willians-Hawkings Acoustic Analogy # 11
FW-H analogy
-
-
-
Atmospheric Boundary Layer Condition Accounting for Atmospheric Stability : Pasquill Class # 10
Pasquill Class
-
-
-
Dynamic Mesh stage-1: Mesh Morphing Capability for Described and n-DoF motion # 9
Mesh morphing capability
-
-
-
Automatic matching of coupled boundaries : baramMesh export matched boundaries for interface and baffle # 8
Coupled boundaries such as interface and baffle are automatically matched when baramMesh export mesh.
-
-
-
Collateral Field Monitoring : Total pressure, Wall heat flux, Heat Transfer Coefficient, Vorticity, Age... # 7
-
-
-
DPM(Discrete Phase Model) stage-1 : Only for Kinematic Cloud. Public Release will be staged for one year. # 2
Subscription customer can use 2026 Q1.
-
- 개발 우선 순위는 개발 과제, 서브스크립션 고객 요청, 후원 고객, 사용자 요구 사항의 순서로 결정됩니다.
- 개발 로드맵의 각 항목들은 과제 계약 및 후원 고객의 요청에 따라 변경될 수 있습니다.
- 개발 과제의 결과물은 고객의 상황에 따라 일정 기간이 지난 후 일반에 공개될 수 있으며, 서브스크립션 고객에 대해 제한적으로 제공될 수 있습니다.
- 개발 후원은 특정 기능 개발에 필요한 비용의 일부를 여러 고객들이 지불하는 방법입니다.
- 개발 과제와 후원에 관한 문의는 Contact Us를 이용해 주세요.