SlideShare una empresa de Scribd logo
1 de 19
Design Optimization of Natural Laminar Airfoil 지도 교수            조창열 연구ㆍ발표자  김근우, 김동춘, 김현준 2008. 12. 12. (Fri)
Table of Contents Objective Research Techniques Validation of Flow Solver Optimization Framework Formulation of Optimization Problem Design Optimization Results Conclusion
1. Objective Research Objective ○ Design Optimization of 2-D Natural Laminar Airfoil 5 Reasons to Optimize   ○ Needs Long Endurance Performance   ○ Needs High Lift Coefficient   ○ Low Reynolds No.-Transitional Flow Flight   ○ Test and Validate CFD Code   ○ Establish Optimization Framework
2. Research Techniques (1) CFD Analysis of Low Reynolds No. Transitional Flow ○ Use k-ω SST TRANSITIONAL MODEL ○ Use FLUENT for Flexibility and Reliability Aerodynamic Design Optimization of Airfoils ○ Setup of Design Framework ○ Validation of CFD Analysis ○ Formulation of Optimization Problem ○ Design Optimization
2. Research Techniques (2) Optimization Techniques ○ Optimization Algorithms : GBOM, MMFD ○ Numerical Optimization Code : DOT ○ Mathematical Formulation of Function                           -> Use Taylor Series Expansion Network-Distributed Computation ○ Use Network-Distributed Computation ○ TCP/IP Network Environment                          -> O/S Independent For Optimization
2. Research Techniques (3) Airfoil Shape Design Method ○ Use NURBS Shape Function                   -> Excellent in Local Control of Shape  ○ Use CATIA for Shape Export                   -> IGES, STEP, STL, 3DXML…. .NET Framework-Based Programming Model ○ Easy and Powerful Rapid Programming Model ○ O/S Independent, Can Be Used in Handheld Devices ○ Ensure Portability for Various Programming      Language
3. Validation of Flow Solver (1) Testing Low Reynolds No. Transitional Flow ○ Key Features of Design        -> Low Reynolds No. Flow Includes Transition        -> Needs High Lift Coefficient        -> Used for High Aspect Ratio Wing  ○ NACA 653-018 Airfoil  ○ Low Reynolds. No Flow      Analysis  ○ RANS+LRN K-ω Model  ○ Boundary Layer     Clustered Grid System  ○ 65 X 370 Cells Grid System of NACA 653-018
3. Validation of Flow Solver (2) Simulating Separation Bubble ○ K-ω SST Transitional Model Simulates Separation Bubble Well
3. Validation of Flow Solver (3) Testing Low Reynolds No. Transitional Flow ○ Rec = 3.0 X 106 / Chord Length = 90 in. ○ Pressure-Based Solver / K-ω SST Transitional Model  ○ Turbulent Intensity / Length Scale                                      -> NASA Langley Low Turbulence Wind Tunnel
4. Optimization Framework(1) Components of Optimization Framework ○ Easy, Flexible, Reliable and Robust Design Optimization Framework
4. Optimization Framework(2) Optimization Framework Workflow
5. Formulation of Problem(1) Design Condition ○ Angle of Attack : 4.2˚ / REC = 1.56 X 106 ○ Minimum Lift Coefficient : CL = 1.28 (Cambered Airfoil) Design Problem ○ Initial Airfoil Design : NACA0018 ○ Objective Function                       -> Minimize Drag Coefficient (Symmetric Airfoil)                      -> Maximize Endurance Parameter (Cambered Airfoil) ○ Constraints                      -> Subject to CL(X) > 1.28 (Cambered Airfoil)               A(X) = A0 (Area of Airfoil)
5. Formulation of Problem(2) NURBS Shape Function ○ Excellent in Local Shape Modification, More Smooth Curve ○ Reduce Design Variable -> Reduce Computational Cost  ○ Use 4th Order Blending Function / Use 10 Control Points 4 3 2 1 5 9 6 8 7 10
5. Formulation of Problem(2) Optimization Algorithm ○ Gradient Based Optimization Method (GBOM)     Gradient-Based Optimization Method can be easily programmed and     useful if design space is not distorted.       -> Optimizer does not know what kind of problem it is solving.       -> Before optimization process starts, it is necessary to check if           design space is distorted or not. ○ Method of Modified Feasible Direction Search (MMFD)    Method of Modified Feasible Direction needs two stage of optimization.       -> Finding search direction to find feasible region in design space.       -> One-dimensional search determines how design variable can be far          from the initial design.
6. Design Optimization Results (1) Symmetric Airfoil Optimization (Drag Minimization) ○ Transition position moved towards     trailing edge. ○ Delaying transition can reduce drag. ○ That is, drag could be reduced by     maintain more laminar flow region.
6. Design Optimization Results (2) Cambered Airfoil Design (Endurance Param. Maximization) ○ Area of pressure coefficient is wider    than initial design. Cl is increased. ○ Drag coefficient increased too. But    optimizer limits increasing of drag    coefficient effectively.
6. Design Optimization Results (3) Cambered Airfoil Design (Endurance Param. Maximization)
7. Conclusion   ○ In a view point of speed of optimization, approximate concepts      for numerical optimization is competitive method than other       algorithm like RSM, GA, etc...   ○ Reasonable design results we can get with                ->  Drag Minimized for Symmetric Airfoil                ->  Endurance Parameter Maximized for Cambered Airfoil   ○ By using NURBS for shape design, we could reduce design variables      and calculation cost.   ○ By using LRN K-ω SST Transitional Model, low reynolds no.      flow field and transitional phenomena simulate well. But flow      filed includes transition, there may be separation bubble near      the wall. But Fluent doesn’t predict this phenomenon sufficiently.      Fluctuation of solution delays finishing calculation.   ○ Codes that supports automation API(application programming      interface) or internal script can be adopted for this framework.
Thanks for Listening < Question & Answer Time >

Más contenido relacionado

La actualidad más candente

Invited Paper for ASM 2004
Invited Paper for ASM 2004Invited Paper for ASM 2004
Invited Paper for ASM 2004stephen_mcparlin
 
3.5 equivalence of pushdown automata and cfl
3.5 equivalence of pushdown automata and cfl3.5 equivalence of pushdown automata and cfl
3.5 equivalence of pushdown automata and cflSampath Kumar S
 
How CFD can help gain the most efficient data centre designs
How CFD can help gain the most efficient data centre designsHow CFD can help gain the most efficient data centre designs
How CFD can help gain the most efficient data centre designsmattkeysource
 
Design of multiloop controller for multivariable system using coefficient 2
Design of multiloop controller for multivariable system using coefficient 2Design of multiloop controller for multivariable system using coefficient 2
Design of multiloop controller for multivariable system using coefficient 2IAEME Publication
 
Cfd simulation of flow heat and mass transfer
Cfd simulation of flow  heat and mass transferCfd simulation of flow  heat and mass transfer
Cfd simulation of flow heat and mass transferDr.Qasim Kadhim
 
Master defence 2020 - Oleksandr Smyrnov - A Multifactorial Optimization of Pe...
Master defence 2020 - Oleksandr Smyrnov - A Multifactorial Optimization of Pe...Master defence 2020 - Oleksandr Smyrnov - A Multifactorial Optimization of Pe...
Master defence 2020 - Oleksandr Smyrnov - A Multifactorial Optimization of Pe...Lviv Data Science Summer School
 
Computational Fluid Dynamics (CFD)
Computational Fluid Dynamics (CFD)Computational Fluid Dynamics (CFD)
Computational Fluid Dynamics (CFD)Taani Saxena
 
Nonlinear Aeroelastic Steady Simulation Applied to Highly Flexible Blades for...
Nonlinear Aeroelastic Steady Simulation Applied to Highly Flexible Blades for...Nonlinear Aeroelastic Steady Simulation Applied to Highly Flexible Blades for...
Nonlinear Aeroelastic Steady Simulation Applied to Highly Flexible Blades for...Fausto Gill Di Vincenzo
 
Introduction of Online Machine Learning Algorithms
Introduction of Online Machine Learning AlgorithmsIntroduction of Online Machine Learning Algorithms
Introduction of Online Machine Learning AlgorithmsShao-Yen Hung
 
CFD Best Practices & Key Features
CFD Best Practices & Key FeaturesCFD Best Practices & Key Features
CFD Best Practices & Key FeaturesDesign World
 
CFD Best Practices and Troubleshooting - with speaker notes
CFD Best Practices and Troubleshooting - with speaker notesCFD Best Practices and Troubleshooting - with speaker notes
CFD Best Practices and Troubleshooting - with speaker notesHashan Mendis
 
WHAT IS COMPUTATIONAL FLUID DYNAMICS (CFD)
WHAT IS COMPUTATIONAL FLUID DYNAMICS (CFD)WHAT IS COMPUTATIONAL FLUID DYNAMICS (CFD)
WHAT IS COMPUTATIONAL FLUID DYNAMICS (CFD)Malik Abdul Wahab
 
Online Optimization Problem-1 (Online machine learning)
Online Optimization Problem-1 (Online machine learning)Online Optimization Problem-1 (Online machine learning)
Online Optimization Problem-1 (Online machine learning)Shao-Yen Hung
 
Computational fluid dynamics
Computational fluid dynamicsComputational fluid dynamics
Computational fluid dynamicsRavi Choudhary
 

La actualidad más candente (19)

Invited Paper for ASM 2004
Invited Paper for ASM 2004Invited Paper for ASM 2004
Invited Paper for ASM 2004
 
3.5 equivalence of pushdown automata and cfl
3.5 equivalence of pushdown automata and cfl3.5 equivalence of pushdown automata and cfl
3.5 equivalence of pushdown automata and cfl
 
How CFD can help gain the most efficient data centre designs
How CFD can help gain the most efficient data centre designsHow CFD can help gain the most efficient data centre designs
How CFD can help gain the most efficient data centre designs
 
Design of multiloop controller for multivariable system using coefficient 2
Design of multiloop controller for multivariable system using coefficient 2Design of multiloop controller for multivariable system using coefficient 2
Design of multiloop controller for multivariable system using coefficient 2
 
CFD Project
CFD ProjectCFD Project
CFD Project
 
Cfd simulation of flow heat and mass transfer
Cfd simulation of flow  heat and mass transferCfd simulation of flow  heat and mass transfer
Cfd simulation of flow heat and mass transfer
 
3D-DRESD Polaris
3D-DRESD Polaris3D-DRESD Polaris
3D-DRESD Polaris
 
Cfd 0
Cfd 0Cfd 0
Cfd 0
 
Master defence 2020 - Oleksandr Smyrnov - A Multifactorial Optimization of Pe...
Master defence 2020 - Oleksandr Smyrnov - A Multifactorial Optimization of Pe...Master defence 2020 - Oleksandr Smyrnov - A Multifactorial Optimization of Pe...
Master defence 2020 - Oleksandr Smyrnov - A Multifactorial Optimization of Pe...
 
Computational Fluid Dynamics (CFD)
Computational Fluid Dynamics (CFD)Computational Fluid Dynamics (CFD)
Computational Fluid Dynamics (CFD)
 
Critical Path Method
Critical Path MethodCritical Path Method
Critical Path Method
 
Nonlinear Aeroelastic Steady Simulation Applied to Highly Flexible Blades for...
Nonlinear Aeroelastic Steady Simulation Applied to Highly Flexible Blades for...Nonlinear Aeroelastic Steady Simulation Applied to Highly Flexible Blades for...
Nonlinear Aeroelastic Steady Simulation Applied to Highly Flexible Blades for...
 
Introduction of Online Machine Learning Algorithms
Introduction of Online Machine Learning AlgorithmsIntroduction of Online Machine Learning Algorithms
Introduction of Online Machine Learning Algorithms
 
Pert cpm
Pert cpmPert cpm
Pert cpm
 
CFD Best Practices & Key Features
CFD Best Practices & Key FeaturesCFD Best Practices & Key Features
CFD Best Practices & Key Features
 
CFD Best Practices and Troubleshooting - with speaker notes
CFD Best Practices and Troubleshooting - with speaker notesCFD Best Practices and Troubleshooting - with speaker notes
CFD Best Practices and Troubleshooting - with speaker notes
 
WHAT IS COMPUTATIONAL FLUID DYNAMICS (CFD)
WHAT IS COMPUTATIONAL FLUID DYNAMICS (CFD)WHAT IS COMPUTATIONAL FLUID DYNAMICS (CFD)
WHAT IS COMPUTATIONAL FLUID DYNAMICS (CFD)
 
Online Optimization Problem-1 (Online machine learning)
Online Optimization Problem-1 (Online machine learning)Online Optimization Problem-1 (Online machine learning)
Online Optimization Problem-1 (Online machine learning)
 
Computational fluid dynamics
Computational fluid dynamicsComputational fluid dynamics
Computational fluid dynamics
 

Destacado (20)

Eccentricity Practice Problems HW
Eccentricity Practice Problems HWEccentricity Practice Problems HW
Eccentricity Practice Problems HW
 
2012 Acura RL For Sale NJ | Acura Dealer in New Jersey
2012 Acura RL For Sale NJ | Acura Dealer in New Jersey2012 Acura RL For Sale NJ | Acura Dealer in New Jersey
2012 Acura RL For Sale NJ | Acura Dealer in New Jersey
 
Proyecto de modificación de jornada
Proyecto de modificación de jornadaProyecto de modificación de jornada
Proyecto de modificación de jornada
 
Tobi Timeline
Tobi TimelineTobi Timeline
Tobi Timeline
 
E care
E careE care
E care
 
Brunocuento
BrunocuentoBrunocuento
Brunocuento
 
Diagrama de flujo
Diagrama de flujoDiagrama de flujo
Diagrama de flujo
 
Tomasz Malicki Condohotels Group
Tomasz Malicki Condohotels GroupTomasz Malicki Condohotels Group
Tomasz Malicki Condohotels Group
 
Emma Gregory Magazine Evaluation
Emma Gregory Magazine EvaluationEmma Gregory Magazine Evaluation
Emma Gregory Magazine Evaluation
 
Bible Triva Game
Bible Triva GameBible Triva Game
Bible Triva Game
 
Conceptueel model
Conceptueel modelConceptueel model
Conceptueel model
 
Возможности интернет маркетинга
Возможности интернет маркетингаВозможности интернет маркетинга
Возможности интернет маркетинга
 
Telly Chakkar
Telly ChakkarTelly Chakkar
Telly Chakkar
 
Honors ES Prologue Note Packet 1 Power Point
Honors ES Prologue Note Packet 1 Power PointHonors ES Prologue Note Packet 1 Power Point
Honors ES Prologue Note Packet 1 Power Point
 
Nos vamos a croacia, Zagreb
Nos vamos a croacia, ZagrebNos vamos a croacia, Zagreb
Nos vamos a croacia, Zagreb
 
Ficha de viaje
Ficha de viajeFicha de viaje
Ficha de viaje
 
Conservation District
Conservation DistrictConservation District
Conservation District
 
Viaje reino unido
Viaje reino unidoViaje reino unido
Viaje reino unido
 
Profile2014
Profile2014Profile2014
Profile2014
 
Eccentricity of an Ellipse lab
Eccentricity of an Ellipse labEccentricity of an Ellipse lab
Eccentricity of an Ellipse lab
 

Similar a 층류 익형의 설계 최적화

IRJET- Optimization of Fink and Howe Trusses
IRJET-  	  Optimization of Fink and Howe TrussesIRJET-  	  Optimization of Fink and Howe Trusses
IRJET- Optimization of Fink and Howe TrussesIRJET Journal
 
Propeller & Fan Design Optimization
Propeller & Fan Design Optimization Propeller & Fan Design Optimization
Propeller & Fan Design Optimization SimScale
 
Turbomachinery: Industrial Pump Design Optimization
Turbomachinery: Industrial Pump Design OptimizationTurbomachinery: Industrial Pump Design Optimization
Turbomachinery: Industrial Pump Design OptimizationSimScale
 
Design Optimization and CFD Analysis of Car using Active Mounting to Reduce D...
Design Optimization and CFD Analysis of Car using Active Mounting to Reduce D...Design Optimization and CFD Analysis of Car using Active Mounting to Reduce D...
Design Optimization and CFD Analysis of Car using Active Mounting to Reduce D...IRJET Journal
 
Ag o product overview
Ag o product overviewAg o product overview
Ag o product overviewManoj Nagesh
 
24-02-18 Rejender pratap.pdf
24-02-18 Rejender pratap.pdf24-02-18 Rejender pratap.pdf
24-02-18 Rejender pratap.pdfFrangoCamila
 
CFD Cornell Energy Workshop - M.F. Campuzano Ochoa
CFD Cornell Energy Workshop - M.F. Campuzano OchoaCFD Cornell Energy Workshop - M.F. Campuzano Ochoa
CFD Cornell Energy Workshop - M.F. Campuzano OchoaMario Felipe Campuzano Ochoa
 
Efficient Design Exploration for Civil Aircraft Using a Kriging-Based Genetic...
Efficient Design Exploration for Civil Aircraft Using a Kriging-Based Genetic...Efficient Design Exploration for Civil Aircraft Using a Kriging-Based Genetic...
Efficient Design Exploration for Civil Aircraft Using a Kriging-Based Genetic...Masahiro Kanazaki
 
Drag Reduction of Front Wing of an F1 Car using Adjoint Optimisation
Drag Reduction of Front Wing of an F1 Car using Adjoint OptimisationDrag Reduction of Front Wing of an F1 Car using Adjoint Optimisation
Drag Reduction of Front Wing of an F1 Car using Adjoint Optimisationyasirmaliq
 
Architectural Optimizations for High Performance and Energy Efficient Smith-W...
Architectural Optimizations for High Performance and Energy Efficient Smith-W...Architectural Optimizations for High Performance and Energy Efficient Smith-W...
Architectural Optimizations for High Performance and Energy Efficient Smith-W...NECST Lab @ Politecnico di Milano
 
RTL Design Methodologies_Object Automation Inc
RTL Design Methodologies_Object Automation IncRTL Design Methodologies_Object Automation Inc
RTL Design Methodologies_Object Automation IncObject Automation
 
Elements CAE white paper
Elements CAE white paperElements CAE white paper
Elements CAE white paperAngus Lock
 
Use of cfd in aerodynamic performance of race car
Use of cfd in aerodynamic performance of race carUse of cfd in aerodynamic performance of race car
Use of cfd in aerodynamic performance of race carDesignage Solutions
 
CFDProcess.ppt
CFDProcess.pptCFDProcess.ppt
CFDProcess.pptRammoganM
 
CFDProcess (1).ppt
CFDProcess (1).pptCFDProcess (1).ppt
CFDProcess (1).pptRammoganM
 
CFD Analysis of conceptual Aircraft body
CFD Analysis of conceptual Aircraft bodyCFD Analysis of conceptual Aircraft body
CFD Analysis of conceptual Aircraft bodyIRJET Journal
 
IRJET-CFD Analysis of conceptual Aircraft body
IRJET-CFD Analysis of conceptual Aircraft bodyIRJET-CFD Analysis of conceptual Aircraft body
IRJET-CFD Analysis of conceptual Aircraft bodyIRJET Journal
 
Flow Modification over Rotor Blade with Suction Boundary Layer Control Technique
Flow Modification over Rotor Blade with Suction Boundary Layer Control TechniqueFlow Modification over Rotor Blade with Suction Boundary Layer Control Technique
Flow Modification over Rotor Blade with Suction Boundary Layer Control TechniqueIJERA Editor
 

Similar a 층류 익형의 설계 최적화 (20)

IRJET- Optimization of Fink and Howe Trusses
IRJET-  	  Optimization of Fink and Howe TrussesIRJET-  	  Optimization of Fink and Howe Trusses
IRJET- Optimization of Fink and Howe Trusses
 
Propeller & Fan Design Optimization
Propeller & Fan Design Optimization Propeller & Fan Design Optimization
Propeller & Fan Design Optimization
 
Turbomachinery: Industrial Pump Design Optimization
Turbomachinery: Industrial Pump Design OptimizationTurbomachinery: Industrial Pump Design Optimization
Turbomachinery: Industrial Pump Design Optimization
 
Design Optimization and CFD Analysis of Car using Active Mounting to Reduce D...
Design Optimization and CFD Analysis of Car using Active Mounting to Reduce D...Design Optimization and CFD Analysis of Car using Active Mounting to Reduce D...
Design Optimization and CFD Analysis of Car using Active Mounting to Reduce D...
 
Ag o product overview
Ag o product overviewAg o product overview
Ag o product overview
 
24-02-18 Rejender pratap.pdf
24-02-18 Rejender pratap.pdf24-02-18 Rejender pratap.pdf
24-02-18 Rejender pratap.pdf
 
CFD Cornell Energy Workshop - M.F. Campuzano Ochoa
CFD Cornell Energy Workshop - M.F. Campuzano OchoaCFD Cornell Energy Workshop - M.F. Campuzano Ochoa
CFD Cornell Energy Workshop - M.F. Campuzano Ochoa
 
Efficient Design Exploration for Civil Aircraft Using a Kriging-Based Genetic...
Efficient Design Exploration for Civil Aircraft Using a Kriging-Based Genetic...Efficient Design Exploration for Civil Aircraft Using a Kriging-Based Genetic...
Efficient Design Exploration for Civil Aircraft Using a Kriging-Based Genetic...
 
Drag Reduction of Front Wing of an F1 Car using Adjoint Optimisation
Drag Reduction of Front Wing of an F1 Car using Adjoint OptimisationDrag Reduction of Front Wing of an F1 Car using Adjoint Optimisation
Drag Reduction of Front Wing of an F1 Car using Adjoint Optimisation
 
Architectural Optimizations for High Performance and Energy Efficient Smith-W...
Architectural Optimizations for High Performance and Energy Efficient Smith-W...Architectural Optimizations for High Performance and Energy Efficient Smith-W...
Architectural Optimizations for High Performance and Energy Efficient Smith-W...
 
RTL Design Methodologies_Object Automation Inc
RTL Design Methodologies_Object Automation IncRTL Design Methodologies_Object Automation Inc
RTL Design Methodologies_Object Automation Inc
 
Elements CAE white paper
Elements CAE white paperElements CAE white paper
Elements CAE white paper
 
Use of cfd in aerodynamic performance of race car
Use of cfd in aerodynamic performance of race carUse of cfd in aerodynamic performance of race car
Use of cfd in aerodynamic performance of race car
 
2014 PV Performance Modeling Workshop: Optimization strategies with Pvsyst fo...
2014 PV Performance Modeling Workshop: Optimization strategies with Pvsyst fo...2014 PV Performance Modeling Workshop: Optimization strategies with Pvsyst fo...
2014 PV Performance Modeling Workshop: Optimization strategies with Pvsyst fo...
 
CFDProcess.ppt
CFDProcess.pptCFDProcess.ppt
CFDProcess.ppt
 
CFDProcess (1).ppt
CFDProcess (1).pptCFDProcess (1).ppt
CFDProcess (1).ppt
 
CFD Analysis of conceptual Aircraft body
CFD Analysis of conceptual Aircraft bodyCFD Analysis of conceptual Aircraft body
CFD Analysis of conceptual Aircraft body
 
IRJET-CFD Analysis of conceptual Aircraft body
IRJET-CFD Analysis of conceptual Aircraft bodyIRJET-CFD Analysis of conceptual Aircraft body
IRJET-CFD Analysis of conceptual Aircraft body
 
Flow Modification over Rotor Blade with Suction Boundary Layer Control Technique
Flow Modification over Rotor Blade with Suction Boundary Layer Control TechniqueFlow Modification over Rotor Blade with Suction Boundary Layer Control Technique
Flow Modification over Rotor Blade with Suction Boundary Layer Control Technique
 
BAXTER phase 1b
BAXTER phase 1bBAXTER phase 1b
BAXTER phase 1b
 

Último

How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17Celine George
 
Fostering Friendships - Enhancing Social Bonds in the Classroom
Fostering Friendships - Enhancing Social Bonds  in the ClassroomFostering Friendships - Enhancing Social Bonds  in the Classroom
Fostering Friendships - Enhancing Social Bonds in the ClassroomPooky Knightsmith
 
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptxHMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptxEsquimalt MFRC
 
The basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptxThe basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptxheathfieldcps1
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...christianmathematics
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Jisc
 
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptxBasic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptxDenish Jangid
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.pptRamjanShidvankar
 
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...Nguyen Thanh Tu Collection
 
Graduate Outcomes Presentation Slides - English
Graduate Outcomes Presentation Slides - EnglishGraduate Outcomes Presentation Slides - English
Graduate Outcomes Presentation Slides - Englishneillewis46
 
Salient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsSalient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsKarakKing
 
Understanding Accommodations and Modifications
Understanding  Accommodations and ModificationsUnderstanding  Accommodations and Modifications
Understanding Accommodations and ModificationsMJDuyan
 
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptxSKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptxAmanpreet Kaur
 
Google Gemini An AI Revolution in Education.pptx
Google Gemini An AI Revolution in Education.pptxGoogle Gemini An AI Revolution in Education.pptx
Google Gemini An AI Revolution in Education.pptxDr. Sarita Anand
 
Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfAdmir Softic
 
Unit-IV; Professional Sales Representative (PSR).pptx
Unit-IV; Professional Sales Representative (PSR).pptxUnit-IV; Professional Sales Representative (PSR).pptx
Unit-IV; Professional Sales Representative (PSR).pptxVishalSingh1417
 
SOC 101 Demonstration of Learning Presentation
SOC 101 Demonstration of Learning PresentationSOC 101 Demonstration of Learning Presentation
SOC 101 Demonstration of Learning Presentationcamerronhm
 
Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfSherif Taha
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxVishalSingh1417
 
Vishram Singh - Textbook of Anatomy Upper Limb and Thorax.. Volume 1 (1).pdf
Vishram Singh - Textbook of Anatomy  Upper Limb and Thorax.. Volume 1 (1).pdfVishram Singh - Textbook of Anatomy  Upper Limb and Thorax.. Volume 1 (1).pdf
Vishram Singh - Textbook of Anatomy Upper Limb and Thorax.. Volume 1 (1).pdfssuserdda66b
 

Último (20)

How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17
 
Fostering Friendships - Enhancing Social Bonds in the Classroom
Fostering Friendships - Enhancing Social Bonds  in the ClassroomFostering Friendships - Enhancing Social Bonds  in the Classroom
Fostering Friendships - Enhancing Social Bonds in the Classroom
 
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptxHMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
 
The basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptxThe basics of sentences session 3pptx.pptx
The basics of sentences session 3pptx.pptx
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
 
Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)Accessible Digital Futures project (20/03/2024)
Accessible Digital Futures project (20/03/2024)
 
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptxBasic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.ppt
 
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
 
Graduate Outcomes Presentation Slides - English
Graduate Outcomes Presentation Slides - EnglishGraduate Outcomes Presentation Slides - English
Graduate Outcomes Presentation Slides - English
 
Salient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsSalient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functions
 
Understanding Accommodations and Modifications
Understanding  Accommodations and ModificationsUnderstanding  Accommodations and Modifications
Understanding Accommodations and Modifications
 
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptxSKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
 
Google Gemini An AI Revolution in Education.pptx
Google Gemini An AI Revolution in Education.pptxGoogle Gemini An AI Revolution in Education.pptx
Google Gemini An AI Revolution in Education.pptx
 
Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdf
 
Unit-IV; Professional Sales Representative (PSR).pptx
Unit-IV; Professional Sales Representative (PSR).pptxUnit-IV; Professional Sales Representative (PSR).pptx
Unit-IV; Professional Sales Representative (PSR).pptx
 
SOC 101 Demonstration of Learning Presentation
SOC 101 Demonstration of Learning PresentationSOC 101 Demonstration of Learning Presentation
SOC 101 Demonstration of Learning Presentation
 
Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdf
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptx
 
Vishram Singh - Textbook of Anatomy Upper Limb and Thorax.. Volume 1 (1).pdf
Vishram Singh - Textbook of Anatomy  Upper Limb and Thorax.. Volume 1 (1).pdfVishram Singh - Textbook of Anatomy  Upper Limb and Thorax.. Volume 1 (1).pdf
Vishram Singh - Textbook of Anatomy Upper Limb and Thorax.. Volume 1 (1).pdf
 

층류 익형의 설계 최적화

  • 1. Design Optimization of Natural Laminar Airfoil 지도 교수 조창열 연구ㆍ발표자 김근우, 김동춘, 김현준 2008. 12. 12. (Fri)
  • 2. Table of Contents Objective Research Techniques Validation of Flow Solver Optimization Framework Formulation of Optimization Problem Design Optimization Results Conclusion
  • 3. 1. Objective Research Objective ○ Design Optimization of 2-D Natural Laminar Airfoil 5 Reasons to Optimize ○ Needs Long Endurance Performance ○ Needs High Lift Coefficient ○ Low Reynolds No.-Transitional Flow Flight ○ Test and Validate CFD Code ○ Establish Optimization Framework
  • 4. 2. Research Techniques (1) CFD Analysis of Low Reynolds No. Transitional Flow ○ Use k-ω SST TRANSITIONAL MODEL ○ Use FLUENT for Flexibility and Reliability Aerodynamic Design Optimization of Airfoils ○ Setup of Design Framework ○ Validation of CFD Analysis ○ Formulation of Optimization Problem ○ Design Optimization
  • 5. 2. Research Techniques (2) Optimization Techniques ○ Optimization Algorithms : GBOM, MMFD ○ Numerical Optimization Code : DOT ○ Mathematical Formulation of Function -> Use Taylor Series Expansion Network-Distributed Computation ○ Use Network-Distributed Computation ○ TCP/IP Network Environment -> O/S Independent For Optimization
  • 6. 2. Research Techniques (3) Airfoil Shape Design Method ○ Use NURBS Shape Function -> Excellent in Local Control of Shape ○ Use CATIA for Shape Export -> IGES, STEP, STL, 3DXML…. .NET Framework-Based Programming Model ○ Easy and Powerful Rapid Programming Model ○ O/S Independent, Can Be Used in Handheld Devices ○ Ensure Portability for Various Programming Language
  • 7. 3. Validation of Flow Solver (1) Testing Low Reynolds No. Transitional Flow ○ Key Features of Design -> Low Reynolds No. Flow Includes Transition -> Needs High Lift Coefficient -> Used for High Aspect Ratio Wing ○ NACA 653-018 Airfoil ○ Low Reynolds. No Flow Analysis ○ RANS+LRN K-ω Model ○ Boundary Layer Clustered Grid System ○ 65 X 370 Cells Grid System of NACA 653-018
  • 8. 3. Validation of Flow Solver (2) Simulating Separation Bubble ○ K-ω SST Transitional Model Simulates Separation Bubble Well
  • 9. 3. Validation of Flow Solver (3) Testing Low Reynolds No. Transitional Flow ○ Rec = 3.0 X 106 / Chord Length = 90 in. ○ Pressure-Based Solver / K-ω SST Transitional Model ○ Turbulent Intensity / Length Scale -> NASA Langley Low Turbulence Wind Tunnel
  • 10. 4. Optimization Framework(1) Components of Optimization Framework ○ Easy, Flexible, Reliable and Robust Design Optimization Framework
  • 11. 4. Optimization Framework(2) Optimization Framework Workflow
  • 12. 5. Formulation of Problem(1) Design Condition ○ Angle of Attack : 4.2˚ / REC = 1.56 X 106 ○ Minimum Lift Coefficient : CL = 1.28 (Cambered Airfoil) Design Problem ○ Initial Airfoil Design : NACA0018 ○ Objective Function -> Minimize Drag Coefficient (Symmetric Airfoil) -> Maximize Endurance Parameter (Cambered Airfoil) ○ Constraints -> Subject to CL(X) > 1.28 (Cambered Airfoil) A(X) = A0 (Area of Airfoil)
  • 13. 5. Formulation of Problem(2) NURBS Shape Function ○ Excellent in Local Shape Modification, More Smooth Curve ○ Reduce Design Variable -> Reduce Computational Cost ○ Use 4th Order Blending Function / Use 10 Control Points 4 3 2 1 5 9 6 8 7 10
  • 14. 5. Formulation of Problem(2) Optimization Algorithm ○ Gradient Based Optimization Method (GBOM) Gradient-Based Optimization Method can be easily programmed and useful if design space is not distorted. -> Optimizer does not know what kind of problem it is solving. -> Before optimization process starts, it is necessary to check if design space is distorted or not. ○ Method of Modified Feasible Direction Search (MMFD) Method of Modified Feasible Direction needs two stage of optimization. -> Finding search direction to find feasible region in design space. -> One-dimensional search determines how design variable can be far from the initial design.
  • 15. 6. Design Optimization Results (1) Symmetric Airfoil Optimization (Drag Minimization) ○ Transition position moved towards trailing edge. ○ Delaying transition can reduce drag. ○ That is, drag could be reduced by maintain more laminar flow region.
  • 16. 6. Design Optimization Results (2) Cambered Airfoil Design (Endurance Param. Maximization) ○ Area of pressure coefficient is wider than initial design. Cl is increased. ○ Drag coefficient increased too. But optimizer limits increasing of drag coefficient effectively.
  • 17. 6. Design Optimization Results (3) Cambered Airfoil Design (Endurance Param. Maximization)
  • 18. 7. Conclusion ○ In a view point of speed of optimization, approximate concepts for numerical optimization is competitive method than other algorithm like RSM, GA, etc... ○ Reasonable design results we can get with -> Drag Minimized for Symmetric Airfoil -> Endurance Parameter Maximized for Cambered Airfoil ○ By using NURBS for shape design, we could reduce design variables and calculation cost. ○ By using LRN K-ω SST Transitional Model, low reynolds no. flow field and transitional phenomena simulate well. But flow filed includes transition, there may be separation bubble near the wall. But Fluent doesn’t predict this phenomenon sufficiently. Fluctuation of solution delays finishing calculation. ○ Codes that supports automation API(application programming interface) or internal script can be adopted for this framework.
  • 19. Thanks for Listening < Question & Answer Time >