Development and Application of a Flexible and Efficient Environment for Aerodynamic Shape Optimisation
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- Type
- article
- Published
- 2006-10-04
- Cited by
- 15
- References
- 32
- OpenAlex
- https://openalex.org/W107158165
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:44192694
Keywords
Aerodynamics, Solver, Flexibility (engineering), Reynolds-averaged Navier–Stokes equations, Context (archaeology)
References
- Evaluation of Different Optimization Strategies for the Design of a High-Lift Flap Device
- Functional stability analysis of numerical algorithms
- Multi Objective Constrained Optimization and High Lift Device Applications
- MEGAFLOW - A Numerical Flow Simulation System
- Efficiency Improvements of RANS-Based Analysis and Optimization using Implicit and Adjoint Methods on Unstructured Grids
- MEGAFLOW - A Numerical Flow Simulation Tool For Transport Aircraft Design
- Numerical optimization techniques for engineering design
- The Parametric Grid Generation System MegaCads.
- Acceleration of Aerodynamic Optimization Based on RANS-Equations by Using Semi-Structured Grids
- Ongoing Activities in Shape Optimization Within The German Project MEGADESIGN
- 2D and 3D aerodynamic shape optimisation using the adjoint approach
- Airbus, ONERA, and DLR Results from the Second AIAA Drag Prediction Workshop
- The MEGAFLOW project
- NETGEN An advancing front 2D/3D-mesh generator based on abstract rules
- Drag Prediction of Engine -Airframe Interference Effects Using Unstructured Navier -Stokes Calculations
- Optimum Aerodynamic Design Using the Navier–Stokes Equations
- Comparison of eddy viscosity-transport turbulence models for three-dimensional, shock-separated flowfields
- Validation of Numerical Optimization of High-Lift Multi-Element Airfoils based on Navier-Stokes-Equations
- Discrete Adjoint-Based Approach for Optimization Problems on Three-Dimensional Unstructured Meshes
- A Simplex Method for Function Minimization
Cited by
- Optimization of an airfoil polar in transonic RANS flow using an adjoint gradient-based approach
- Efficient polar optimization of transport aircraft in transonic RANS flow using adjoint gradient based approach
- Aerodynamic Shape Optimization Using the Discrete Adjoint of the Navier-Stokes Equations: Applications towards Complex 3D Configurations
- Numerical Aerodynamic Optimisation of 3D High-Lift Configurations
- Applications of a discrete viscous adjoint method for aerodynamic shape optimisation of 3D configurations
- Drag Minimization Based on the Navier–Stokes Equations Using a Newton–Krylov Approach
- Numerical sensitivity analysis for aerodynamic optimization: A survey of approaches
- Efficient and robust algorithms for solution of the adjoint compressible Navier–Stokes equations with applications
- A Numerical Methodology for Aerodynamic Shape Optimization in Turbulent Flow Enabling Large Geometric Variation
- The influence of regional tourism economy development on carbon neutrality for environmental protection using improved recurrent neural network
- Efficient Algorithms for Solution of the Adjoint Compressible Navier-Stokes Equations with Applications
- Aerodynamic Optimization for Cruise and High-Lift Configurations
- Comparison of Optimizer-Based and Flow Solver-Based Trimming in the Context of High-Fidelity Aerodynamic Optimization
- Adjoint Algorithms for the Optimization of 3d Turbulent Configurations
- EcientAlgorithms forSolutionoftheAdjointCompressible Navier-StokesEquationswithApplications
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