Coupled CFD Shape Optimization for aerodynamic profiles


Autoria(s): Giraldo Arias, Santiago
Contribuinte(s)

García Ruíz, Manuel Julio

Cobertura

Medellín de: Lat: 06 15 00 N degrees minutes Lat: 6.2500 decimal degrees Long: 075 36 00 W degrees minutes Long: -75.6000 decimal degrees

Data(s)

03/06/2016

2015

03/06/2016

Resumo

The present document deals with the optimization of shape of aerodynamic profiles -- The objective is to reduce the drag coefficient on a given profile without penalising the lift coefficient -- A set of control points defining the geometry are passed and parameterized as a B-Spline curve -- These points are modified automatically by means of CFD analysis -- A given shape is defined by an user and a valid volumetric CFD domain is constructed from this planar data and a set of user-defined parameters -- The construction process involves the usage of 2D and 3D meshing algorithms that were coupled into own- code -- The volume of air surrounding the airfoil and mesh quality are also parametrically defined -- Some standard NACA profiles were used by obtaining first its control points in order to test the algorithm -- Navier-Stokes equations were solved for turbulent, steady-state ow of compressible uids using the k-epsilon model and SIMPLE algorithm -- In order to obtain data for the optimization process an utility to extract drag and lift data from the CFD simulation was added -- After a simulation is run drag and lift data are passed to the optimization process -- A gradient-based method using the steepest descent was implemented in order to define the magnitude and direction of the displacement of each control point -- The control points and other parameters defined as the design variables are iteratively modified in order to achieve an optimum -- Preliminary results on conceptual examples show a decrease in drag and a change in geometry that obeys to aerodynamic behavior principles

Identificador

620.1064CDG516C

http://hdl.handle.net/10784/8545

Idioma(s)

spa

Publicador

Universidad EAFIT

Maestría en Ingeniería

Escuela de Ingeniería

Direitos

info:eu-repo/semantics/openAccess

openAccess

Libre acceso

Palavras-Chave #CFD (Cálculos computacionales de mecánica de fluídos) #OPTIMIZACIÓN MATEMÁTICA #ECUACIONES DE NAVIER - STOKES #DINÁMICA DE FLUÍDOS #AERODINÁMICA #MÉTODO DE ELEMENTOS FINITOS #SIMULACIÓN POR COMPUTADORES #Mathematical optimization #Navier-stokes equations #Fluid dynamics #Aerodynamics #Finite element method #Computer simulation
Tipo

masterThesis

info:eu-repo/semantics/masterThesis

Tesis de Maestría

acceptedVersion