Options
Fluid dynamic optimization of HVAC-components with adjoint methods
Citation Link: https://doi.org/10.15480/882.1631
Publikationstyp
Doctoral Thesis
Publikationsdatum
2018
Sprache
English
Author
Advisor
Referee
Title Granting Institution
Technische Universität Hamburg-Harburg
Place of Title Granting Institution
Hamburg
Examination Date
2018-02-22
This thesis is concerned with the theory and application of continuous adjoint shape and topology optimization for heating, ventilation and air-conditioning components of aircrafts. The focal point is the applicability of adjoint theory to industrial practice, referring to step size computation for the gradient descent, design constraints and a correct computation of the gradient from the sensitivity. The implemented approaches are validated and verified via simulation of proper fluid dynamic test-cases. The arising framework is applied to industrial cases of aircraft components.
Schlagworte
adjoint Navier-Stokes-Fourier equations
sensitivity analysis
shape and topology optimization
computational fluid dynamics
finite volume method
DDC Class
620: Ingenieurwissenschaften
Loading...
Name
Dissertation_Anne_Gerdes_2018.pdf
Size
64 MB
Format
Adobe PDF