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research article

Continuation Multilevel Monte Carlo Evolutionary Algorithm for Robust Aerodynamic Shape Design

Pisaroni, Michele  
•
Nobile, Fabio  
•
Leyland, Pénélope  
2019
Journal of Aircraft

The majority of problems in aircraft production and operation require decisions made in the presence of uncertainty. For this reason, aerodynamic designs obtained with traditional deterministic optimization techniques seeking only optimality in a specific set of conditions may have very poor off-design performances or may even be unreliable. In this work, a novel approach for robust and reliability-based design optimization of aerodynamic shapes based on the combination of single- and multi-objective evolutionary algorithms and a continuation multilevel Monte Carlo methodology is presented, to compute objective functions and constraints that involve statistical moments or statistical quantities, such as quantiles, also called value at risk and conditional value at risk, without relying on derivatives and meta-models. Detailed numerical studies are presented for the RAE 2822 transonic airfoil design affected by geometrical and operational uncertainties.

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Type
research article
DOI
10.2514/1.C035054
Author(s)
Pisaroni, Michele  
Nobile, Fabio  
Leyland, Pénélope  
Date Issued

2019

Published in
Journal of Aircraft
Volume

56

Issue

2

Start page

771

End page

786

Subjects

Multi Level Monte Carlo

•

Uncertainty Quantifcation

•

Aerodynamic Design

•

Robust Design Optimization

•

Evolutionary Algorithms.

URL

Mathicse Report 06.2018

https://mathicse.epfl.ch/files/content/sites/mathicse/files/Mathicse%20Report%202018/Report%2006.2018_MP_FN_PL.pdf
Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
CSQI  
RelationURL/DOI

IsNewVersionOf

https://infoscience.epfl.ch/record/263570
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/146003
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