Thermal characterization of complex shape composite materials using Karhunen–Loève decomposition techniques
PALOMO DEL BARRIO, E.
Ikerbasque - Basque Foundation for Science
CIC ENERGIGUNE - Parque Tecnol Alava
< Réduire
Ikerbasque - Basque Foundation for Science
CIC ENERGIGUNE - Parque Tecnol Alava
Langue
en
Article de revue
Ce document a été publié dans
Inverse Problems in Science and Engineering. 2021-07-07p. 1-20
Taylor & Francis
Résumé en anglais
A new method for estimating the thermal properties of composite materials is proposed. It uses a previously developed thermal characterization method that is based on Karhunen–Loève decomposition (KLD) techniques in ...Lire la suite >
A new method for estimating the thermal properties of composite materials is proposed. It uses a previously developed thermal characterization method that is based on Karhunen–Loève decomposition (KLD) techniques in association with infrared thermography experiments or any other kind of experimental device providing dense data in spatial coordinates. The novelty of this work lies in the introduction of two techniques based on two phase-wise defined test functions that extend the previously developed method to cases where the morphology of the composite material is not straightforward. Thanks to the orthogonal properties of KLD, only a few eigenelements are needed for an accurate estimation, which allows for a significant amplification of the signal/noise ratios. Furthermore, the proposed methods represent an attractive combination of parsimony and robustness to noise thanks to spatially uncorrelated noise being entirely reported on states. The effectiveness and accuracy of both techniques are proven with numerical tests.< Réduire
Mots clés en anglais
Thermal characterization
composite materials
infrared thermography
Karhunen–Loève decomposition
singular value decomposition
Origine
Importé de halUnités de recherche