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dc.contributor.author
 hal.structure.identifier
BLANCHE, Antoine
693 Laboratoire de Mécanique et Génie Civil [LMGC]
dc.contributor.author
 hal.structure.identifier
RYCKELYNCK, D
1157 Centre des Matériaux [CDM]
dc.contributor.author
 hal.structure.identifier
CHRYSOCHOOS, André
693 Laboratoire de Mécanique et Génie Civil [LMGC]
dc.contributor.author
 hal.structure.identifier
RANC, Nicolas
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
dc.date.accessioned2015
dc.date.available2015
dc.date.issued2015
dc.date.submitted2015
dc.identifier.issn0014-4851
dc.identifier.urihttp://hdl.handle.net/10985/9825
dc.description.abstractInfrared thermography is a useful imaging technique for analyzing the thermomechanical behaviour of materials. It allows, under certain conditions, surface temperature monitoring and, via a diffusion model, estimation of heat sources induced by dissipative and/or thermally coupled deformation mechanisms. However, the noisy and discrete character of thermal data, the regularizing effect of heat diffusion and heat exchanges with the surroundings complicate the passage from temperature to heat source. The aim of this paper is to show that the prior use of reduced-basis projection of thermal data improves the signal-to-noise ratio before estimating the heat source distributions. The reduced basis is generated by proper orthogonal decomposition (POD) of physically-admissible thermal fields. These fields are solutions of ideal diffusion problems related to a set of putative heat sources. preprocessing is applied to different direct methods (finite differences, spectral solution, local least-squares fitting) already used in the past. The gain of this preprocessing is determined using a numerical penalizing benchmark test. The methods are finally compared using data extracted from a dynamic cyclic test on a pure copper specimen.
dc.language.isoen
dc.publisherSociety for Experimental Mechanics
dc.rightsPost-print
dc.subjectInfrared thermography
dc.subjectQuantitive image processing
dc.subjectDissipation fields
dc.subjectThermomechanical couplings
dc.subjectBehavior modeling
dc.subjectProper orthogonal decompsition
dc.titlePOD preprocessing of IR thermal data to assess heat source distributions
dc.identifier.doi10.1007/s11340-014-9858-2
dc.typdocArticle dans une revue avec comité de lecture
dc.localisationCentre de Paris
dc.subject.halSciences de l'ingénieur: Matériaux
dc.subject.halSciences de l'ingénieur: Mécanique
dc.subject.halSciences de l'ingénieur: Mécanique: Mécanique des structures
ensam.audienceInternationale
ensam.page725-739
ensam.journalExperimental Mechanics
ensam.volume55
hal.identifierhal-01178213
hal.version1
hal.submission.permittedupdateMetadata
hal.statusaccept


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