Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/11422/8532
Especie: Artigo
Título : Experimental Identification of Thermophysical Properties in Heterogeneous Materials with Integral Transformation of Temperature Measurements from Infrared Thermography
Autor(es)/Inventor(es): Knupp, Diego Campos
Naveira-Cotta, Carolina Palma
Orlande, Helcio Rangel Barreto
Cotta, Renato Machado
Resumen: Indisponível.
Resumen: This work deals with the experimental estimation of spatially variable thermal conductivity and diffusivity in heterogeneous media, with temperature measurements obtained via infrared thermography being used in the inverse analysis. The direct problem solution for a one-dimensional heat conduction experiment is analytically obtained via integral transforms, and the related eigenvalue problem is solved by the generalized integral transform technique. The inverse problem is handled by Bayesian inference through a Markov chain Monte Carlo algorithm. The functional representation and estimation is based on the eigenfunction expansion of the thermal conductivity and diffusivity themselves, and the unknown parameters become the corresponding expansion coefficients. The inverse analysis is performed on the transformed experimental temperature field instead of employing the actual local temperature measurements, thus promoting a significant data reduction through the integral transformation of the experimental measurements. A demonstration experiment is built involving partially heated thin plates made of bakelite and polystyrene, including a variable thickness plate to simulate spatially variable thermophysical properties.
Materia: Heterogeneousmedia
Inverse problem
Bayesian inference
Markov chain Monte Carlo method
Infrared thermography
Integral transforms
Materia CNPq: CNPQ::CIENCIAS EXATAS E DA TERRA::FISICA::AREAS CLASSICAS DE FENOMENOLOGIA E SUAS APLICACOES::DINAMICA DOS FLUIDOS
Unidade de producción: Núcleo Interdisciplinar de Dinâmica dos Fluidos
Editor: Taylor & Francis
Es parte de: Experimental Heat Transfer
Volumen: 26
Número: 1
Fecha de publicación: 16-ene-2013
DOI: 10.1080/08916152.2011.631079
País de edición : Brasil
Idioma de publicación: eng
Tipo de acceso : Acesso Aberto
ISSN: 0891-6152
Aparece en las colecciones: Engenharias

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