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Détail de l'auteur
Auteur Atsuki Komiya
Documents disponibles écrits par cet auteur
Affiner la rechercheInfrared radiative properties of thin polyethylene coating pigmented with titanium dioxide particles / Mehdi Baneshi in Journal of heat transfer, Vol. 132 N° 2 (n° spécial) (Fevrier 2010)
[article]
in Journal of heat transfer > Vol. 132 N° 2 (n° spécial) (Fevrier 2010) . - pp. [023306-1/12]
Titre : Infrared radiative properties of thin polyethylene coating pigmented with titanium dioxide particles Type de document : texte imprimé Auteurs : Mehdi Baneshi, Auteur ; Shigenao Maruyama, Auteur ; Atsuki Komiya, Auteur Article en page(s) : pp. [023306-1/12] Note générale : Physique Langues : Anglais (eng) Mots-clés : Far field approximation Near field approximation Pigmented coating Titanium dioxide Index. décimale : 536 Chaleur. Thermodynamique Résumé : The infrared (IR) radiative properties of TiO2 pigment particles must be known to perform thermal analysis of a TiO2 pigmented coating. Resins generally used in making pigmented coatings are absorbing at IR wavelengths, which means that the conventional Mie solution (MS) may not be adequate in this domain. There are two approaches to evaluating radiative properties in an absorbing medium: far field approximation (FFA) and near field approximation (NFA). In this study, after reviewing these two approaches, we evaluated the radiative properties of TiO2 particles in polyethylene resin as an absorbing matrix in the wavelength range of 1.7–15 µm based on the MS, FFA, and NFA. We then calculated the effective scattering and absorption coefficients for different models. To investigate the effect of the particle size and volume concentration on the transmittance of IR wavelengths, we made a nongray radiative heat transfer in an anisotropic scattering monodisperse pigmented layer, with independent scattering using the radiation element method by the ray emission model. The results showed that all three approaches predicted similar results in the particle size domain and volume fraction range utilized in pigmented coatings.
DEWEY : 536 ISSN : 0022-1481 En ligne : http://asmedl.aip.org/vsearch/servlet/VerityServlet?KEY=JHTRAO&ONLINE=YES&smode= [...] [article] Infrared radiative properties of thin polyethylene coating pigmented with titanium dioxide particles [texte imprimé] / Mehdi Baneshi, Auteur ; Shigenao Maruyama, Auteur ; Atsuki Komiya, Auteur . - pp. [023306-1/12].
Physique
Langues : Anglais (eng)
in Journal of heat transfer > Vol. 132 N° 2 (n° spécial) (Fevrier 2010) . - pp. [023306-1/12]
Mots-clés : Far field approximation Near field approximation Pigmented coating Titanium dioxide Index. décimale : 536 Chaleur. Thermodynamique Résumé : The infrared (IR) radiative properties of TiO2 pigment particles must be known to perform thermal analysis of a TiO2 pigmented coating. Resins generally used in making pigmented coatings are absorbing at IR wavelengths, which means that the conventional Mie solution (MS) may not be adequate in this domain. There are two approaches to evaluating radiative properties in an absorbing medium: far field approximation (FFA) and near field approximation (NFA). In this study, after reviewing these two approaches, we evaluated the radiative properties of TiO2 particles in polyethylene resin as an absorbing matrix in the wavelength range of 1.7–15 µm based on the MS, FFA, and NFA. We then calculated the effective scattering and absorption coefficients for different models. To investigate the effect of the particle size and volume concentration on the transmittance of IR wavelengths, we made a nongray radiative heat transfer in an anisotropic scattering monodisperse pigmented layer, with independent scattering using the radiation element method by the ray emission model. The results showed that all three approaches predicted similar results in the particle size domain and volume fraction range utilized in pigmented coatings.
DEWEY : 536 ISSN : 0022-1481 En ligne : http://asmedl.aip.org/vsearch/servlet/VerityServlet?KEY=JHTRAO&ONLINE=YES&smode= [...]