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ISSN Печать: 2151-4798
ISSN Онлайн: 2151-562X
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THERMAL RADIATION PROPERTIES OF HIGHLY POROUS CELLULAR FOAMS
Краткое описание
An overview of the present-day theoretical analytical and computational models developed to study infrared radiative properties of various highly porous foam materials is presented. Both traditional and novel physical models are discussed in some detail. These models enable the identification and analysis of spectral radiative properties of different highly porous foam materials. Several practical examples of various materials such as polymeric closed-cell foam insulation, metallic, carbon, and ceramic open-cell foam are considered, showing recent advances and identifying remaining challenges.
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Randrianalisoa Jaona, Haussener Sophia, Baillis Dominique, Lipiński Wojciech, Radiative characterization of random fibrous media with long cylindrical fibers: Comparison of single- and multi-RTE approaches, Journal of Quantitative Spectroscopy and Radiative Transfer, 202, 2017. Crossref
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Li Yang, Xia Xin-Lin, Ai Qing, Sun Chuang, Tan He-Ping, Pore-level determination of spectral reflection behaviors of high-porosity metal foam sheets, Infrared Physics & Technology, 89, 2018. Crossref
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Li Yang, Xia Xin-Lin, Sun Chuang, Zhang Shun-De, Tan He-Ping, Volumetric radiative properties of irregular open-cell foams made from semitransparent absorbing-scattering media, Journal of Quantitative Spectroscopy and Radiative Transfer, 224, 2019. Crossref
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Li Yang, Xia Xin-Lin, Sun Chuang, Wang Jing, Tan He-Ping, Tomography-based radiative transfer analysis of an open-cell foam made of semitransparent alumina ceramics, Solar Energy Materials and Solar Cells, 188, 2018. Crossref
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Li Yang, Xia Xin-Lin, Sun Chuang, Ai Qing, Tan He-Ping, Radiative characteristics of Voronoi open-cell foams made from semitransparent media, International Journal of Heat and Mass Transfer, 133, 2019. Crossref
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Blazejczyk Aurelia, Jastrzebski Cezariusz, Wierzbicki Michał, Change in Conductive–Radiative Heat Transfer Mechanism Forced by Graphite Microfiller in Expanded Polystyrene Thermal Insulation—Experimental and Simulated Investigations, Materials, 13, 11, 2020. Crossref
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Dombrovsky Leonid A., Kokhanovsky Alexander A., Solar Heating of the Cryosphere: Snow and Ice Sheets, in Springer Series in Light Scattering, 2021. Crossref
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Low Z.K., Blal N., Naouar N., Baillis D., Influence of boundary conditions on computation of the effective thermal conductivity of foams, International Journal of Heat and Mass Transfer, 155, 2020. Crossref
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Rivera-Salinas Jorge-Enrique, Gregorio-Jáuregui Karla-Monzerratt, Fonseca-Florido Heidi-Andrea, Ávila-Orta Carlos-Alberto, Ramírez-Vargas Eduardo, Romero-Serrano José-Antonio, Cruz-Ramírez Alejandro, Gutierréz-Pérez Víctor-Hugo, Olvera-Vazquez Seydy-Lizbeth, Rosales-Marines Lucero, Numerical Study Using Microstructure Based Finite Element Modeling of the Onset of Convective Heat Transfer in Closed-Cell Polymeric Foam, Polymers, 13, 11, 2021. Crossref
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Li Jia-Qi, Chen Xue, Sun Chuang, Xia Xin-Lin, Effect analysis of edge layers on volumetric radiative properties of nickel foams, International Journal of Thermal Sciences, 176, 2022. Crossref
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Li Jia-Qi, Xia Xin-Lin, Sun Chuang, Chen Xue, Prediction of high-temperature infrared radiative properties of nickel foam ligaments, International Journal of Thermal Sciences, 184, 2023. Crossref