Status: Bibliographieeintrag
Standort: ---
Exemplare:
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| Online-Ressource |
Verfasst von: | Haussener, Sophia [VerfasserIn]  |
| Gergely, Mathias [VerfasserIn]  |
Titel: | Determination of the macroscopic optical properties of snow based on exact morphology and direct pore-level heat transfer modeling |
Verf.angabe: | Sophia Haussener, Mathias Gergely, Martin Schneebeli, Aldo Steinfeld |
E-Jahr: | 2012 |
Jahr: | 27 July 2012 |
Umfang: | 20 S. |
Fussnoten: | Gesehen am 16.10.2018 |
Titel Quelle: | Enthalten in: Journal of geophysical research. Earth surface |
Ort Quelle: | Hoboken, NJ : Wiley, 2013 |
Jahr Quelle: | 2012 |
Band/Heft Quelle: | 117(2012), F3, Artikel-ID F03009 |
ISSN Quelle: | 2169-9011 |
Abstract: | A multiscale methodology for the determination of the macroscopic optical properties of snow is presented. It consists of solving the coupled volume-averaged radiative transfer equations for two semi-transparent phases - ice and air - by Monte Carlo ray tracing in an infinite slab via direct pore-level simulations on the exact 3D microstructure obtained by computed tomography. The overall reflectance and transmittance are computed for slabs of five characteristic snow types subjected to collimated and diffuse incident radiative flux for wavelengths 0.3-3 μm. The effect of simplifying the snow microstructure and/or the radiative transfer model is elucidated by comparing our results to (i) a homogenized radiation model and considering a particulate medium made of optical equivalent grain size spheres (DISORT), or (ii) a multiphase radiation model considering a packed bed of identical overlapping semi-transparent spheres. The calculations are experimentally validated by transmittance measurements. Significant differences in the macroscopic optical properties are observed when simplifying the snow morphology and the heat transfer model (i.e., homogenized versus multiphase). The proposed approach allows - in addition to determine macroscopic optical properties based on the exact morphology and obtained by advanced heat transfer model - for detailed understanding of radiative heat transfer in snow layers at the pore-scale level. |
DOI: | doi:10.1029/2012JF002332 |
URL: | Bitte beachten Sie: Dies ist ein Bibliographieeintrag. Ein Volltextzugriff für Mitglieder der Universität besteht hier nur, falls für die entsprechende Zeitschrift/den entsprechenden Sammelband ein Abonnement besteht oder es sich um einen OpenAccess-Titel handelt.
Volltext: http://dx.doi.org/10.1029/2012JF002332 |
| Volltext: https://agupubs.onlinelibrary.wiley.com/doi/abs/10.1029/2012JF002332 |
| DOI: https://doi.org/10.1029/2012JF002332 |
Datenträger: | Online-Ressource |
Sprache: | eng |
Sach-SW: | albedo |
| direct pore-level simulations |
| morphology |
| radiation |
| reflectance |
| snow |
K10plus-PPN: | 1581977980 |
Verknüpfungen: | → Zeitschrift |
Determination of the macroscopic optical properties of snow based on exact morphology and direct pore-level heat transfer modeling / Haussener, Sophia [VerfasserIn]; 27 July 2012 (Online-Ressource)
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