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Nov 11, 2021 -
Data for: Evaporation driven by conductive heat transport
Fixed Field Text Data - 720.6 KB -
MD5: 34b344276ce3d942119aa0f59569840e
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Nov 11, 2021 -
Data for: Evaporation driven by conductive heat transport
Fixed Field Text Data - 862.0 KB -
MD5: 089570152be9460d60f2f941666d9850
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Nov 11, 2021 -
Data for: Evaporation driven by conductive heat transport
Fixed Field Text Data - 612.8 KB -
MD5: 8fd4762d2e9e550c1d5b371b05761412
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Nov 11, 2021 -
Data for: Evaporation driven by conductive heat transport
Fixed Field Text Data - 635.3 KB -
MD5: b4e1f26fead492fbc6c91faf6b0e2fbd
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Nov 11, 2021 -
Data for: Evaporation driven by conductive heat transport
Fixed Field Text Data - 617.4 KB -
MD5: c68078d98039a0af87f30724d6b911ac
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Nov 11, 2021 -
Data for: Evaporation driven by conductive heat transport
Fixed Field Text Data - 651.3 KB -
MD5: 96bea6146cf7a5b3995e698dd7565bc2
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Nov 11, 2021 -
Data for: Evaporation driven by conductive heat transport
Fixed Field Text Data - 722.7 KB -
MD5: d6eb5c55baf6b254f2662b4807dbcd5d
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Nov 11, 2021 -
Data for: Evaporation driven by conductive heat transport
Fixed Field Text Data - 860.5 KB -
MD5: 5f164ba86abacbb47a55e7da11ccf03f
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Nov 5, 2021Collaborative Research Center Transregio 75 (SFB-TRR 75)
Droplets under gradients of temperature and velocity by atomistic simulation |
Nov 2, 2021 - Code for effective heat conductivity in thin porous media
Scholz, Lena; Bringedal, Carina, 2021, "Code for effective heat conductivity in thin porous media", https://doi.org/10.18419/DARUS-2026, DaRUS, V2
This code can be used to determine the effective heat conductivity of a thin periodic porous medium by solving a two- or three-dimensional local cell problem on pore scale using the software Netgen/NGSolve. The pore geometry of the representative cell and the boundary conditions on top and bottom can be set by the user. The same holds for the heat... |