Linear stability of a solid–vapour interface
We investigate a system consisting of a condensed phase in contact with its vapour. We derive similarity solutions for vapour and temperature profiles and calculate the condition for the presence of vapour supersaturation adjacent to the condensed phase. We analyse the linear stability of a solid–va...
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ftciteseerx:oai:CiteSeerX.psu:10.1.1.611.9832 2023-05-15T18:18:11+02:00 Linear stability of a solid–vapour interface W. Style M. Grae Worster The Pennsylvania State University CiteSeerX Archives application/pdf http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.611.9832 http://people.maths.ox.ac.uk/style/potrs4.pdf en eng http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.611.9832 http://people.maths.ox.ac.uk/style/potrs4.pdf Metadata may be used without restrictions as long as the oai identifier remains attached to it. http://people.maths.ox.ac.uk/style/potrs4.pdf vapour deposition frost flowers linear stability text ftciteseerx 2016-01-08T14:33:33Z We investigate a system consisting of a condensed phase in contact with its vapour. We derive similarity solutions for vapour and temperature profiles and calculate the condition for the presence of vapour supersaturation adjacent to the condensed phase. We analyse the linear stability of a solid–vapour interface with varying at-mospheric conditions. The instability is qualitatively similar to the Mullins–Sekerka instability in binary alloys but the results highlight the important parameters for the solid/vapour problem. We derive the neutral stability condition and results are applied to frost flowers, which are small hoar–frost like crystals that grow on sea ice and to physical vapour deposition. The results are applicable to many problems in the wide field of condensed–phase/vapour systems. Text Sea ice Unknown |
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English |
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vapour deposition frost flowers linear stability |
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vapour deposition frost flowers linear stability W. Style M. Grae Worster Linear stability of a solid–vapour interface |
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vapour deposition frost flowers linear stability |
description |
We investigate a system consisting of a condensed phase in contact with its vapour. We derive similarity solutions for vapour and temperature profiles and calculate the condition for the presence of vapour supersaturation adjacent to the condensed phase. We analyse the linear stability of a solid–vapour interface with varying at-mospheric conditions. The instability is qualitatively similar to the Mullins–Sekerka instability in binary alloys but the results highlight the important parameters for the solid/vapour problem. We derive the neutral stability condition and results are applied to frost flowers, which are small hoar–frost like crystals that grow on sea ice and to physical vapour deposition. The results are applicable to many problems in the wide field of condensed–phase/vapour systems. |
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The Pennsylvania State University CiteSeerX Archives |
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Text |
author |
W. Style M. Grae Worster |
author_facet |
W. Style M. Grae Worster |
author_sort |
W. Style |
title |
Linear stability of a solid–vapour interface |
title_short |
Linear stability of a solid–vapour interface |
title_full |
Linear stability of a solid–vapour interface |
title_fullStr |
Linear stability of a solid–vapour interface |
title_full_unstemmed |
Linear stability of a solid–vapour interface |
title_sort |
linear stability of a solid–vapour interface |
url |
http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.611.9832 http://people.maths.ox.ac.uk/style/potrs4.pdf |
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Sea ice |
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Sea ice |
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http://people.maths.ox.ac.uk/style/potrs4.pdf |
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http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.611.9832 http://people.maths.ox.ac.uk/style/potrs4.pdf |
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Metadata may be used without restrictions as long as the oai identifier remains attached to it. |
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1766194644982431744 |