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Validating heat balance models for tungsten dust in cold dense plasmas
- Source :
- Plasma Physics and Controlled Fusion, Plasma Physics and Controlled Fusion, IOP Publishing, 2018, 60 (11), ⟨10.1088/1361-6587/aadbcb⟩, Plasma Physics and Controlled Fusion, 60, 115002, Plasma physics and controlled fusion, 60 (2018). doi:10.1088/1361-6587/aadbcb, info:cnr-pdr/source/autori:Vignitchouk, L.; Ratynskaia, S.; Kantor, M.; Tolias, P.; De Angeli, M.; van der Meiden, H.; Vernimmen, J.; Brochard, F.; Shalpegin, A.; Thoren, E.; Banon, J-P/titolo:Validating heat balance models for tungsten dust in cold dense plasmas/doi:10.1088%2F1361-6587%2Faadbcb/rivista:Plasma physics and controlled fusion (Print)/anno:2018/pagina_da:/pagina_a:/intervallo_pagine:/volume:60
- Publication Year :
- 2018
-
Abstract
- International audience; The first comparison of dust radius and surface temperature estimates, obtained from spectroscopic measurements of thermal radiation, with simulations of dust heating and vaporization by the MIGRAINe dust dynamics code is reported. The measurements were performed during controlled tungsten dust injection experiments in the cold and dense plasmas of Pilot-PSI, reproducing ITER divertor conditions. The comparison has allowed us to single out the dominating role of the work function contribution to the dust heating budget. However, in the plasmas of interest, dust was found to enter the strong vaporization regime, in which its temperature is practically insensitive to plasma properties and the various uncertainties in modelling. This makes the dust temperature a poor figure of merit for model validation purposes. On the other hand, simple numerical scalings obtained from orbital-motion-limited estimates were found to be remarkably robust and sufficient to understand the main physics at play in such cold and dense plasmas. Validating heat balance models for tungsten dust in cold dense plasmas 2
- Subjects :
- Materials science
tungsten
Evaporation
chemistry.chemical_element
Astrophysics::Cosmology and Extragalactic Astrophysics
Tungsten
01 natural sciences
010305 fluids & plasmas
orbital-motion-limited
[PHYS.PHYS.PHYS-PLASM-PH]Physics [physics]/Physics [physics]/Plasma Physics [physics.plasm-ph]
0103 physical sciences
Vaporization
Figure of merit
010306 general physics
Astrophysics::Galaxy Astrophysics
Divertor
[SPI.PLASMA]Engineering Sciences [physics]/Plasmas
Plasma
Radius
Condensed Matter Physics
Computational physics
Nuclear Energy and Engineering
chemistry
Thermal radiation
[SPI.OPTI]Engineering Sciences [physics]/Optics / Photonic
Astrophysics::Earth and Planetary Astrophysics
dust
Pilot-PSI
[SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processing
[PHYS.PHYS.PHYS-DATA-AN]Physics [physics]/Physics [physics]/Data Analysis, Statistics and Probability [physics.data-an]
Subjects
Details
- Language :
- English
- ISSN :
- 07413335, 13616587, 02955075, 00295515, and 02811847
- Database :
- OpenAIRE
- Journal :
- Plasma Physics and Controlled Fusion, Plasma Physics and Controlled Fusion, IOP Publishing, 2018, 60 (11), ⟨10.1088/1361-6587/aadbcb⟩, Plasma Physics and Controlled Fusion, 60, 115002, Plasma physics and controlled fusion, 60 (2018). doi:10.1088/1361-6587/aadbcb, info:cnr-pdr/source/autori:Vignitchouk, L.; Ratynskaia, S.; Kantor, M.; Tolias, P.; De Angeli, M.; van der Meiden, H.; Vernimmen, J.; Brochard, F.; Shalpegin, A.; Thoren, E.; Banon, J-P/titolo:Validating heat balance models for tungsten dust in cold dense plasmas/doi:10.1088%2F1361-6587%2Faadbcb/rivista:Plasma physics and controlled fusion (Print)/anno:2018/pagina_da:/pagina_a:/intervallo_pagine:/volume:60
- Accession number :
- edsair.doi.dedup.....a92debcb1cde31f458b038e1669fe050
- Full Text :
- https://doi.org/10.1088/1361-6587/aadbcb