Analysis of the neutral fluxes in the divertor region of Wendelstein 7-X under attached and detached conditions using EMC3-EIRENE

This paper analyzes the neutral fluxes in the divertor region of the W7-X standard configuration for different input powers, both under attached and detached conditions. The performed analysis is conducted through EMC3-EIRENE simulations. They show the importance of the horizontal divertor to genera...

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Published inPlasma physics and controlled fusion Vol. 66; no. 1; pp. 15005 - 15014
Main Authors Boeyaert, Dieter, Feng, Yuhe, Frerichs, Heinke, Kremeyer, Thierry, Naujoks, Dirk, Reimold, Felix, Schmitz, Oliver, Winters, Victoria, Bozhenkov, Sergey, Fellinger, Joris, Jakubowski, Marcin, König, Ralf, Krychowiak, Maciej, Perseo, Valeria, Schlisio, Georg, Wenzel, Uwe
Format Journal Article
LanguageEnglish
Published United States IOP Publishing 01.01.2024
IOP Science
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ISSN0741-3335
1361-6587
DOI10.1088/1361-6587/ad0e22

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Abstract This paper analyzes the neutral fluxes in the divertor region of the W7-X standard configuration for different input powers, both under attached and detached conditions. The performed analysis is conducted through EMC3-EIRENE simulations. They show the importance of the horizontal divertor to generate neutrals, and resolve the neutral plugging in the divertor region. Simulations of detached cases show a decrease in the number of generated neutrals compared to the attached simulations, in addition to a higher fraction of the ion flux arriving on the baffles during detachment. As the ionization takes place further inside the plasma during detachment, a larger percentage of the generated neutral particles leave the divertor as neutrals. The leakage in the poloidal and toroidal direction increases, just as the fraction of collected particles at the pumping gap. The fraction of pumped particles increases with a factor two, but stays below one percent. This demonstrates that detachment with the current target geometry, although it improves the power exhaust, is not yet leading to an increased particle exhaust.
AbstractList Abstract This paper analyzes the neutral fluxes in the divertor region of the W7-X standard configuration for different input powers, both under attached and detached conditions. The performed analysis is conducted through EMC3-EIRENE simulations. They show the importance of the horizontal divertor to generate neutrals, and resolve the neutral plugging in the divertor region. Simulations of detached cases show a decrease in the number of generated neutrals compared to the attached simulations, in addition to a higher fraction of the ion flux arriving on the baffles during detachment. As the ionization takes place further inside the plasma during detachment, a larger percentage of the generated neutral particles leave the divertor as neutrals. The leakage in the poloidal and toroidal direction increases, just as the fraction of collected particles at the pumping gap. The fraction of pumped particles increases with a factor two, but stays below one percent. This demonstrates that detachment with the current target geometry, although it improves the power exhaust, is not yet leading to an increased particle exhaust.
This paper analyzes the neutral fluxes in the divertor region of the W7-X standard configuration for different input powers, both under attached and detached conditions. The performed analysis is conducted through EMC3-EIRENE simulations. They show the importance of the horizontal divertor to generate neutrals, and resolve the neutral plugging in the divertor region. Simulations of detached cases show a decrease in the number of generated neutrals compared to the attached simulations, in addition to a higher fraction of the ion flux arriving on the baffles during detachment. As the ionization takes place further inside the plasma during detachment, a larger percentage of the generated neutral particles leave the divertor as neutrals. The leakage in the poloidal and toroidal direction increases, just as the fraction of collected particles at the pumping gap. The fraction of pumped particles increases with a factor two, but stays below one percent. This demonstrates that detachment with the current target geometry, although it improves the power exhaust, is not yet leading to an increased particle exhaust.
Author Schmitz, Oliver
Fellinger, Joris
Perseo, Valeria
Reimold, Felix
Frerichs, Heinke
Winters, Victoria
König, Ralf
Wenzel, Uwe
Bozhenkov, Sergey
Krychowiak, Maciej
Boeyaert, Dieter
Kremeyer, Thierry
Schlisio, Georg
Naujoks, Dirk
Jakubowski, Marcin
Feng, Yuhe
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  givenname: Yuhe
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  surname: Feng
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  organization: Max-Planck-Institut für Plasmaphysik, Teilinstitut Greifswald , Wendelsteinstrasse 1, 17491 Greifswald, Germany
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  surname: Bozhenkov
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  givenname: Marcin
  orcidid: 0000-0002-6557-3497
  surname: Jakubowski
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  organization: Max-Planck-Institut für Plasmaphysik, Teilinstitut Greifswald , Wendelsteinstrasse 1, 17491 Greifswald, Germany
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  surname: Perseo
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  organization: Max-Planck-Institut für Plasmaphysik, Teilinstitut Greifswald , Wendelsteinstrasse 1, 17491 Greifswald, Germany
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  givenname: Georg
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  surname: Schlisio
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  surname: Wenzel
  fullname: Wenzel, Uwe
  organization: Max-Planck-Institut für Plasmaphysik, Teilinstitut Greifswald , Wendelsteinstrasse 1, 17491 Greifswald, Germany
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Snippet This paper analyzes the neutral fluxes in the divertor region of the W7-X standard configuration for different input powers, both under attached and detached...
Abstract This paper analyzes the neutral fluxes in the divertor region of the W7-X standard configuration for different input powers, both under attached and...
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iop
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SubjectTerms divertor
EMC3-EIRENE
neutrals
Physics
plugging
W7-X
Title Analysis of the neutral fluxes in the divertor region of Wendelstein 7-X under attached and detached conditions using EMC3-EIRENE
URI https://iopscience.iop.org/article/10.1088/1361-6587/ad0e22
https://www.osti.gov/servlets/purl/2578727
Volume 66
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