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Interpreting ion heat transport in Wendelstein 7-X experiments using an empirical transport model to find routes to optimum performance plasmas

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Beurskens,  M. N. A.       
Stellarator Heating and Optimisation (E3), Max Planck Institute for Plasma Physics, Max Planck Society;

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Bozhenkov,  S.       
Stellarator Heating and Optimisation (E3), Max Planck Institute for Plasma Physics, Max Planck Society;

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Ford,  O.       
Stellarator Heating and Optimisation (E3), Max Planck Institute for Plasma Physics, Max Planck Society;

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Wappl,  M.       
Stellarator Heating and Optimisation (E3), Max Planck Institute for Plasma Physics, Max Planck Society;

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Smith,  H.
Stellarator Theory (ST), Max Planck Institute for Plasma Physics, Max Planck Society;

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Turkin,  Y.       
Stellarator Theory (ST), Max Planck Institute for Plasma Physics, Max Planck Society;

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Fuchert,  G.       
Stellarator Heating and Optimisation (E3), Max Planck Institute for Plasma Physics, Max Planck Society;

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Langenberg,  A.       
Stellarator Heating and Optimisation (E3), Max Planck Institute for Plasma Physics, Max Planck Society;

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Lazerson,  S.       
Stellarator Heating and Optimisation (E3), Max Planck Institute for Plasma Physics, Max Planck Society;

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Wolf,  R. C.       
Stellarator Heating and Optimisation (E3), Max Planck Institute for Plasma Physics, Max Planck Society;

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Citation

Beurskens, M. N. A., Bozhenkov, S., Ford, O., Wappl, M., Smith, H., Turkin, Y., et al. (2023). Interpreting ion heat transport in Wendelstein 7-X experiments using an empirical transport model to find routes to optimum performance plasmas. Poster presented at 29th IAEA Fusion Energy Conference (FEC 2023), London.


Cite as: https://hdl.handle.net/21.11116/0000-000D-EB72-A
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