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Building a turbulence-transport workflow incorporating uncertainty quantification for predicting core profiles in a tokamak plasma

MPS-Authors
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Coster,  D. P.
Tokamak Theory (TOK), Max Planck Institute for Plasma Physics, Max Planck Society;

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Fischer,  R.
Plasma Edge and Wall (E2M), Max Planck Institute for Plasma Physics, Max Planck Society;

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Hoenen,  O.
Numerical Methods in Plasma Physics (NMPP), Max Planck Institute for Plasma Physics, Max Planck Society;

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Lakhlili,  J.
Numerical Methods in Plasma Physics (NMPP), Max Planck Institute for Plasma Physics, Max Planck Society;

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Luk,  O. O.
Numerical Methods in Plasma Physics (NMPP), Max Planck Institute for Plasma Physics, Max Planck Society;

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Preuss,  R.
Numerical Methods in Plasma Physics (NMPP), Max Planck Institute for Plasma Physics, Max Planck Society;

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Scott,  B. D.
Numerical Methods in Plasma Physics (NMPP), Max Planck Institute for Plasma Physics, Max Planck Society;

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Toussaint,  U. von
Numerical Methods in Plasma Physics (NMPP), Max Planck Institute for Plasma Physics, Max Planck Society;

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Coster, D. P., Fischer, R., Hoenen, O., Lakhlili, J., Luk, O. O., Preuss, R., et al. (2021). Building a turbulence-transport workflow incorporating uncertainty quantification for predicting core profiles in a tokamak plasma. Nuclear Fusion, 61: 126068. doi:10.1088/1741-4326/ac359f.


Cite as: https://hdl.handle.net/21.11116/0000-0009-8DB7-A
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