MAESTRO couples surrogate optimization transport modeling with external solvers to enable efficient full-physics steady-state plasma predictions in fusion devices.
Nuclear Fusion64(5), 056003 (2024)
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Core-edge integrated modeling finds argon-seeded ARC H-modes achieve 750-1000 MW fusion power with detached divertors below 2 eV, outperforming neon seeding which yields 600-850 MW and weaker H-mode access.
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Accelerating integrated modeling with surrogate-based optimization: the MAESTRO workflow
MAESTRO couples surrogate optimization transport modeling with external solvers to enable efficient full-physics steady-state plasma predictions in fusion devices.
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Core-edge integrated modeling of ARC: on the effect of impurity transport and detachment conditions
Core-edge integrated modeling finds argon-seeded ARC H-modes achieve 750-1000 MW fusion power with detached divertors below 2 eV, outperforming neon seeding which yields 600-850 MW and weaker H-mode access.