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The separatrix operational space of next-step fusion experiments: From ASDEX Upgrade data to SPARC scenarios

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arxiv 2407.13539 v1 pith:BTRJLTHZ submitted 2024-07-18 physics.plasm-ph

classification physics.plasm-ph
keywords seposasdexoperationalseparatrixupgradeelm-freenormalizedspace
verification ladder T0 review T1 audit T2 compute T3 formal

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Fusion power plants require ELM-free, detached operation to prevent divertor damage and erosion. The separatrix operational space (SepOS) is proposed as a tool for identifying access to the type-I ELM-free quasi-continuous exhaust regime. In this work, we recast the SepOS framework using simple parameters and present dedicated ASDEX Upgrade discharges to demonstrate how to interpret its results. Analyzing an extended ASDEX Upgrade database consisting of 6688 individual measurements, we show that SepOS accurately describes how the H-mode boundary varies with plasma current and magnetic field strength. We then introduce a normalized SepOS framework and LH minimum scaling and show that normalized boundaries across multiple machines are nearly identical, suggesting that the normalized SepOS can be used to translate results between different machines. The LH minimum density predicted by SepOS is found to closely match an experimentally determined multi-machine scaling, which provides a further indirect validation of SepOS across multiple devices. Finally, we demonstrate how SepOS can be used predictively, identifying a viable QCE operational point for SPARC, at a separatrix density of 4e20/m3, a separatrix temperature of 156eV and an alpha-t of 0.7 - a value solidly within the QCE operational space on ASDEX Upgrade. This demonstrates how SepOS provides a concise, intuitive method for scoping ELM-free operation on next-step devices.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Empirical impact of near-separatrix plasma and neutral transport on the pedestal in the transition between EDA and ELMy H-modes on Alcator C-Mod

    physics.plasm-ph 2026-03 conditional novelty 6.0 of 10

    An added resistive-ballooning transport channel lets the Saarelma-Connor model reproduce EDA H-mode pedestal densities on C-Mod up to 3×10^20 m^-3 and lowers predicted SPARC pedestal density by ~20%.

  2. Determination of confinement regime boundaries via separatrix parameters on Alcator C-Mod based on a model for interchange-drift-Alfv\'en turbulence

    physics.plasm-ph 2024-12 conditional novelty 6.0 of 10

    The SepOS separatrix turbulence model, previously tested only on ASDEX Upgrade, is validated on Alcator C-Mod and extended to I-mode, ELMy-EDA transitions, and SPARC operating projections.

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