[HTML][HTML] Development of the plasma scenario for EU-DEMO: Status and plans
M Siccinio, JP Graves, R Kembleton, H Lux… - Fusion Engineering and …, 2022 - Elsevier
This paper is part of a series of publications concerning the development of the European
DEMO during the Pre-Concept Design Phase (2014-2020), and also describing the strategy …
DEMO during the Pre-Concept Design Phase (2014-2020), and also describing the strategy …
MHD stability and disruptions in the SPARC tokamak
SPARC is being designed to operate with a normalized beta of that rises linearly with a
change in the plasma current. Massive material injection is planned to reduce the disruption …
change in the plasma current. Massive material injection is planned to reduce the disruption …
Experimental vertical stability studies for ITER performance and design guidance
DA Humphreys, TA Casper, N Eidietis, M Ferrara… - Nuclear …, 2009 - iopscience.iop.org
Operating experimental devices have provided key inputs to the design process for ITER
axisymmetric control. In particular, experiments have quantified controllability and …
axisymmetric control. In particular, experiments have quantified controllability and …
[HTML][HTML] Self-consistent coupling of JOREK and CARIDDI: On the electromagnetic interaction of 3D tokamak plasmas with 3D volumetric conductors
Self-consistent coupling of JOREK and CARIDDI: On the electromagnetic interaction of 3D
tokamak plasmas with 3D volumetric conductors | Physics of Plasmas | AIP Publishing Skip to …
tokamak plasmas with 3D volumetric conductors | Physics of Plasmas | AIP Publishing Skip to …
High performance plasma vertical position control system for upgraded MAST
G Cunningham - Fusion Engineering and Design, 2013 - Elsevier
A plasma vertical control system able to control high elongation (∼ 2.5) plasmas at
moderate internal inductance (∼ 0.9) is analysed, including both active and passive …
moderate internal inductance (∼ 0.9) is analysed, including both active and passive …
Improved plasma vertical position control on TCV using model-based optimized controller synthesis
F Pesamosca, F Felici, S Coda, C Galperti… - Fusion Science and …, 2022 - Taylor & Francis
Elongated plasmas lead to improved performance in tokamaks but make the plasma prone
to vertical instability, which requires active feedback control, a critical issue for future fusion …
to vertical instability, which requires active feedback control, a critical issue for future fusion …
Vertical control of DIII-D discharges with strong negative triangularity
AO Nelson, A Hyatt, W Wehner… - Plasma Physics and …, 2023 - iopscience.iop.org
Vertical control of DIII-D discharges with strong negative triangularity - IOPscience Skip to
content IOP Science home Accessibility Help Search Journals Journals list Browse more than …
content IOP Science home Accessibility Help Search Journals Journals list Browse more than …
General dispersion relations for resistive wall modes in tokamaks
VD Pustovitov - Physics of Plasmas, 2023 - pubs.aip.org
The dispersion relation for the resistive wall modes (RWMs) is derived without the use of the
trial function b HF proposed in SW Haney and JP Freidberg [Phys. Fluids B 1, 1637 (1989)] …
trial function b HF proposed in SW Haney and JP Freidberg [Phys. Fluids B 1, 1637 (1989)] …
Physics basis of a fusion development facility utilizing the tokamak approach
VS Chan, RD Stambaugh, AM Garofalo… - Fusion Science and …, 2010 - Taylor & Francis
The objective of the Fusion Development Facility (FDF) under consideration is to carry
forward advanced tokamak physics for optimization of fusion reactors and enable …
forward advanced tokamak physics for optimization of fusion reactors and enable …
Global forces on the COMPASS-U wall during plasma disruptions
VV Yanovskiy, N Isernia, VD Pustovitov… - Nuclear …, 2021 - iopscience.iop.org
First, it is shown that during electromagnetic transients in COMPASS-U the poloidal field
coils must drain sizeably the current from the vessel and, therefore, reduce disruption forces …
coils must drain sizeably the current from the vessel and, therefore, reduce disruption forces …