MONKES: a fast neoclassical code for the evaluation of monoenergetic transport coefficients
MONKES is a new neoclassical code for the evaluation of monoenergetic transport coefficients in stellarators. By means of a convergence study and benchmarks with other codes, it is shown that MONKES is accurate and efficient.
Calvo, I. +4 more
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Optimization of Nonlinear Turbulence in Stellarators
We present new stellarator equilibria that have been optimized for reduced turbulent transport using nonlinear gyrokinetic simulations within the optimization loop.
Buller, Stefan +10 more
core
Electric fields and transport in optimized stellarators [PDF]
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2011.Cataloged from PDF version of thesis.Includes bibliographical references (p.
Landreman, Matthew Joseph
core
First Observation of a Stable Highly Dissipative Divertor Plasma Regime on the Wendelstein 7-X Stellarator [PDF]
Alonso, A. +40 more
core +1 more source
Heat pulse propagation and anomalous electron heat transport measurements on the optimized stellarator W7-X [PDF]
Alcusón, J. +36 more
core +2 more sources
Bootstrap current and parallel ion velocity in imperfectly optimized stellarators
Catto, P., Helander, P.
core +1 more source
An Epidemiological Study of the Food Problem. [PDF]
Greenwood, Thompson CM.
europepmc +1 more source
Reduced turbulent transport in the quasi-isodynamic stellarator configuration CIEMAT-QI4
12 pages, 9 ...
García-Regaña, J. M. +5 more
openaire +2 more sources
On the bootstrap current in stellarators and tokamaks [PDF]
Geiger, J., Helander, P., Maaßberg, H.
core +2 more sources
Electron root optimisation for stellarator reactor designs
In this work, we propose a method of optimising stellarator devices to favour the presence of an electron root solution of the radial electric field. Such a solution can help avoid heavy impurity accumulation, improve neoclassical thermal ion confinement
Beidler, C. D. +3 more
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