Results 41 to 50 of about 108,499 (193)
Tungsten redistribution patterns in ASDEX Upgrade
In ASDEX Upgrade tungsten is used as a high-Z plasma facing material. Its erosion, migration and subsequent deposition have been studied by analysis of a set of customised marker tiles, which was installed in the divertor and at the central column for ...
Pugno, R. +9 more
core +1 more source
Divertor power deposition and target current asymmetries during type-I ELMS in ASDEX Upgrade and JET [PDF]
Analysis of the type-l ELM power load asymmetries using infra-red thermography and target current measurements is performed ASDEX Upgrade Upper Single Null and JET DOC-L type-I ELMy H-Mode discharges with 'normal' and,reversed' field direction, i.e. with
JET-EFDA Contributors +10 more
core +1 more source
SOLPS-ITER modification for impurity transport modelling in the tokamak pedestal region
Kinetic corrections to SOLPS-ITER fluid equations are made to extend their applicability for description of the neoclassical part of impurity transport to collisionless regimes of the main ions.
V. Korzueva +3 more
doaj +1 more source
Modelling of carbon transport in the outer divertor plasma of ASDEX upgrade
Carbon transport in the ASDEX Upgrade outer divertor plasma is investigated in numerical simulations. The SOLPS5.0 code package is used to model the scrape-off layer plasma in a set of repeated lower-single-null L-mode discharges.
Wischmeier, M. +33 more
core +1 more source
Low frequency sawtooth precursor activity in ASDEX Upgrade [PDF]
This paper describes the precursor activity observed in the ASDEX Upgrade tokamak before sawtooth crashes in various neutral beam heated plasmas, utilizing the soft x-ray diagnostic. In addition to the well-known (m, n) = (1,1) internal kink mode and its
M Maraschek +32 more
core +1 more source
High frequency Alfvén eigenmodes in the ion cyclotron frequency range are actively researched on the ASDEX Upgrade tokamak (AUG). The general properties of this particular mode type are: ( a ) the mode is beam-driven and, if excited, can persist for the ...
R. Ochoukov +16 more
doaj +1 more source
Arc behaviour on different materials in ASDEX Upgrade
Arcs, a source of dust particles and a localized erosion mechanism of the plasma-facing components, are found in all major fusion plasma devices. Measurements of arcs require diagnostics with high temporal and local resolution, which are not available at
V. Rohde, M. Balden, R. Neu
doaj +1 more source
Electron cyclotron resonance heating in ASDEX upgrade: Calculation and experimental authentication of the power deposition profile [PDF]
In this paper we present global and local studies of the ECRH power deposition in ASDEX Upgrade. It is organized as follows. Section 2 briefly describes ASDEX Upgrade and its ECRH system.
Pereverzev, G. +6 more
core
Carbon erosion and a:C-H layer formation at ASDEX Upgrade
During the campaign 2002–2003 a carbon erosion and deposition experiment was performed in the lower divertor of ASDEX Upgrade. A complete divertor cross section with erosion sensitive markers, deposition monitors below the divertor and time resolved ...
Vainonen-Ahlgren, E. +8 more
core +1 more source
We have modelled net and gross erosion of W in low-density l-mode plasmas in the low-field side strike point region of ASDEX Upgrade by ERO and Particle-in-Cell (PIC) simulations.
A. Hakola +9 more
doaj +1 more source

