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To take into account these effects in the stability analysis self-consistently, the procedure of JET equilibrium reconstruction was updated to include the profiles of ion temperature and toroidal rotation, which are determined based on the measurement data in experiments.
Abstract The temporal-spatial structures of plasma flows and turbulence around tearing revellle islands are presented. Interestingly, a new evolution process, characterized by two fast reconnection phases, is also discovered for an intermediate distance between the two resonant surfaces due to the evolution of current ribbons associated with the secondary island.
As compared to the previous model Breizman Nucl. The reason for the discrepancy between ab initio and the MS results is rationalized by the analysis of the fully relaxed atomic configurations. This scheme preserves the phase-space volume, and retains the ion cyclotron motion, while fine scale electron motion is ignored, so that the frequency falls in the range.
It is supported by the perturbative analysis of the experiments and the nonlinear gyrokinetic simulations. Abstract The tooi topology of the stochastic edge of a helical reversed-field pinch, with helicityshows to be deeply influenced by higher harmonicswith the same ndue to tio coupling. At the edge of diverted plasmas the mode exhibits a non-local structure with a constant frequency over a radial extent of at least several centimeters.
Abstract A fully-kinetic ion and gyrokinetic electron Vlasov—Maxwell particle simulation model is derived through Lie transform perturbation theory for Hamiltonian systems in terms of four ordering parameters, and. The presence of a chain of magnetic islands, produced by externally applied tri-dimensional fields at a rational surface, is numerically found to have significant effects on the resonant response, as well as on the associated toroidal torques, in a toroidal tokamak plasma with conventional aspect ratio, strong shaping, and in the regime of slow toroidal flow.
The magnetic island and turbulence can mutually interact via coupling between the electron temperature T e gradient, the T e turbulence, and the poloidal flow. Edit Profile View as Public Logout. It is shown that recycling—in terms of re-ionization within the view cone of the camera—is underestimated by a factor of about 3 at the peak location and overestimated in between, and that emission related to molecular dissociation can locally yield an additional factor of 2 for the ionization to photon conversion.
Fusion 50it is shown that the frequency sweeps with lower rates. Vacancy clustering in cascade damaged polycrystalline tungsten occurred due to deuterium irradiation and was observed near the grain boundary by using all-step transmission electron microscopy analysis.
Complementary molecular statics MS calculations are performed to validate the accuracy of the recently developed W—H—He embedded atom method EAM and bond-order potentials.
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Abstract Dedicated experiments have been performed in KSTAR Ohmic revveille to investigate the alxm physics of the rotation reversal phenomena. In order to characterize magnetic braking in revwille various 3D field configurations, dedicated experiments have been carried out in KSTAR, applying a variety of static3D fields of different phasing of0, and.
To date, optimizations have focused primarily on optimization of neoclassical confinement and ideal MHD stability, although limited optimization of other parameters has also been performed. In limited plasmas their amplitude scales with safety factor. Further constraints were also imposed that guaranteed that sector blanket modules could be removed from qlam the coils, enabling a sector maintenance scheme. To remove this arbitrariness, by considering an equilibrium distribution function of hot particles interacting with rotating bulk particles, we compute the ‘rotation’ of hot particles.
With a suitable choice of the phase and amplitude of the perturbation a more symmetric plasma-limiter interaction can be potentially achieved. An expression for ZF growth rate with impurities is derived by balancing the ZF potential shielded by polarization effects and the ZF modulated radial turbulent current.
The measurements show significant quadratic non-linear contributions and also the absence of cubic and higher order components. We have carried out systematic first-principles total energy and vibration spectrum calculations to investigate the finite-temperature H dissolution behaviors in tungsten and tii, which are considered promising candidates for the first wall in nuclear fusion reactors.
Transient loading experiments were also performed using a high power pulsed laser during He plasma exposure, showing a significant modification of the target thermal response caused by the surface damage. The simulated energy distributions of ions and electrons at correspond a power-law Kappa energy distribution. This action cannot be undone! This is consistent with short-lived divertor localised filamentary structures observed further down the outer divertor leg in the camera images, and suggests a complex multi-region picture of filamentary transport in the divertor.
These transitions are associated with large exchanges of energy between the modes corresponding to instabilities and zonal flows. The performance of the controller is analyzed in both simulation and TCV L-mode discharges where successful tracking of the estimated inverse q -profile as well as plasma beta is demonstrated under uncertain plasma conditions and the presence of disturbances.
Abstract Plasma elongation effects on turbulence and zonal flow are explicitly investigated for the first time with global bounce-averaged gyrokinetic simulations for a collisionless trapped electron mode CTEM.
The experimental observations were compared against several theoretical models. New ideas on methods for the optimization of turbulent transport have garnered much attention since these methods have led to design concepts that are calculated to have reduced turbulent heat loss.
Nitrogen seeding into a snowflake minus configuration demonstrated a regime with strong radiation in the large region between the two x -points, confirming EMC3-Eirene simulations, and opening a promising path towards highly radiating regimes with limited adverse effects on core performance.
A novel plasma position and shape controller has been developed for the highly flexible shaping poloidal-field coil set of the TCV tokamak, to aid in the precise control of advanced configurations such as negative-triangularity plasmas, snowflake and super-X divertors, and doublets.
Abstract The presence of a chain of magnetic islands, produced by externally applied tri-dimensional fields at a rational surface, is numerically found to have significant effects on the resonant response, as well as on the associated toroidal torques, in a toroidal tokamak plasma with conventional aspect ratio, strong shaping, and in the regime of slow toroidal flow. It is found that fusion performance improves before dropping off with increasingwhile the confinement remains at high level.
This ELM-free regime features high energy confinement and a steep temperature pedestal, while particle aoam remains at L-mode levels, giving stationary density and avoiding impurity accumulation.
The linear phase of the confinement is simply attributed to the decrease of electron heat transport as the electron and ion temperatures become more coupled. Tli select a valid image file.
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The hydrogen concentration in the tungsten samples irradiated in hydrogen was higher than that in the samples irradiated in helium atmosphere. Abstract A novel plasma position and shape controller has been developed for the highly flexible shaping poloidal-field coil set of the TCV tokamak, to aid in the precise control of advanced configurations such as negative-triangularity plasmas, snowflake and super-X divertors, and doublets.
Following this first step, the key aspects and figures of merit of plasma active vertical stabilization will be reviewed, with specific emphasis on the maximum disturbances that can aalam recovered by the plasma control system while minimizing active currents and voltages.
Characteristic parameters are estimated for different fusion relevant isotopic compositions protium, deuterium, tritium and singly charged helium by means of conditional averaging.