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Related papers: The pellet rocket effect in magnetic confinement f…

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We detail here a semi-analytical model for the pellet rocket effect, which describes the acceleration of pellets in a fusion plasma due to asymmetries in the heat flux reaching the pellet surface and the corresponding ablation rate. This…

Plasma Physics · Physics 2025-06-12 N. J. Guth , O. Vallhagen , P. Helander , A. Tresnjic , S. L. Newton , T. Fülöp , I. Pusztai

A direct numerical simulation model for the rocket acceleration of pellets in thermonuclear fusion devices has been developed for PELOTON, a 3D Lagrangian particle pellet code [R. Samulyak et al, Nuclear Fusion 61 (4), 046007 (2021)], and…

Plasma Physics · Physics 2026-02-06 J. Corbett , R. Samulyak , F. J. Artola , S. Jachmich , M. Kong , E. Nardon

Pellet injection is used for fuelling and controlling discharges in tokamaks, and it is foreseen in ITER. During pellet injection, a movement of the ablated material towards the low-field side (or outward major radius direction) occurs…

Plasma Physics · Physics 2023-04-25 O. Vallhagen , I. Pusztai , P. Helander , S. L. Newton , T. Fülöp

For the first time the pellet cycle of a multiple-isotope plasma is successfully reproduced with reduced turbulent transport modelling, within an integrated simulation framework. Future nuclear fusion reactors are likely to be fuelled by…

Shallow fuelling pellets are injected from the high field side into plasmas in which ELMs have been mitigated using external magnetic perturbation coils. The data are compared with ideal assumptions in the ITER fuelling model, namely that…

Plasma Physics · Physics 2019-08-14 M Valovic , G Cunningham , L Garzotti , C Gurl , A Kirk , G Naylor , A Patel , R Scannell , A J Thornton

Collapsing magnetic traps (CMTs) are one proposed mechanism for generating non-thermal particle populations in solar flares. CMTs occur if an initially stretched magnetic field structure relaxes rapidly into a lower-energy configuration,…

Solar and Stellar Astrophysics · Physics 2016-07-29 Alexei Borissov , Thomas Neukirch , James Threlfall

Inertial Confinement Fusion is a promising option to provide massive, clean, and affordable energy for mankind in the future. The present status of research and development is hindered by hydrodynamical instabilities occurring at the…

Plasma Physics · Physics 2018-10-17 L. P. Csernai , N. Kroo , I. Papp

In a wide variety of natural and laboratory magnetized plasmas, filaments appear as a result of interchange instability. These convective structures substantially enhance transport in the direction perpendicular to the magnetic field.…

In inertial confinement fusion, the scientific issues include the generation and transport of driver energy, the pellet design, the uniform target implosion physics, the realistic nuclear fusion reactor design, etc. In this paper, we…

Plasma Physics · Physics 2019-01-30 T. Kubo , T. Karino , H. Kato , S. Kawata

A change of the particle density (by gas puff, pellets or impurity seeding) during the plasma discharge in tokamak produces a radial current and implicitly a torque and rotation that can modify the state of confinement. After ionization the…

Plasma Physics · Physics 2015-07-13 F. Spineanu , M. Vlad

The turbulence in magnetically confined fusion plasmas has important and non-trivial effects on the quality of the energy confinement. These effects are hard to make a quantitative assessment of analytically. The problem investigated in…

Plasma Physics · Physics 2010-12-21 Pär Strand , Andreas Skyman , Hans Nordman

A semi-analytic model for plasma-jet-driven magneto-inertial fusion is presented. Compressions of a magnetized plasma target by a spherically imploding plasma liner are calculated in one dimension (1D), accounting for compressible…

Plasma Physics · Physics 2017-03-14 Samuel J. Langendorf , Scott C. Hsu

Long-pulse operation of a self-sustained fusion reactor using toroidal magnetic containment requires control over the content of alpha particles produced by D-T fusion reactions. On the one hand, MeV-class alpha particles must stay confined…

From the viewpoint of performance of nuclear fusion plasmas, pellet injection experiments have been actively carried out in many toroidal devices in the sense of controlling density profile, obtaining high density or improved confinement,…

Plasma Physics · Physics 2007-05-23 K. Ichizono , S. Kugimiya , S. Nourgostar , K. N. Sato , Triam Exp. Group

A central unresolved question in fusion energy research is whether energetic alpha particles, the primary products of deuterium-tritium fusion reactions, enhance or degrade plasma confinement. In burning plasmas, the operating regime of…

We report on numerical simulation studies of the dynamical behavior of edge localized modes (ELMs) under the influence of repetitive injection of pellets. In our nonlinear 2-fluid model the ELMs are excited by introducing a particle source…

Plasma Physics · Physics 2019-07-24 D Chandra , A Sen , A Thyagaraja

Inertical Confinement Fusion configuration model is analized for direct ignition without an ablator. The compression of the target pellet is neglected and rapid volume ignition is achieved by a laser pulse, which is as short as the…

Plasma Physics · Physics 2016-11-16 Susanne F. Spinnangr , István Papp , László P. Csernai

Applying an external magnetic field to laser-driven inertial confinement fusion implosions is a promising approach for enhancing fusion yield. The field is compressed with the plasma, producing a magnetized hotspot that anisotropically…

Plasma Physics · Physics 2026-04-29 R. Spiers , A. Bose , C. A. Frank , D. J. Strozzi , J. D. Moody , C. A. Walsh , B. A. Hammel

The fuelling of plasmas by shallow frozen pellets with simultaneous mitigation of edge localised modes (ELM) by external magnetic perturbation is demonstrated on the MAST tokamak. Post-pellet particle loss is dominated by ELMs and inter-ELM…

Plasma Physics · Physics 2015-10-29 M Valovic , L Garzotti , C Gurl , A Kirk , D Dunai , A R Field , I Lupelli , G Naylor , A Thornton

Plasma energization through magnetic reconnection in the magnetically-dominated regime featured by low plasma beta ($\beta = 8 \pi nkT_0/B^2 \ll 1$) and/or high magnetization ($\sigma = B^2/(4 \pi nmc^2) \gg 1$) is important in a series of…

High Energy Astrophysical Phenomena · Physics 2016-05-25 Fan Guo , Hui Li , William Daughton , Xiaocan Li , Yi-Hsin Liu
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