Runaway electron modelling in the EU-IM framework
Paper i proceeding, 2021

The Runaway Electron Test Workflow was used to study the behaviour of the Dreicer generation of runaway electrons in dynamic scenarios to find a parameter which can be used to determine the need of kinetic modelling in more complex simulations. It was found that for processes which vary faster than the collision time at the critical velocity for runaway electron generation, kinetic modelling is advised to capture potential kinetic effects. A more complex tool, the ETS have been used to simulate a self-consistent thermal quench induced by massive material injection with promising initial results. Development of ETS capabilities continues with introduction of kinetic modelling and moving onto the new ETS6 versions.

Författare

Soma Olasz

Centre for Energy Research

Budapesti Muszaki es Gazdasagtudomanyi Egyetem

Matyas Aradi

Centro Nacional de Supercomputacion

Mathias Hoppe

Subatomär, högenergi- och plasmafysik DP

Ola Embréus

Chalmers, Fysik, Subatomär, högenergi- och plasmafysik

Gergely Papp

Max-Planck-Gesellschaft

T. Johnsson

Kungliga Tekniska Högskolan (KTH)

J. Ferreira

Instituto Superior Tecnico

D. Coster

Max-Planck-Gesellschaft

Pär Strand

Chalmers, Rymd-, geo- och miljövetenskap, Astronomi och plasmafysik

Dimitriy Yadykin

Chalmers, Rymd-, geo- och miljövetenskap, Astronomi och plasmafysik

I. Ivanova-Stanik

Instytut Problemow Jadrowyc

M. Poradziński

Instytut Problemow Jadrowyc

G Pautasso

Max-Planck-Gesellschaft

I. Voitsekhovitch

Max-Planck-Gesellschaft

J. Decker

Ecole Polytechnique Federale de Lausanne (EPFL)

Y Peysson

Le Commissariat à l’Énergie Atomique et aux Énergies Alternatives (CEA)

G.I. Pokol

Centre for Energy Research

Budapesti Muszaki es Gazdasagtudomanyi Egyetem

47th EPS Conference on Plasma Physics, EPS 2021

Vol. 2021-June 1156-1159
9781713837046 (ISBN)

47th EPS Conference on Plasma Physics, EPS 2021
Sitges, Spain,

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2021-12-06