Coupled IMPGYRO-EDDY simulation of tungsten impurity transport in tokamak geometry
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference10 articles.
1. Multi-dimensional impurity transport code by Monte Carlo method including gyro-orbit effects
2. Modeling of multi-dimensional impurity transport in a realistic tokamak geometry
3. High-Z Impurity Transport Code by Monte Carlo Method in a Realistic Tokamak Geometry – IMPGYRO –
4. Spectroscopic investigations of tungsten in the EUV region and the determination of its concentration in tokamaks
5. Physical sputtering of solids at ion bombardment;Roth,1984
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1. IMPGYRO: The full-orbit impurity transport code for SOL/divertor and its successful application to tungsten impurities;Computer Physics Communications;2020-03
2. Numerical analysis of tungsten erosion and deposition processes under a DEMO divertor plasma;Nuclear Materials and Energy;2017-08
3. Kinetic modelling for neoclassical transport of high-Zimpurity particles using a binary collision method;Nuclear Fusion;2016-02-05
4. Numerical modeling of the thermal force in a plasma for test-ion transport simulation based on a Monte Carlo Binary Collision Model (II) – Thermal forces due to temperature gradients parallel and perpendicular to the magnetic field;Journal of Computational Physics;2013-10
5. Comparison of kinetic and fluid models for tungsten impurity transport using IMPGYRO and SOLPS;Journal of Nuclear Materials;2013-07
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