Publications
Contrasting H-mode behaviour with deuterium fuelling and nitrogen seeding in the all-carbon and metallic versions of JET, Nucl. Fusion 754 (2014) 073016.
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Control of the hydrogen:deuterium isotope mixture using pellets in JET, Nucl. Fusion 59 (2019) 106047.
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Density peaking in low collisionality ELMy H-mode in JET, Plasma Phys. Control. Fusion 1246 (2004) 1877-1889.
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First principle integrated modeling of multi-channel transport including Tungsten in JET, Nucl. Fusion 58 (2018) 096003.
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2018_68394.pdf (6.2 MB)
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First principles and integrated modelling achievements: towards trustful fusion power predictions for JET and ITER, Nucl. Fusion 59 (2019) 086047.
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High density operation at JET by pellet refuelling, Plasma Physics and Controlled Fusion 944 (2002) 1919-1928.
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Integrated core–SOL–divertor modelling for ITER including impurity: effect of tungsten on fusion performance in H-mode and hybrid scenario, Nucl. Fusion 55 (2015) 053032.
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2015_62338.pdf (696.93 KB)
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JET experiments with tritium and deuterium–tritium mixtures, Fusion Eng. Des. 109–111, Part A (2016) 925-936.
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Metal impurity transport control in JET H-mode plasmas with central ion cyclotron radiofrequency power injection, Nucl. Fusion 351 (2011) 033002.
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Modelling of hybrid scenario: from present-day experiments towards ITER, Nucl. Fusion 753 (2013) 073024.
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2013_52963.pdf (1.72 MB)
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Modelling of JET hybrid scenarios with GLF23 transport model: E × B shear stabilization of anomalous transport, Nucl. Fusion 54 (2014) 093006.
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2014_58495.pdf (704.11 KB)
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Optimization of pellet scenarios for long pulse fuelling to high densities at JET, Nucl. Fusion 442 (2002) 388-402.
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Overview of physics results from MAST towards ITER/DEMO and the MAST Upgrade, Nucl. Fusion 1053 (2013) 104008.
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Overview of transport, fast particle and heating and current drive physics using tritium in JET plasmas, Nuclear Fusion 1045 (2005) S181-S194.
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