H
H.D. Pacher
Researcher at Institut national de la recherche scientifique
Publications - 38
Citations - 2297
H.D. Pacher is an academic researcher from Institut national de la recherche scientifique. The author has contributed to research in topics: Divertor & Plasma. The author has an hindex of 20, co-authored 38 publications receiving 2130 citations.
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Chapter 4: Power and particle control
A. Loarte,Bruce Lipschultz,A.S. Kukushkin,G. F. Matthews,P.C. Stangeby,Nobuyuki Asakura,G. F. Counsell,G. Federici,A. Kallenbach,K. Krieger,A. Mahdavi,V. Philipps,Detlev Reiter,J. Roth,J. D. Strachan,D.G. Whyte,R.P. Doerner,T. Eich,W. Fundamenski,A. Herrmann,M.E. Fenstermacher,Philippe Ghendrih,M. Groth,A. Kirschner,S. Konoshima,Brian LaBombard,Peter Lang,A.W. Leonard,P. Monier-Garbet,Rudolf Neu,H.D. Pacher,B. Pégourié,R.A. Pitts,Shuichi Takamura,J. L. Terry,E. Tsitrone +35 more
TL;DR: In this paper, the authors describe the processes that will determine the properties of the plasma edge and its interaction with material elements in ITER and compare their predictions with the new experimental results.
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Finalizing the ITER divertor design: The key role of SOLPS modeling
TL;DR: A review of the development of edge plasma modeling at ITER and of its interaction with the evolving divertor design is presented in this article, where the SOLPS (B2-Eirene) code has been developed for, and applied to, the evaluation and the design of the ITER divertor for the last 15 years.
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Assessment of erosion and tritium codeposition in ITER-FEAT
G. Federici,Jeffrey N. Brooks,D. P. Coster,G. Janeschitz,A Kukuskhin,A. Loarte,H.D. Pacher,J. Stober,C.H. Wu +8 more
TL;DR: In this paper, Janeschitz et al. analyzed the effects of tritium codeposition on the first-wall and divertor of a reduced-size ITER-FEAT with a strike-point carbon divertor target and metallic walls.
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Analysis of performance of the optimized divertor in ITER
A.S. Kukushkin,H.D. Pacher,A. Loarte,V. Komarov,Vladislav Kotov,Mario Merola,G. W. Pacher,Detlev Reiter +7 more
TL;DR: In this article, a physics analysis of a modified divertor cassettes for ITER is presented, where the authors investigate the impact of gas leaks through the broader gaps between the divertor and radiation power loading of different components of the cassettes.
Journal ArticleDOI
Divertor modelling and extrapolation to reactor conditions
A S Kukushkin,H.D. Pacher +1 more
TL;DR: In this article, the authors summarized the results of divertor modelling and incorporated them in the ITER-FEAT divertor design, such as the beneficial effect of V-shaped targets, the importance of high gas conductivity between the divertors, and the role of deep core fuelling in maintaining the plasma density.