G
Guoyong Fu
Researcher at Zhejiang University
Publications - 184
Citations - 6466
Guoyong Fu is an academic researcher from Zhejiang University. The author has contributed to research in topics: Tokamak & Tokamak Fusion Test Reactor. The author has an hindex of 47, co-authored 178 publications receiving 5960 citations. Previous affiliations of Guoyong Fu include Princeton University & École Polytechnique Fédérale de Lausanne.
Papers
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Journal ArticleDOI
Excitation of the toroidicity-induced shear Alfvén eigenmode by fusion alpha particles in an ignited tokamak
Guoyong Fu,J. W. Van Dam +1 more
TL;DR: In this article, the toroidicity-induced shear Alfven eigenmode was found to be destabilized by fusion alpha particles in an ignited tokamak plasma.
Journal ArticleDOI
Plasma simulation studies using multilevel physics models
TL;DR: The M3D project as discussed by the authors developed a code package with a hierarchy of physics levels that resolve increasingly complete subsets of phase-spaces and are thus increasingly more realistic, and examples of its application are given.
Journal ArticleDOI
Physics of the compact advanced stellarator NCSX
M. C. Zarnstorff,Lee A. Berry,A. Brooks,Eric Fredrickson,Guoyong Fu,S. Hirshman,Stuart R. Hudson,L. P. Ku,E. A. Lazarus,D. R. Mikkelsen,D. A. Monticello,G. H. Neilson,Neil Pomphrey,A. H. Reiman,Donald A. Spong,Dennis J Strickler,Allen H. Boozer,W. A. Cooper,Robert James Goldston,R. Hatcher,M. Isaev,Charles Kessel,J. L. V. Lewandowski,J. F. Lyon,P. Merkel,H.E. Mynick,B.E. Nelson,C. Nuehrenberg,M. H. Redi,W. Reiersen,P. H. Rutherford,Raul Sanchez,J. Schmidt,Roscoe White +33 more
TL;DR: The National Compact Stellarator Experiment (NCSX) as discussed by the authors was designed to enhance the magnetohydrodynamic (MHD) stability without feedback or nearby conducting structures and provide drift-orbit confinement similar to tokamaks.
Journal ArticleDOI
Energetic-particle-induced geodesic acoustic mode.
TL;DR: A new energetic particle-induced geodesic acoustic mode (EGAM) is shown to exist and the mode frequency and mode structure are determined nonperturbatively by energetic particle kinetic effects.
Journal ArticleDOI
Physics of energetic ions
J. Jacquinot,S. Putvinski,G. Bosia,Atsushi Fukuyama,R. Hemsworth,Sergey Konovalov,Yoshihiko Nagashima,W. M. Nevins,K. Rasumova,Francesco Romanelli,Kenji Tobita,Kenkichi Ushigusa,J. W. Van Dam,V. Vdovin,Herbert L Berk,D. N. Borba,Boris Breizman,R.V. Budny,Jeff Candy,Chio-Zong Cheng,C. D. Challis,Ambrogio Fasoli,Guoyong Fu,W. W. Heidbrink,Raffi Nazikian,G. Martin,Francesco Porcelli,M. H. Redi,Marshall N. Rosenbluth,G.J. Sadler,S. E. Sharapov,Donald A. Spong,Ryan M. White,Fulvio Zonca,F. W. Perkins,Douglass E. Post,Nermin A. Uckan,Masafumi Azumi,David Campbell,N. Ivanov,N. R. Sauthoff,Masahiro Wakatani,M. Shimada,J. Van Dam +43 more
TL;DR: In this paper, a review of the physics knowledge relevant to design of a reactor scale tokamak is presented, and projections for ITER are provided in this Chapter of the ITER Physics Basis.