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EFFECT OF RADIAL ELECTRICAL FIELD ON NEOCLASSICAL TRANSPORT IN TOKAMAKS
引用本文:Z. T. WANG, G. L. CLAIR(Center canadien de fusion magnetique 1804 montee)(Ste-Julie,Varennes Quebec,Canada,J3X1S1)(Southwestern Institute of Physics,P. O. Box 432,Chengdu 610041,P. R. China.)( MPB Technologies,Dorval,Quebec,Canada.). EFFECT OF RADIAL ELECTRICAL FIELD ON NEOCLASSICAL TRANSPORT IN TOKAMAKS[J]. 核聚变与等离子体物理, 1996, 0(1)
作者姓名:Z. T. WANG   G. L. CLAIR(Center canadien de fusion magnetique 1804 montee)(Ste-Julie  Varennes Quebec  Canada  J3X1S1)(Southwestern Institute of Physics  P. O. Box 432  Chengdu 610041  P. R. China.)( MPB Technologies  Dorval  Quebec  Canada.)
作者单位:Z. T. WANG; G. L. CLAIR(Center canadien de fusion magnetique 1804 montee)(Ste-Julie,Varennes Quebec,Canada,J3X1S1)(Southwestern Institute of Physics,P. O. Box 432,Chengdu 610041,P. R. China.)( MPB Technologies,Dorval,Quebec,Canada.)
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EFFECT OF RADIAL ELECTRICAL FIELD ONNEOCLASSICAL TRANSPORT IN TOKAMAKS
Z. T. WANG, G. L. CLAIR. EFFECT OF RADIAL ELECTRICAL FIELD ONNEOCLASSICAL TRANSPORT IN TOKAMAKS[J]. Nuclear Fusion and Plasma Physics, 1996, 0(1)
Authors:Z. T. WANG   G. L. CLAIR
Abstract:Neoclassical transport theory for tokamaks in the presence of a radial electrical fieldwith shear is developed using Hamiltonian formalism. Diffusion coefficients are derived in both plateauregime including a large electric field and banana regime including the squeezing factor which can greatlyaffect diffusion at the plasma edge. The scaling on squeezing factor is different from the one given byShaing and Hazeltine. Rotation speeds are calculated in the scrape-off region and they are in good agreement with measurements on TdeV Tokamak.
Keywords:Radical electrical field  Neoclassical transport Squeezing factor
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