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Neoclassical transport considerations for advanced tokamaks

Nuclear Fusion, 1988
Interest in attaining high beta has stimulated the study of strongly shaped tokamak configurations. The influence of strong shaping on neoclassical transport, specifically on the ion thermal flux and the diffusion induced (or 'bootstrap') current, has been investigated.
C.O. Beasley, J.T. Hogan
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Attaining neoclassical transport in ignited tokamaks

Nuclear Fusion, 2000
The requirements to stabilize microinstabilities with velocity shear in tokamaks are examined for both aspect ratio A = 3 and A = 1.4. A comprehensive linear gyrokinetic code is used to compute growth rates in realistic numerical equilibria. Growth rates for A = 3 and A = 1.4 are generally similar for electron drift modes and ion temperature gradient ...
M Kotschenreuther   +5 more
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Neoclassical Transport Properties of Tokamak Plasmas

Fusion Science and Technology, 2004
The classical transport theory is strictly valid for a plasma in a homogeneous and stationary magnetic field. In the '60, experiments have shown that this theory does not apply as a local theory of transport in Tokamaks. It was shown that global geometric characteristics of the confining elements have a strong influence on the transport.
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NEOCLASSICAL TRANSPORT

1987
Frances Bauer   +3 more
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Relativistic effects in electron neoclassical transport

2015
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Marushchenko, I., Azarenkov, N.A.
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Neoclassical transport in KOLER trap (Yamator)

2015
The new stellarator type magnetic system having a high magnetic well value was proposed in paper [1]. In the present work neoclassical transport for magnetic configuration of l = 2 variant of similar system is investigated by numerical methods. A so-called 1/ ??
Kalyuzhnyj, V.N.   +2 more
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