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Tokamak elongation - how much is too much? Part 1. Theory

Authors
Freidberg, Jeffrey PCerfon, Antoine JLee, Jungpyo
Issue Date
Nov-2015
Publisher
CAMBRIDGE UNIV PRESS
Citation
JOURNAL OF PLASMA PHYSICS, v.81, pp.10607 - 10627
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF PLASMA PHYSICS
Volume
81
Start Page
10607
End Page
10627
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/155878
DOI
10.1017/S0022377815001270
ISSN
0022-3778
Abstract
In this and the accompanying paper, the problem of the maximally achievable elongation kappa in a tokamak is investigated. The work represents an extension of many earlier studies, which were often focused on determining kappa limits due to (i) natural elongation in a simple applied pure vertical field or (ii) axisymmetric stability in the presence of a perfectly conducting wall. The extension investigated here includes the effect of the vertical stability feedback system which actually sets the maximum practical elongation limit in a real experiment. A basic resistive wall stability parameter, gamma tau(w) is introduced to model the feedback system which although simple in appearance actually captures the essence of the feedback system. Elongation limits in the presence of feedback are then determined by calculating the maximum kappa against n = 0 resistive wall modes for fixed gamma tau(w). The results are obtained by means of a general formulation culminating in a variational principle which is particularly amenable to numerical analysis. The principle is valid for arbitrary profiles but simplifies significantly for the Solov'ev profiles, effectively reducing the 2-D stability problem into a 1-D problem. The accompanying paper provides the numerical results and leads to a sharp answer of 'how much elongation is too much'?
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