Back to Search Start Over

Wall conditioning and density control in the reversed field pinch RFX-mod

Authors :
S. Dal Bello
Paolo Scarin
David Terranova
Lorella Carraro
Lane Roquemore
Alessandro Fassina
Gianluca Spizzo
Fulvio Auriemma
Maria Ester Puiatti
Matteo Agostini
Paolo Innocente
Stefano Munaretto
Italo Predebon
Roberto Cavazzana
Paolo Franz
Luca Grando
G. Mazzitelli
D.K. Mansfield
M. Gobbin
Alessandra Canton
A.V. Vertkov
G. De Masi
Barbara Zaniol
M. Valisa
Lionello Marrelli
Piero Martin
A. Ruzzon
Mazzitelli, G.
Source :
Nuclear fusion 53 (2013). doi:10.1088/0029-5515/53/7/073001, info:cnr-pdr/source/autori:M.E. Puiatti; G. Spizzo; F. Auriemma; L. Carraro; R. Cavazzana; G. De Masi; M. Gobbin; P. Innocente; I. Predebon; P. Scarin; M. Agostini; A. Canton; S. Dal Bello; A. Fassina; P. Franz; L. Grando; D. Mansfield; L. Marrelli; P. Martin; G. Mazzitelli; S. Munaretto; L. Roquemore; A. Ruzzon; D. Terranova; M. Valisa; A. Vertkov; B. Zaniol and the RFX-mod Team/titolo:Wall conditioning and density control in the reversed field pinch RFX-mod/doi:10.1088%2F0029-5515%2F53%2F7%2F073001/rivista:Nuclear fusion/anno:2013/pagina_da:/pagina_a:/intervallo_pagine:/volume:53
Publication Year :
2013

Abstract

In the reversed field pinch RFX-mod at the highest plasma current of 2 MA, when error fields are not effectively feedback controlled, localized thermal loads up to tens of MW m-2 can be produced. The graphite tiles withstand such high power loads, but the high hydrogen retention makes density control extremely difficult. Several wall conditioning techniques have been optimized in the last campaigns, including helium glow discharge cleaning and wall boronization by diborane glow discharges. More recently, lithium conditioning has been applied for the first time in a reversed field pinch by the evaporation technique. The main results are discussed in this paper. Lithization leads to important operational advantages: a significant improvement of the density control is obtained. Densities up to n/nG ≈ 0.5 can be produced in a controlled way. At the same value of input power, plasmas at higher densities can be sustained. However, due to the short particle confinement time, such densities are reached with high rates of gas puffing and the resulting profiles at high density are edge peaked. A lithium multipellet injector, to be applied in order to obtain a more uniform deposition, has been tested. © 2013 IAEA, Vienna.

Details

Language :
English
Database :
OpenAIRE
Journal :
Nuclear fusion 53 (2013). doi:10.1088/0029-5515/53/7/073001, info:cnr-pdr/source/autori:M.E. Puiatti; G. Spizzo; F. Auriemma; L. Carraro; R. Cavazzana; G. De Masi; M. Gobbin; P. Innocente; I. Predebon; P. Scarin; M. Agostini; A. Canton; S. Dal Bello; A. Fassina; P. Franz; L. Grando; D. Mansfield; L. Marrelli; P. Martin; G. Mazzitelli; S. Munaretto; L. Roquemore; A. Ruzzon; D. Terranova; M. Valisa; A. Vertkov; B. Zaniol and the RFX-mod Team/titolo:Wall conditioning and density control in the reversed field pinch RFX-mod/doi:10.1088%2F0029-5515%2F53%2F7%2F073001/rivista:Nuclear fusion/anno:2013/pagina_da:/pagina_a:/intervallo_pagine:/volume:53
Accession number :
edsair.doi.dedup.....f71f8028ea1a261755bc204b012aeb9b
Full Text :
https://doi.org/10.1088/0029-5515/53/7/073001