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Автор M E Fenstermacher
Автор J Boedo
Автор R C Isler
Автор A W Leonard
Автор G D Porter
Автор D G Whyte
Автор R D Wood
Автор S L Allen
Автор N H Brooks
Автор R Colchin
Автор T E Evans
Автор D N Hill
Автор C J Lasnier
Автор R D Lehmer
Автор M A Mahdavi
Автор R Maingi
Автор R A Moyer
Автор T W Petrie
Автор T D Rognlien
Автор M J Schaffer
Автор R D Stambaugh
Автор M R Wade
Автор J G Watkins
Автор W P West
Автор N Wolf
Дата выпуска 1999-03-01
dc.description This paper summarizes results from a two-dimensional (2D) physics analysis of the transition to and stable operation of the partially detached divertor (PDD) regime induced by deuterium injection in DIII-D. The analysis [1] shows that PDD operation is characterized by a radiation zone near the X-point at -15 eV which reduces the energy flux into the divertor and thereby also reduces the target plate heat flux, an ionization zone below the X-point which provides a deuterium ion source to fuel parallel flow down the outer divertor leg, an ion-neutral interaction zone in the outer leg which removes momentum and energy from the flow and finally a volume recombination zone above the target plate which reduces the particle flux to the low levels measured on the plates and thereby also contributes to reduction in target plate heat flux.
Формат application.pdf
Издатель Institute of Physics Publishing
Название Physics of the detached radiative divertor regime in DIII-D
Тип paper
DOI 10.1088/0741-3335/41/3A/028
Electronic ISSN 1361-6587
Print ISSN 0741-3335
Журнал Plasma Physics and Controlled Fusion
Том 41
Первая страница A345
Последняя страница A355
Выпуск 3A

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