DocumentCode :
301066
Title :
Diagnostics for the DIII-D radiative divertor
Author :
Nilson, D.G. ; Brooks, N.H. ; Smith, J.P. ; Snider, R.T.
Author_Institution :
Lawrence Livermore Nat. Lab., CA, USA
Volume :
1
fYear :
1995
fDate :
30 Sep-5 Oct 1995
Firstpage :
806
Abstract :
This paper reviews the design of new diagnostics and the modifications to existing diagnostics needed to carry out radiative divertor experiments in DIII-D following installation in late 1996 of a set of baffle structures that will restrict the backflow to the core plasma of neutral deuterium atoms and impurity gases. The divertor slots formed by the new baffle structures will inhibit the easy view of the divertor legs and target plates that the open divertor geometry in DIII-D currently affords. We review a basic set of diagnostics that are needed to demonstrate the reduction of divertor heat loading and radiative dissipation of energy within the divertor. This will include IR cameras, bolometry, foil bolometers, and Langmiur probes. Within the limits of available funding, we will implement a supplemental set of instruments which provide a more detailed understanding of the underlying physical processes. Many existing diagnostics require only re-aiming to provide proper coverage of the initial 23 cm long divertor plasma configuration (X-point to floor distance). Other diagnostics need extensive reconfiguration using in-vessel fiber-optic bundles or high power laser mirrors. The new divertor baffle panels provide a protective shelf for diagnostic hardware mounted underneath them, but the water cooling channels in the panels limit the permissible size of through holes and, thereby, restrict the available views of under-the-baffle diagnostics. The successful resolution of the design and implementation of these diagnostic modifications is dependent on a strong coordination between GA and its many diagnostic collaborators
Keywords :
Langmuir probes; bolometers; fusion reactor design; fusion reactor instrumentation; fusion reactors; infrared detectors; laser mirrors; plasma diagnostics; plasma toroidal confinement; 23 cm; D; DIII-D radiative divertor diagnostics; IR cameras; Langmiur probes; baffle structures; diagnostics design; divertor heat loading; divertor legs; divertor plasma configuration; divertor slots; foil bolometers; fusion reactors; high power laser mirrors; impurity gases; in-vessel fiber-optic bundles; protective shelf; water cooling channels; Atomic measurements; Bolometers; Cameras; Deuterium; Gases; Geometry; Impurities; Leg; Plasma diagnostics; Probes;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Fusion Engineering, 1995. SOFE '95. Seeking a New Energy Era., 16th IEEE/NPSS Symposium
Conference_Location :
Champaign, IL
Print_ISBN :
0-7803-2969-4
Type :
conf
DOI :
10.1109/FUSION.1995.535956
Filename :
535956
Link To Document :
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