DocumentCode :
48697
Title :
Experimental Validation of the 3-D Molecular Flow Code AVOCADO
Author :
Sartori, E. ; Dal Bello, S. ; Fincato, M. ; Gonzalez, W. ; Serianni, G. ; Sonato, P.
Author_Institution :
Consorzio RFX, Assoc. EURATOM-ENEA, Padua, Italy
Volume :
42
Issue :
9
fYear :
2014
fDate :
Sept. 2014
Firstpage :
2291
Lastpage :
2297
Abstract :
In the framework of the activities for Padova Research on ITER Megavolt Accelerator (PRIMA), the knowledge of the background gas density distribution in the neutral beam components is a very important aspect, which plays a role in their performances. The adaptable rarefied instrumented atmosphere for neutral injection applications (ARIANNA) experiment has been set up as a complementary service for the modeling activity of the ion beam source for the neutral beam injector. It reproduces the layout of a typical beam source, in which the ion source and grids are integrated. ARIANNA supported the development and validation of the AVOCADO code, which has been created to simulate molecular flow and density gas distribution in 3-D geometry by view factor technique. The validation activity was aimed at demonstrating the capability to correlate the mass flow to the pressure difference, and the correctness of the pressure distribution in the volume. This paper presents the ARIANNA experimental setup and the subsystems involved in the vacuum production and measurement, and compares AVOCADO results obtained, while modeling the ARIANNA device with the experimental data.
Keywords :
Tokamak devices; fusion reactor ignition; ion beams; ion sources; plasma accelerators; plasma beam injection heating; plasma density; plasma flow; plasma simulation; plasma toroidal confinement; 3-D geometry; 3-D molecular flow code; ARIANNA; AVOCADO code; ITER megavolt accelerator; PRIMA; adaptable rarefied instrumented atmosphere; background gas density distribution; ion beam source; mass flow; neutral beam injection; pressure distribution; vacuum measurement; vacuum production; view factor technique; Apertures; Geometry; Heating; Measurement uncertainty; Pressure measurement; Temperature measurement; Throughput; Experimental validation; gas distribution; molecular regime; neutral beam injection;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2014.2346316
Filename :
6887305
Link To Document :
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