Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Core Fueling and Edge Particle Flux Analysis in Ohmically and Auxiliary Heated NSTX Plasmas

Technical Report ·
DOI:https://doi.org/10.2172/798192· OSTI ID:798192

The Boundary Physics program of the National Spherical Torus Experiment (NSTX) is focusing on optimization of the edge power and particle flows in b * 25% L- and H-mode plasmas of t {approx} 0.8 s duration heated by up to 6 MW of high harmonic fast wave and up to 5 MW of neutral beam injection. Particle balance and core fueling efficiencies of low and high field side gas fueling of L-mode homic and NBI heated plasmas have been compared using an analytical zero dimensional particle balance model and measured ion and neutral fluxes. Gas fueling efficiencies are in the range of 0.05-0.20 and do not depend on discharge magnetic configuration, density or poloidal location of the injector. The particle balance modeling indicates that the addition of HFS fueling results in a reversal of the wall loading rate and higher wall inventories. Initial particle source estimates obtained from neutral pressure and spectroscopic measurements indicate that ion flux into the divertor greatly exceeds midplane ion flux from the main plasma, suggesting that the scrape-off cross-field transport plays a minor role in diverted plasmas. Present analysis provides the basis for detailed fluid modeling of core and edge particle flows and particle confinement properties of NSTX plasmas. This research was supported by the U.S. Department of Energy under contracts No. DE-AC02-76CH03073, DE-AC05-00OR22725, and W-7405-ENG-36.

Research Organization:
Princeton Plasma Physics Lab., NJ (US)
Sponsoring Organization:
USDOE Office of Science (US)
DOE Contract Number:
AC02-76CH03073
OSTI ID:
798192
Report Number(s):
PPPL-3704.pdf
Country of Publication:
United States
Language:
English

Similar Records

Advances in High Harmonic Fast Wave Heating of NSTX H-mode Plasmas
Conference · Thu Dec 31 23:00:00 EST 2009 · OSTI ID:1111437

Investigation of HHFW and NBI Combined Heating in NSTX
Technical Report · Wed Apr 27 00:00:00 EDT 2005 · OSTI ID:839176

HHFW Heating and Current Drive Studies of NSTX H-Mode Plasmas
Conference · Wed Jun 08 00:00:00 EDT 2011 · OSTI ID:1028180