Solenoid-free Plasma Start-up in NSTX using Transient CHI
نویسندگان
چکیده
منابع مشابه
Solenoid-free Plasma Start-up in NSTX using Transient CHI
Experiments in NSTX have now demonstrated the coupling of toroidal plasmas produced by the technique of Coaxial Helicity Injection (CHI) to inductive sustainment and ramp-up of the toroidal plasma current. In these discharges, the central Ohmic transformer was used to apply an inductive loop voltage to discharges with a toroidal current of about 100 kA created by CHI. The coupled discharges hav...
متن کاملExperimental Demonstration of Tokamak Inductive Flux Saving by Transient Coaxial Helicity Injection on NSTX
Discharges initiated by Transient Coaxial Helicity Injection (CHI) in NSTX have attained peak toroidal plasma currents up to 300 kA. When induction from the central solenoid is then applied, these discharges develop up to 300 kA additional current compared to discharges initiated by induction only. CHI initiated discharges in NSTX have achieved 1 MA of plasma current using only 258 mWb of solen...
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INTRODUCTION This article investigates various improvements to two existing finite volume (fv) algorithms, specifically constructed to solve transient viscoelastic flow problems. Here, we consider model problems to identify fundamental algorithmic advances. Two alternative fv-approaches are advocated and contrasted for their properties, a hybrid cell-vertex scheme and a cell-centred staggered-g...
متن کامل× B Plasma Rotation and n = 1 Oscillation Observed in the NSTX - CHI Experiments
In the National Spherical Torus Experiment (NSTX), a peak plasma current up to 390 kA has been successfully generated by the Coaxial Helicity Injection (CHI) current drive method. The plasma rotation (∼ 20 km/s) driven in the E × B toroidal direction by CHI has been clearly identified by an ion Doppler spectroscopic measurement. The n = 1 mode has been also observed to rotate in the same direct...
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ژورنال
عنوان ژورنال: Journal of Fusion Energy
سال: 2008
ISSN: 0164-0313,1572-9591
DOI: 10.1007/s10894-008-9182-x