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

Energy Exchange Dynamics across L-H Transitions in NSTX

Dataset ·
DOI:https://doi.org/10.11578/1367547· OSTI ID:1367547

We studied the energy exchange dynamics across the low-to-high-confinement (L-H) in NSTX discharges using the gas-puff imaging (GPI) diagnotic. The investigation focused on the energy exchange between flows and turbulence, to help clarify the mechanism of the L-H transition. We apply this study to three type of heating schemes, including a total of 17 shots from the NSTX 2010 campaign run. Results show that the edge fluctuation characteristics (fluctuation levels, radial and poloidal correlation lengths) measured using GPI do not vary just prior to the H-mode transition, but change after the transition. Using a velocimetry approach (orthogonal-programming decomposition), velocity fields of a 24 $$\times$$ 30 cm GPI view during the L-H transition were obtained with good spatial ($$\sim$$1 cm) and temporal ($$\sim$$2.5 $$\mu$$s) resolutions. Analysis using these velocity fields shows that the production term is systematically negative just prior to the L-H transition indicating transfer from mean flows to turbulence, which is inconsistent with the predator-prey paradigm. Moreover, using the inferred absolute value of the production term, an estimate of the L-H transition duration is found to be 25 ms, which is much larger than the measured duration. These discrepancies are further reinforced by consideration of the ratio between the kinetic energy in the mean flow to the thermal free energy, which is estimated to be much less than 1, suggesting again that turbulence depletion mechanism may not be playing an important role in the transition to the H-mode. Although the Reynolds work is too small to directly deplete the turbulent free energy reservoir, order-of-magnitude analysis shows that the Reynolds stress may still make a non-negligible contribution to the observed poloidal flows.

Research Organization:
Princeton Plasma Physics Laboratory (PPPL), Princeton, NJ (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Fusion Energy Sciences (FES) (SC-24)
DOE Contract Number:
AC02-09CH11466
OSTI ID:
1367547
Country of Publication:
United States
Language:
English

References (1)

Energy exchange dynamics across L–H transitions in NSTX journal May 2017

Similar Records

Energy exchange dynamics across L–H transitions in NSTX
Journal Article · Wed May 10 00:00:00 EDT 2017 · Nuclear Fusion · OSTI ID:1360936

Quiet Periods in Edge Turbulence Preceding the L-H Transition in NSTX
Technical Report · Mon Apr 26 00:00:00 EDT 2010 · OSTI ID:981661