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Title: Statistical analysis of m/n = 2/1 locked and quasi-stationary modes with rotating precursors at DIII-D

Journal Article · · Nuclear Fusion
 [1];  [1];  [2];  [3];  [4];  [1]
  1. Columbia Univ., New York, NY (United States)
  2. General Atomics, San Diego, CA (United States)
  3. Univ. of Wisconsin, Madison, WI (United States); Stanford Univ., Stanford, CA (United States)
  4. Columbia Univ., New York, NY (United States); General Atomics, San Diego, CA (United States)

A database has been developed to study the evolution, the nonlinear effects on equilibria, and the disruptivity of locked and quasi-stationary modes with poloidal and toroidal mode numbers m = 2 and n = 1 at DIII-D. The analysis of 22500 discharges shows that more than 18% of disruptions are due to locked or quasi-stationary modes with rotating precursors (not including born locked modes). A parameter formulated by the plasma internal inductance l i divided by the safety factor at 95% of the poloidal flux, q 95, is found to exhibit predictive capability over whether a locked mode will cause a disruption or not, and does so up to hundreds of milliseconds before the disruption. Within 20 ms of the disruption, the shortest distance between the island separatrix and the unperturbed last closed flux surface, referred to as d edge, performs comparably to $${{l}_{i}}/{{q}_{95}}$$ in its ability to discriminate disruptive locked modes. Out of all parameters considered, d edge also correlates best with the duration of the locked mode. Disruptivity following a m/n = 2/1 locked mode as a function of the normalized beta, $${{\beta}_{\text{N}}}$$ , is observed to peak at an intermediate value, and decrease for high values. The decrease is attributed to the correlation between $${{\beta}_{\text{N}}}$$ and q 95 in the DIII-D operational space. Within 50 ms of a locked mode disruption, average behavior includes exponential growth of the n = 1 perturbed field, which might be due to the 2/1 locked mode. Surprisingly, even assuming the aforementioned 2/1 growth, disruptivity following a locked mode shows little dependence on island width up to 20 ms before the disruption. Separately, greater deceleration of the rotating precursor is observed when the wall torque is large. At locking, modes are often observed to align at a particular phase, which is likely related to a residual error field. Timescales associated with the mode evolution are also studied and dictate the response times necessary for disruption avoidance and mitigation. Lastly, observations of the evolution of $${{\beta}_{\text{N}}}$$ during a locked mode, the effects of poloidal beta on the saturated width, and the reduction in Shafranov shift during locking are also presented.

Research Organization:
General Atomics, San Diego, CA (United States)
Sponsoring Organization:
USDOE
Contributing Organization:
The DIII-D Team
Grant/Contract Number:
FC02-04ER54698; SC0008520; FG02-92ER54139; FG02-04ER54761
OSTI ID:
1372077
Alternate ID(s):
OSTI ID: 1330972
Journal Information:
Nuclear Fusion, Vol. 57, Issue 1; Related Information: R. Sweeney, W. Choi, R.J. La Haye, S. Mao, K.E.J. Olofsson, F.A. Volpe, and the DIII-D Team, "Statistical Analysis of m/n=2/1 Locked and Quasi-Stationary Modes with Rotating Precursors at DIII-D", Nucl. Fusion 57, 016019 (2017).; ISSN 0029-5515
Publisher:
IOP ScienceCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 34 works
Citation information provided by
Web of Science

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Cited By (11)

Overview of the recent experimental research on the J-TEXT tokamak journal July 2019
Measurement of toroidal variation in conducted heat loads in locked mode induced disruptions on DIII-D journal October 2018
Real-time plasma state monitoring and supervisory control on TCV text January 2019
Disruption prediction investigations using Machine Learning tools on DIII-D and Alcator C-Mod journal June 2018
Real-time plasma state monitoring and supervisory control on TCV journal January 2019
Direct measurements of internal structures of born-locked modes and the key role in triggering tokamak disruptions journal April 2019
Fast and pervasive heat transport induced by multiple locked modes in DIII-D journal November 2018
Effect of magnetic islands on profiles, flows, turbulence and transport in nonlinear gyrokinetic simulations journal February 2017
Event hazard function learning and survival analysis for tearing mode onset characterization journal June 2018
Progress in disruption prevention for ITER journal June 2019
Relationship between locked modes and thermal quenches in DIII-D journal March 2018

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