NSTX. Investigation of electron gyro-scale fluctuations in the National Spherical Torus Experiment. David Smith. Advisor: Ernesto Mazzucato

Similar documents
David R. Smith UW-Madison

NSTX. Electron gyro-scale fluctuations in NSTX plasmas. David Smith, PPPL. Supported by

Towards Multiscale Gyrokinetic Simulations of ITER-like Plasmas

Multi-scale turbulence, electron transport, and Zonal Flows in DIII-D

Gyrokinetic Turbulence in Tokamaks and Stellarators

Progress and Plans on Physics and Validation

TURBULENT TRANSPORT THEORY

UCLA POSTECH UCSD ASIPP U

Validation Study of gyrokinetic simulation (GYRO) near the edge in Alcator C-Mod ohmic discharges

Bounce-averaged gyrokinetic simulations of trapped electron turbulence in elongated tokamak plasmas

Studies of Turbulence and Transport in Alcator C- Mod H-Mode Plasmas with Phase Contrast Imaging and Comparisons with GYRO*

Gyrokinetic Simulations of Tokamak Microturbulence

ECH Density Pumpout and Small Scale Turbulence in DIII-D

Turbulence and transport reduction with innovative plasma shapes in TCV - correlation ECE measurements and gyrokinetic simulations

UCIrvine. Gyrokinetic Studies of Turbulence Spreading IAEA-CN-116/TH1-4

C-Mod Transport Program

Gyrokinetic Transport Driven by Energetic Particle Modes

A Simulation Model for Drift Resistive Ballooning Turbulence Examining the Influence of Self-consistent Zonal Flows *

Validating Simulations of Multi-Scale Plasma Turbulence in ITER-Relevant, Alcator C-Mod Plasmas

International Workshop on the Frontiers of Modern Plasma Physics July On the Nature of Plasma Core Turbulence.

GTC Simulation of Turbulence and Transport in Tokamak Plasmas

Fine-Scale Zonal Flow Suppression of Electron Temperature Gradient Turbulence

Observations of Rotation Reversal and Fluctuation Hysteresis in Alcator C-Mod Plasmas

Transport at high beta in the NSTX spherical tokamak

Gyrokinetics an efficient framework for studying turbulence and reconnection in magnetized plasmas

Microtearing Simulations in the Madison Symmetric Torus

Characterizing electron temperature gradient turbulence via numerical simulation

Co-existence and interference of multiple modes in plasma turbulence: Some recent GENE results

Observation of Reduced Core Electron Temperature Fluctuations and Intermediate Wavenumber Density Fluctuations in H- and QH-mode Plasmas

Reduced Electron Thermal Transport in Low Collisionality H-mode Plasmas in DIII-D and the Importance of Small-scale Turbulence

Gyrokinetic simulations including the centrifugal force in a strongly rotating tokamak plasma

Lower Hybrid Current Drive Experiments on Alcator C-Mod: Comparison with Theory and Simulation

Measurements of Plasma Turbulence in Tokamaks

Advances in stellarator gyrokinetics

SUMMARY OF EXPERIMENTAL CORE TURBULENCE CHARACTERISTICS IN OH AND ECRH T-10 TOKAMAK PLASMAS

C-Mod Core Transport Program. Presented by Martin Greenwald C-Mod PAC Feb. 6-8, 2008 MIT Plasma Science & Fusion Center

OVERVIEW OF THE ALCATOR C-MOD PROGRAM. IAEA-FEC November, 2004 Alcator Team Presented by Martin Greenwald MIT Plasma Science & Fusion Center

On the Nature of ETG Turbulence and Cross-Scale Coupling

Particle-in-cell simulations of electron transport from plasma turbulence: recent progress in gyrokinetic particle simulations of turbulent plasmas

EFFECT OF PLASMA FLOWS ON TURBULENT TRANSPORT AND MHD STABILITY*

Turbulent Transport due to Kinetic Ballooning Modes in High-Beta Toroidal Plasmas

GA A26866 REDUCED ELECTRON THERMAL TRANSPORT IN LOW COLLISIONALITY H-MODE PLASMAS IN DIII-D AND THE IMPORTANCE OF SMALL-SCALE TURBULENCE

Theory Work in Support of C-Mod

Long Time Simulations of Microturbulence in Fusion Plasmas

Investigation of Intrinsic Rotation Dependencies in Alcator C-Mod

Gyrokinetic Theory and Dynamics of the Tokamak Edge

Global Nonlinear Simulations of Ion and Electron Turbulence Usintg a Particle-In-Cell Approach

Comparison of Critical Values of R/L Te. for ETG Modes Based on an Analytic Expression. with GKS Simulations for DIII-D Discharges

Validation of Theoretical Models of Intrinsic Torque in DIII-D and Projection to ITER by Dimensionless Scaling

Overview of Tokamak Rotation and Momentum Transport Phenomenology and Motivations

Role of Zonal Flows in TEM Turbulence through Nonlinear Gyrokinetic Particle and Continuum Simulation

GA A25566 COUPLED ITG/TEM-ETG GYROKINETIC SIMULATIONS

Size Scaling and Nondiffusive Features of Electron Heat Transport in Multi-Scale Turbulence

Overview of Gyrokinetic Theory & Properties of ITG/TEM Instabilities

Transport Improvement Near Low Order Rational q Surfaces in DIII D

Heat Transport in a Stochastic Magnetic Field. John Sarff Physics Dept, UW-Madison

Critical gradient formula for toroidal electron temperature gradient modes

Density Peaking At Low Collisionality on Alcator C-Mod

Impact of diverted geometry on turbulence and transport barrier formation in 3D global simulations of tokamak edge plasma

Gyrokinetic Large Eddy Simulations

Entropy evolution and dissipation in collisionless particle-in-cell gyrokinetic simulations

Validation studies on local gyrokinetic simulations of tokamak ITG-TEM driven turbulent transport

Overview of results from MAST Presented by: Glenn Counsell, for the MAST team

Reduction of Turbulence and Transport in the Alcator C-Mod Tokamak by Dilution of Deuterium Ions with Nitrogen and Neon Injection

Upper Hybrid Resonance Backscattering Enhanced Doppler Effect and Plasma Rotation Diagnostics at FT-2 Tokamak

Mechanisms of intrinsic toroidal rotation tested against ASDEX Upgrade observations

Simulations on the Nonlinear Mode Coupling in Multiple-scale Drift-type Turbulence with Coherent Flow Structures

Electron temperature barriers in the RFX-mod experiment

Comparison of Ion Internal Transport Barrier Formation between Hydrogen and Helium Dominated Plasmas )

ITER Predictions Using the GYRO Verified and Experimentally Validated TGLF Transport Model

Experiments with a Supported Dipole

G. Rewoldt, W.X. Wang, M. Bell, S. Kaye, W. Solomon, R. Nazikian, and W.M. Tang Princeton Plasma Physics Lab 1

Z. Lin University of California, Irvine, CA 92697, USA. Supported by SciDAC GPS-TTBP, GSEP & CPES

L-to-H power threshold comparisons between NBI and RF heated plasmas in NSTX

Self-consistent particle tracking in a simulation of the entropy mode in a Z pinch

PSFC/JA D.R. Ernst, N. Basse, W. Dorland 1, C.L. Fiore, L. Lin, A. Long 2, M. Porkolab, K. Zeller, K. Zhurovich. June 2006

JP Sta,onary Density Profiles in Alcator C Mod

Gyrokine.c Analysis of the Linear Ohmic Confinement Regime in Alcator C- Mod *

DIAGNOSTICS FOR ADVANCED TOKAMAK RESEARCH

Transport and turbulence reduction with negative triangularity : Correlation ECE measurements in TCV

Multiscale, multiphysics modeling of turbulent transport and heating in collisionless, magnetized plasmas

QTYUIOP ENERGY TRANSPORT IN NEUTRAL BEAM HEATED DIII D DISCHARGES WITH NEGATIVE MAGNETIC SHEAR D.P. SCHISSEL. Presented by. for the DIII D Team*

Computational Issues in the Continuum Gyrokinetic Code GYRO

Physics and Operations Plan for LDX

Microturbulence in optimised stellarators

Effect of ECRH Regime on Characteristics of Short-Wave Turbulence in Plasma of the L-2M Stellarator

Gyrokinetic Turbulence Simulations at High Plasma Beta

The gyrokinetic turbulence code GENE - Numerics and applications

What we ve learned so far about the Stability of Plasma Confined by a Laboratory Dipole Magnet

Nonlinear Gyrokinetic Simulations of Ion Turbulence in Impurity Seeded and High Density Toroidal Plasmas

Flow, turbulence and transport in laboratory plasmas (at least in LAPD and DIII-D)

Non-local Heat Transport in Alcator C-Mod Ohmic L-mode Plasmas

Propagation of Radio Frequency Waves Through Fluctuations in Plasmas

Phase ramping and modulation of reflectometer signals

Plasma Science and Fusion Center

TRANSPORT PROGRAM C-MOD 5 YEAR REVIEW MAY, 2003 PRESENTED BY MARTIN GREENWALD MIT PLASMA SCIENCE & FUSION CENTER

Relating the L-H Power Threshold Scaling to Edge Turbulence Dynamics

Kinetic damping in gyro-kinetic simulation and the role in multi-scale turbulence

Innovative Concepts Workshop Austin, Texas February 13-15, 2006

Possible Pedestal Transport Theory Models And Modeling Tests

Transcription:

NSTX Supported by Investigation of electron gyro-scale fluctuations in the National Spherical Torus Experiment David Smith Advisor: Ernesto Mazzucato Final public oral exam February 26, 2009

Investigation of electron gyro-scale fluctuations in the National Spherical Torus Experiment Transport in NSTX and ETG turbulence The NSTX collective scattering system Analysis tools Ray tracing calculations Linear gyrokinetic calculations Fluctuation measurements and analysis Enhanced fluctuations and the ETG critical gradient Reduced fluctuations, ETG growth rates, and E B flow shear Fluctuations and transport Fluctuation magnitudes and k-spectra Future work and summary NSTX Final public oral exam February 26, 2009 2

NSTX is well-suited to investigate the connection between ETG turbulence and electron thermal transport Turbulence & transport in NSTX Large E B flow shear with NBI inferred ITG/TEM suppression (no direct evidence) ion thermal transport is near neoclassical in H-mode (Kaye et al, NF, 2007 & PRL, 2007) Electron thermal transport remains anomalous what is the mechanism? Electron temperature gradient (ETG) turbulence ETG modes can be linearly unstable with growth rates exceeding E B flow shear rates NL GK simulations predict experimentallyrelevant electron thermal transport for ŝ > 0.4 for typical tokamak parameters (Nevins et al, PoP 2006) Electron gyro-scale fluctuations k^ρ e d 1 Propagate in electron diamagnetic direction NSTX Final public oral exam February 26, 2009 3

ETG turbulence can generate greater normalized transport than ITG turbulence due to a weak secondary instability G. Hammett, APS 2007 Rosenbluth and Longmire, Annals Phys. 1957 ETG and ITG modes are isomorphic for linear, electrostatic dynamics with adiabatic background species γ etg ~ vte RL For nonlinear ETG dynamics, the ion response weakens the secondary Kelvin-Helmholtz instability and ρ e -scale zonal flows Te χ gb e 2 e ρ v L Te te Consequently, ETG turbulence can saturate at higher normalized amplitudes and generate greater normalized transport than ITG turbulence for typical tokamak parameters χ χ itg i gb i χe 2 15 gb χ NSTX Final public oral exam February 26, 2009 4 etg e F. Jenko et al, PoP 2001 W. Nevins et al, PoP, 2006

Collective scattering measures density fluctuations with spatial and k-space localization NSTX Final public oral exam February 26, 2009 5

The NSTX collective scattering system measures fluctuations up to k ρ e ª 0.6 280 GHz collective scattering system Five detection channels k spectrum for up to five discrete k k^ρ e d 0.6 and k^ d 20 cm -1 ω spectrum from time-domain sampling 7.5 MS/s f 3.25 MHz Heterodyne detection Tangential scattering Beams nearly on equatorial midplane Sensitive to radial fluctuations Toroidal curvature enhances spatial localization along probe beam, ΔL ~ 10 cm Radial localization, ΔR ~ ±2.5 cm Steerable optics Scattering volume can be positioned throughout the outer half-plasma NSTX Final public oral exam February 26, 2009 6

Steerable optics enable good radial coverage; toroidal curvature enhances spatial localization Large toroidal curvature imposes an instrument selectivity function that constricts the scattering volume within the overlap volume along the probe beam. E. Mazzucato, PoP, 2003 E. Mazzucato, PPCF, 2006 NSTX Final public oral exam February 26, 2009 7

Scattering system hardware ~ 1 m BWO source ~200 mw at 280 GHz Overmoded, corrugated waveguide low-loss transmission delivers ~100 mw for PB Probe & receiving beams quasi-optically coupled with 5 cm dia. waist Heterodyne receiver five channels two mixing stages quadrature detection with 7.5 MHz bandwidth reference signal from BWO D. R. Smith et al, RSI, 2008 NSTX Final public oral exam February 26, 2009 8

Ray tracing calculations optimize configurations and provide measurement parameters Measurement parameters Ch. 2 Ch. 3 Ch. 4 Ch. 5 r/a 0.27 0.28 0.29 0.30 d min (cm) 0.1 0.1 0.1 0.1 k 7 (cm -1 ) 0.1 0.0 0.2 0.0 k r (cm -1 ) 6.9 11.0 14.6 17.8 k θ (cm -1 ) -1.6-3.4-4.4-5.5 k^ (cm -1 ) 7.1 11.5 15.2 18.6 k θ /k r 0.23 0.30 0.30 0.31 k^ρ e 0.23 0.38 0.51 0.62 k^ρ s 14 22 30 37 k T (cm -1 ) -0.4-0.7-1.2-1.3 f D (MHz) -1.0-1.8-3.0-3.3 Alignment Ion/electron drift direction ETG scale Doppler shift NSTX Final public oral exam February 26, 2009 9

Linear GS2 calculations provide ETG growth rates and critical gradients GS2 is an initial value, flux tube code that evolves the gyrokinetic Vlasov-Maxwell equations R L Te crit 1 + ZeffT T i e sˆ 1. 33 + 1. 91 q F. Jenko, Comp Phys Comm 2000 F. Jenko et al, PoP 2001 NSTX Final public oral exam February 26, 2009 10

Toroidal rotation from NBI (co-i p ) produces a Doppler shift in fluctuation spectra toward the ion drift direction 3.5 kg, 700 ka, 4 MW NBI, R=133 cm, r/a 0.55 Spurious reflections of the probe beam produce the ubiquitous interferometric signal at 0 Hz. NSTX Final public oral exam February 26, 2009 11

Enhanced fluctuations observed in core region of high-te L-mode plasma 5.5 kg, 600 ka, 1.2 MW HHFW, R=119 cm, r/a 0.28 NSTX Final public oral exam February 26, 2009 12

Enhanced fluctuations occur when Te is comparable to the ETG critical gradient Similar observation at R=134±2 cm Mazzucato, Smith, et al, PRL, 2008 NSTX Final public oral exam February 26, 2009 13

Enhanced fluctuations observed at mid-radii in NBI-heated H-mode plasma 4.5 kg, 700 ka, 4 MW NBI, R=133 cm, r/a 0.55 NSTX Final public oral exam February 26, 2009 14

Near ETG marginal stability, fluctuation amplitudes decrease when the E B shear rate exceeds the ETG growth rate D. R. Smith et al, submitted to PRL NSTX Final public oral exam February 26, 2009 15

E B shear rate is larger at higher B T, yet enhanced fluctuations are still observed 5.5 kg, 700 ka, 4 MW NBI, R=133 cm, r/a 0.55 NSTX Final public oral exam February 26, 2009 16

Near ETG marginal stability, fluctuation amplitudes decrease when the ETG growth rate drops below the E B shear rate NSTX Final public oral exam February 26, 2009 17

Enhanced fluctuations observed near magnetic axis in NBI-heated H-mode plasma 4.5 kg, 700 ka, 4 MW NBI, R=113 cm, r/a 0.15 NSTX Final public oral exam February 26, 2009 18

Enhanced fluctuations occur while the ETG mode is linearly stable Turbulence spreading from outer plasma to core? NSTX Final public oral exam February 26, 2009 19

Fluctuation amplitudes decrease at higher B T with similar E B shear rates, ETG growth rates, and Te Note that the 4.5 kg case exhibits the largest difference between E B shear rates and ETG growth rates. NSTX Final public oral exam February 26, 2009 20

Electron thermal diffusivity decreases when fluctuation amplitudes increase Observation suggests fluctuations simply respond to local plasma conditions without generating transport NSTX Final public oral exam February 26, 2009 21

Fluctuation magnitudes and wavenumber spectral exponents 5.5 kg discharges 124885 @ R=111-115 cm 124889 @ R=131-135 cm k - spectrum : δn e ( k r )/ n e 2 α k r NSTX Final public oral exam February 26, 2009 22

Fluctuation magnitudes are in order-of-magnitude agreement with NL GK simulations for typical tokamak parameters Spectral exponent is α = 4.6 near magnetic axis and α = 2.8 at midradius (Δα 0.5 0.6) ETG simulations with GYRO predict dn e (k r )/n e 2 º 10-10 10-11 for k r ρ s º 10 20, but spectral resolution is about 10 greater; synthetic diagnostics needed (R. Waltz et al, PoP 2007) NSTX Final public oral exam February 26, 2009 23

Ideas to extend high-k measurements and analysis Nonlinear gyrokinetic simulations Saturation amplitudes Turbulence spreading into core Synthetic diagnostics ETG isotropy in k r -k θ plane Adjust vertical position of scattering volume to vary k r /k θ Radial streamers Unique capability for NSTX; XP submitted 2/23/09 Mode coupling coefficients Mode coupling is necessary for turbulence Calculate mode coupling coefficients with bicoherence analysis (see Itoh et al, PoP, 2005) Unique capability for NSTX Low-k fluctuation measurements with BES Coupling between low-k ITG and high-k ETG ETG saturation via ion-scale zonal flows NSTX Final public oral exam February 26, 2009 24

Contributions to the NSTX program Contributions to the design, fabrication, and installation of the NSTX collective scattering system Quasi-optical design Waveguide and mirror placement Steerable exit window mirrors Extensive alignment and calibration activities Alignment mappings with FaroArm measurements Power and frequency response calibrations Computational tools used by other NSTX team members Ray tracing code GS2 tools (~16k linear GS2 runs, ~400k CPU-hrs, ~50 CPU-yrs) Key role in meeting NSTX milestones R(06-1) in FY06 and R(07-1) in FY07 3 invited talks, 2 RSI papers, 1 PRL submitted, and 1 APS-DPP invited paper in prep for PoP plus contributions to invited talks and papers by Ernesto and Howard NSTX Final public oral exam February 26, 2009 25

Summary of physics results In L-mode plasmas, enhanced fluctuation amplitudes occur when T e is comparable to or exceeds the ETG critical gradient At mid-radii in H-mode plasmas with large toroidal rotation, fluctuation amplitudes decrease when the E B shear rate exceeds the ETG growth rate Near the magnetic axis in H-mode plasmas, enhanced fluctuations were observed without unstable ETG modes For similar T e, ETG growth rates, and E B shear rates, fluctuation amplitudes decrease at higher B T at mid-radii in H-mode plasmas Transport analysis fails to establish a correlation between larger fluctuation amplitudes and higher electron thermal diffusivity Fluctuation magnitudes, dn e (k r )/n e 2 º 10-9 10-8, are within order-of magnitude agreement with NL GK simulations for typical tokamak parameters Wavenumber spectral exponents are in the range α = 2.8 4.6 in H-mode plasmas NSTX Final public oral exam February 26, 2009 26

Acknowledgements Ernesto Mazzucato (advisor), Hyeon Park (prior co-advisor), Woochang Lee, Cynthia Phillips, Stan Kaye, Dave Mikkelson, Howard Yuh, Ron Bell, Ben LeBlanc, Bob Kaita, Greg Hammett, Phil Efthimion, Mike Bell, Russ Feder, John Trafalski, Barbara Sarfaty, Jon Menard, Masa Ono, Luc Peterson, Mark Normberg, and many others NSTX Final public oral exam February 26, 2009 27

Backup slides NSTX Final public oral exam February 26, 2009 28

Again, electron thermal diffusivity decreases when fluctuation amplitudes increase NSTX Final public oral exam February 26, 2009 29

Similar magnitudes and exponents at lower TF 4.5 kg discharges 124887 @ R=111-115 cm 124888 @ R=131-135 cm NSTX Final public oral exam February 26, 2009 30