Javascript must be enabled to continue!
Numerical turbulence simulations of intermittent fluctuations in the scrape-off layer of magnetized plasmas
View through CrossRef
Intermittent fluctuations in the boundary of magnetically confined plasmas are investigated by numerical turbulence simulations of a reduced fluid model describing the evolution of the plasma density and electric drift vorticity in the two-dimensional plane perpendicular to the magnetic field. Two different cases are considered: one describing resistive drift waves in the edge region and another including only the interchange instability due to unfavorable magnetic field curvature in the scrape-off layer. Analysis of long data time series obtained by single-point recordings is compared to predictions of a stochastic model describing the plasma fluctuations as a superposition of uncorrelated pulses. For both cases investigated, the radial particle density profile in the scrape-off layer is exponential with a radially constant scale length. The probability density function for the particle density fluctuations in the far scrape-off layer has an exponential tail. Radial motion of blob-like structures leads to large-amplitude bursts with an exponential distribution of peak amplitudes and the waiting times between them. The average burst shape is well described by a two-sided exponential function. The frequency power spectral density of the particle density is simply that of the average burst shape and is the same for all radial positions in the scrape-off layer. The fluctuation statistics obtained from the numerical simulations are in excellent agreement with recent experimental measurements on magnetically confined plasmas. The statistical framework defines a new validation metric for boundary turbulence simulations.
AIP Publishing
Title: Numerical turbulence simulations of intermittent fluctuations in the scrape-off layer of magnetized plasmas
Description:
Intermittent fluctuations in the boundary of magnetically confined plasmas are investigated by numerical turbulence simulations of a reduced fluid model describing the evolution of the plasma density and electric drift vorticity in the two-dimensional plane perpendicular to the magnetic field.
Two different cases are considered: one describing resistive drift waves in the edge region and another including only the interchange instability due to unfavorable magnetic field curvature in the scrape-off layer.
Analysis of long data time series obtained by single-point recordings is compared to predictions of a stochastic model describing the plasma fluctuations as a superposition of uncorrelated pulses.
For both cases investigated, the radial particle density profile in the scrape-off layer is exponential with a radially constant scale length.
The probability density function for the particle density fluctuations in the far scrape-off layer has an exponential tail.
Radial motion of blob-like structures leads to large-amplitude bursts with an exponential distribution of peak amplitudes and the waiting times between them.
The average burst shape is well described by a two-sided exponential function.
The frequency power spectral density of the particle density is simply that of the average burst shape and is the same for all radial positions in the scrape-off layer.
The fluctuation statistics obtained from the numerical simulations are in excellent agreement with recent experimental measurements on magnetically confined plasmas.
The statistical framework defines a new validation metric for boundary turbulence simulations.
Related Results
Impact of magneto-rotational instability on grain growth in protoplanetary disks
Impact of magneto-rotational instability on grain growth in protoplanetary disks
Grain growth in protoplanetary disks is the first step towards planet formation. One of the most important pieces in the grain growth model is calculating the collisional velocity ...
High Resolution Large Eddy Simulations to Evaluate Turbulence Properties Within a Real Helicopter Engine Combustor
High Resolution Large Eddy Simulations to Evaluate Turbulence Properties Within a Real Helicopter Engine Combustor
In a gas turbine, the combustor is feeding the turbine with hot gases at a high level of turbulence which in turns strongly enhances the heat transfer in the turbine. It is thus of...
Quantum turbulence
Quantum turbulence
Abstract
Chapter 5 delves into quantum turbulence in superfluid helium and atomic Bose-Einstein condensates (BECs). The foundation of quantum turbulence research ...
Investigation of Severe Turbulence Over China During 2018–2025 From In Situ
EDR
Data
Investigation of Severe Turbulence Over China During 2018–2025 From In Situ
EDR
Data
ABSTRACT
The nation‐scale airborne turbulence features remain unclear in China. We investigated the characteristics of turbulence for the per...
Passive scalar mixing: Analytic study of time scale ratio, variance, and mix rate
Passive scalar mixing: Analytic study of time scale ratio, variance, and mix rate
Some very reasonable approximations, consistent with numerical and experimental evidence, were applied to the skewness and palinstrophy coefficients in the dissipation equations to...
The diffusion limit of ballistic transport in the scrape-off layer
The diffusion limit of ballistic transport in the scrape-off layer
At least the far scrape-off layer of magnetically confined fusion plasmas transport is intermittent and non-diffusive as observed by the appearance of plasma filaments. Transport c...
Analysis of energetic particle-driven Alfvénic instabilities in tokamak and stellarator plasmas using three dimensional numerical tools
Analysis of energetic particle-driven Alfvénic instabilities in tokamak and stellarator plasmas using three dimensional numerical tools
In this thesis, a detailed analysis of the experientially observed energetic particle-driven Alfvénic instabilities in tokamak and stellarator plasmas using three dimensional numer...
Characteristic parameters of adaptive optical imaging system in oceanic turbulence
Characteristic parameters of adaptive optical imaging system in oceanic turbulence
Since recently one is interested in underwater communications, imaging, sensing and lidar appeared, it is important to study characteristic parameters of the adaptive optical imagi...

