Experimental and Numerical Study of Turbulence in Fusion Plasmas Using Reflectometry Synthetic Diagnostics

Experimental and Numerical Study of Turbulence in Fusion Plasmas Using Reflectometry Synthetic Diagnostics PDF Author: Georgiy Zadvitskiy
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Experimental and Numerical Study of Turbulence in Fusion Plasmas Using Reflectometry Synthetic Diagnostics

Experimental and Numerical Study of Turbulence in Fusion Plasmas Using Reflectometry Synthetic Diagnostics PDF Author: Georgiy Zadvitskiy
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Theoretical Analysis and Full-wave Simulations Combined in the Development of the Synthetic Doppler Reflectometry Diagnostics for Tokamaks

Theoretical Analysis and Full-wave Simulations Combined in the Development of the Synthetic Doppler Reflectometry Diagnostics for Tokamaks PDF Author: Oleg Krutkin
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Plasma turbulence is nowadays believed to be responsible for the anomalous transport and consequently the degradation of discharge conditions in magnetic confined fusion devices, such as tokamaks. Since a good energy confinement time is crucial for achieving a positive energy yield, understanding and control of turbulent processes is currently one of the major goals of the Magnetic Confinement Fusion research. To study the plasma turbulence, experimental tools that are able to provide information about its characteristics are necessary. Such tools include microwave diagnostics and, in particular, Doppler reflectometry and radial correlation Doppler reflectometry. While these non-invasive diagnostics benefit from the simplicity of the setup, there are a number of unresolved issues when it comes to the interpretation of the experimental data. Issues such are small-angle scattering and plasma curvature effects limit the range of applicability of the simple interpretation of the measurements, while nonlinear scattering effects make it inapplicable altogether. These problems make it necessary to validate the interpretation of experimental data. Thus, the primary goal of this thesis was to create a synthetic Doppler reflectometry and radial correlation Doppler reflectometry diagnostic for the interpretation of the FT-2 tokamak experimental results. This goal is achieved by applying full-wave IPF-FD3D code to the results of gyrokinetic plasma modelling with ELMFIRE code to obtain the synthetic signals, which are then benchmarked with experimental measurements. The synthetic diagnostic is also used for a more general study of the possibility of nonlinear effects influencing the experimental measurements. Finally, the secondary goal of this thesis was to perform an analytical research of plasma curvature effects, nonlinear scattering and a novel technique for turbulence structures' characterization. The first principles analytical study was performed by considering the Helmholtz equation and obtaining an analytical expression for the experimental signals. The results for the latter two topics were numerically validated with the partial use of specially developed linear numerical model and the full-wave IPF-FD3D code.

Plasma and Fluid Turbulence

Plasma and Fluid Turbulence PDF Author: A. Yoshizawa
Publisher: CRC Press
ISBN: 1420033697
Category : Science
Languages : en
Pages : 459

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Book Description
Theory and modelling with direct numerical simulation and experimental observations are indispensable in the understanding of the evolution of nature, in this case the theory and modelling of plasma and fluid turbulence. Plasma and Fluid Turbulence: Theory and Modelling explains modelling methodologies in depth with regard to turbulence phenomena a

Experimental and Numerical Investigations of Plasma Turbulence

Experimental and Numerical Investigations of Plasma Turbulence PDF Author: Thomas Huld
Publisher:
ISBN: 9788755016248
Category : Plasma turbulence
Languages : en
Pages : 96

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Book Description
Experiments in edge turbulence in a single-ended Q-machine -- Numerical simulation of the edge turbulence -- Measurements on wave propagation -- Software development for measurement, controlling experiments, and collecting data.

Experimental and Numerical Investigations of Turbulence-dominated Plasmas

Experimental and Numerical Investigations of Turbulence-dominated Plasmas PDF Author: Anthonius W. Kolfschoten
Publisher:
ISBN:
Category :
Languages : en
Pages : 44

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Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 892

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Numerical Study of Plasma-edge Turbulence and Velocity Shear

Numerical Study of Plasma-edge Turbulence and Velocity Shear PDF Author: G. Manfredi
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Identification of Trapped Electron Modes in Frequency Fluctuation Spectra of Fusion Plasmas

Identification of Trapped Electron Modes in Frequency Fluctuation Spectra of Fusion Plasmas PDF Author: Hugo Arnichand
Publisher:
ISBN:
Category :
Languages : en
Pages : 138

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Plasma Turbulence is responsible of the anomalous transport which degrades the performances of the fusion devices. Turbulence is trigger by different instabilities such as the Ion Temperature Gradient Modes (ITG) and the Trapped Electron Modes (TEM). As ITG and TEM are driven by different gradients, they can either both be stable, both coexist or give way to a single dominant mode. The transport and the toroidal velocity induced by ITG and TEM can be noticeably different thus it is important to be able to discriminate experimentally the dominant modes. Different experimental approaches exist to distinguish ITG from TEM but they are complex and not systematically feasible. This thesis shows that frequency fluctuation spectra can provide an additional experimental indication of the dominant mode.These spectra can show different components:-Broadband spectra (delta-f around hundreds of kHz) which are generally attributed to turbulence.-Coherent modes (delta-f around 1 kHz) which oscillate at a very well-defined frequency.-Quasi-Coherent (QC) modes (delta-f around tens of kHz) which oscillate at a rather well defined frequency but are reminiscent of the broadband fluctuations.Reflectometry measurements and gyrokinetic simulations combined with a synthetic reflectometer diagnostics show that TEM can induce QC modes in the core region of Ohmic plasmas. The QC signature of TEM is due to their narrow frequency spectrum. The QC modes observed in the plasma core were renamed QC-TEM due to their TEM origins. Then, the first applications of these results are made in Ohmic and ECRH plasmas to investigate the role of TEM, and transitions are reported between QC-TEM and MHD modes.

Fusion Physics

Fusion Physics PDF Author: MITSURU KIKUCHI
Publisher: International Atomic Energy
ISBN:
Category : Antiques & Collectibles
Languages : en
Pages : 1158

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Book Description
Humans do not live by bread alone. Physically we are puny creatures with limited prowess, but with unlimited dreams. We see a mountain and want to move it to carve out a path for ourselves. We see a river and want to tame it so that it irrigates our fields. We see a star and want to fly to its planets to secure a future for our progeny. For all this, we need a genie who will do our bidding at a flip of our fingers. Energy is such a genie. Modern humans need energy and lots of it to live a life of comfort. In fact, the quality of life in different regions of the world can be directly correlated with the per capita use of energy [1.1–1.5]. In this regard, the human development index (HDI) of various countries based on various reports by the United Nations Development Programme (UNDP) [1.6] (Fig. 1.1), which is a parameter measuring the quality of life in a given part of the world, is directly determined by the amount of per capita electricity consumption. Most of the developing world (~5 billion people) is crawling up the UN curve of HDI versus per capita electricity consumption, from abysmally low values of today towards the average of the whole world and eventually towards the average of the developed world. This translates into a massive energy hunger for the globe as a whole. It has been estimated that by the year 2050, the global electricity demand will go up by a factor of up to 3 in a high growth scenario [1.7–1.9]. The requirements beyond 2050 go up even higher.

Magnetic Fusion Technology

Magnetic Fusion Technology PDF Author: Thomas J. Dolan
Publisher: Springer Science & Business Media
ISBN: 1447155564
Category : Technology & Engineering
Languages : en
Pages : 816

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Book Description
Magnetic Fusion Technology describes the technologies that are required for successful development of nuclear fusion power plants using strong magnetic fields. These technologies include: • magnet systems, • plasma heating systems, • control systems, • energy conversion systems, • advanced materials development, • vacuum systems, • cryogenic systems, • plasma diagnostics, • safety systems, and • power plant design studies. Magnetic Fusion Technology will be useful to students and to specialists working in energy research.