Modelling and Application of Doppler Reflectometry for Advanced Turbulence Studies on the ASDEX Upgrade Tokamak and the TJ-II Stellarator

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Book Synopsis Modelling and Application of Doppler Reflectometry for Advanced Turbulence Studies on the ASDEX Upgrade Tokamak and the TJ-II Stellarator by : Javier Rodrigo Pinzón Acosta

Download or read book Modelling and Application of Doppler Reflectometry for Advanced Turbulence Studies on the ASDEX Upgrade Tokamak and the TJ-II Stellarator written by Javier Rodrigo Pinzón Acosta and published by . This book was released on 2018 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Modelling and Application of Doppler Reflectometry for Advanced Turbulence Studies on the ASDEX Upgrade Tokamak and the TJ-II Stellarator

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Book Synopsis Modelling and Application of Doppler Reflectometry for Advanced Turbulence Studies on the ASDEX Upgrade Tokamak and the TJ-II Stellarator by : Javier Rodrigo Pinzón Acosta

Download or read book Modelling and Application of Doppler Reflectometry for Advanced Turbulence Studies on the ASDEX Upgrade Tokamak and the TJ-II Stellarator written by Javier Rodrigo Pinzón Acosta and published by . This book was released on 2018 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Plasma Turbulence Studies Using Correlation Doppler Reflectometry on the ASDEX Upgrade Tokamak

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Total Pages : 121 pages
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Book Synopsis Plasma Turbulence Studies Using Correlation Doppler Reflectometry on the ASDEX Upgrade Tokamak by : Jasmine Schirmer

Download or read book Plasma Turbulence Studies Using Correlation Doppler Reflectometry on the ASDEX Upgrade Tokamak written by Jasmine Schirmer and published by . This book was released on 2005 with total page 121 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Development of a Flexible Doppler Reflectometry System and Its Application to Turbulence Characterization in the ASDEX Upgrade Tokamak

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Total Pages : 119 pages
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Book Synopsis Development of a Flexible Doppler Reflectometry System and Its Application to Turbulence Characterization in the ASDEX Upgrade Tokamak by : Carolin Helma Tröster

Download or read book Development of a Flexible Doppler Reflectometry System and Its Application to Turbulence Characterization in the ASDEX Upgrade Tokamak written by Carolin Helma Tröster and published by . This book was released on 2008 with total page 119 pages. Available in PDF, EPUB and Kindle. Book excerpt:

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

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Book Synopsis Theoretical Analysis and Full-wave Simulations Combined in the Development of the Synthetic Doppler Reflectometry Diagnostics for Tokamaks by : Oleg Krutkin

Download or read book Theoretical Analysis and Full-wave Simulations Combined in the Development of the Synthetic Doppler Reflectometry Diagnostics for Tokamaks written by Oleg Krutkin and published by . This book was released on 2020 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: 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.

Experimental Study of Turbulence at the Plasma Edge of the ASDEX Upgrade Tokamak with an Ultra-fast Swept Reflectometer

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Book Synopsis Experimental Study of Turbulence at the Plasma Edge of the ASDEX Upgrade Tokamak with an Ultra-fast Swept Reflectometer by : Anna Medvedeva

Download or read book Experimental Study of Turbulence at the Plasma Edge of the ASDEX Upgrade Tokamak with an Ultra-fast Swept Reflectometer written by Anna Medvedeva and published by . This book was released on 2017 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Development and Application of Poloidal Correlation Reflectometry to Study Turbulent Structures in the ASDEX Upgrade Tokamak

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Book Synopsis Development and Application of Poloidal Correlation Reflectometry to Study Turbulent Structures in the ASDEX Upgrade Tokamak by : Dmitrii Prisiazhniuk

Download or read book Development and Application of Poloidal Correlation Reflectometry to Study Turbulent Structures in the ASDEX Upgrade Tokamak written by Dmitrii Prisiazhniuk and published by . This book was released on 2017 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Nuclear Fusion

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Total Pages : 632 pages
Book Rating : 4.:/5 (1 download)

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Book Synopsis Nuclear Fusion by :

Download or read book Nuclear Fusion written by and published by . This book was released on 2006-12 with total page 632 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Studies of Turbulence and Flows in the DIII-D Tokamak

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Total Pages : 307 pages
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Book Synopsis Studies of Turbulence and Flows in the DIII-D Tokamak by : Jon Clark Hillesheim

Download or read book Studies of Turbulence and Flows in the DIII-D Tokamak written by Jon Clark Hillesheim and published by . This book was released on 2012 with total page 307 pages. Available in PDF, EPUB and Kindle. Book excerpt: Understanding the turbulent transport of particles, momentum, and heat continues to be an important goal for magnetic confinement fusion energy research. The turbulence in tokamaks and other magnetic confinement devices is widely thought to arise due to linearly unstable gyroradius-scale modes. A long predicted characteristic of these linear instabilities is a critical gradient, where the modes are stable below a critical value related to the gradient providing free energy for the instability and unstable above it. In this dissertation, a critical gradient threshold for long wavelength ($k_{\theta} \rho_s \lesssim 0.4$) electron temperature fluctuations is reported, where the temperature fluctuations do not change, within uncertainties, below a threshold value in $L_{T_e}^{-1}=\nabla T_e / T_e$ and steadily increase above it. This principal result, the direct observation of a critical gradient for electron temperature fluctuations, is also the first observation of critical gradient behavior for \textit{any} locally measured turbulent quantity in the core of a high temperature plasma in a systematic experiment. The critical gradient was found to be $L_{T_e}^{-1}_{crit}=2.8 \pm 0.4 \ \mathrm{m}^{-1}$. The experimental value for the critical gradient quantitatively disagrees with analytical predictions for its value. In the experiment, the local value of $L_{T_e}^{-1}$ was systematically varied by changing the deposition location of electron cyclotron heating gyrotrons in the DIII-D tokamak. The temperature fluctuation measurements were acquired with a correlation electron cyclotron emission radiometer. The dimensionless parameter $\eta_e=L_{n_e}/L_{T_e}$ is found to describe both the temperature fluctuation threshold and a threshold observed in linear gyrofluid growth rate calculations over the measured wave numbers, where a rapid increase at $\eta_e \approx 2$ is observed in both. Doppler backscattering (DBS) measurements of intermediate-scale density fluctuations also show a frequency-localized increase on the electron diamagnetic side of the measured spectrum that increases with $L_{T_e}^{-1}$. Measurements of the crossphase angle between long wavelength electron density and temperature fluctuations, as well as measurements of long wavelength density fluctuation levels were also acquired. Multiple aspects of the fluctuation measurements and calculations are individually consistent with the attribution of the critical gradient to the $\nabla T_e$-driven trapped electron mode. The accumulated evidence strongly enforces this conclusion. The threshold value for the temperature fluctuation measurements was also within uncertainties of a critical gradient for the electron thermal diffusivity found through heat pulse analysis, above which the electron heat flux and electron temperature profile stiffness rapidly increased. Toroidal rotation was also systematically varied with neutral beam injection, which had little effect on the temperature fluctuation measurements. The crossphase measurements indicated the presence of different instabilities below the critical gradient depending on the neutral beam configuration, which is supported by linear gyrofluid calculations. In a second set of results reported in this dissertation, the geodesic acoustic mode is investigated in detail. Geodesic acoustic modes (GAMs) and zonal flows are nonlinearly driven, axisymmetric ($m=0,\ n=0$ potential) $E \times B$ flows, which are thought to play an important role in establishing the saturated level of turbulence in tokamaks. Zonal flows are linearly stable, but are driven to finite amplitude through nonlinear interaction with the turbulence. They are then thought to either shear apart the turbulent eddies or act as a catalyst to transfer energy to damped modes. Results are presented showing the GAM's observed spatial scales, temporal scales, and nonlinear interaction characteristics, which may have implications for the assumptions underpinning turbulence models towards the tokamak edge ($r/a \gtrsim 0.75$). Measurements in the DIII-D tokamak have been made with multichannel Doppler backscattering systems at toroidal locations separated by $180^{\circ}$; analysis reveals that the GAM is highly coherent between the toroidally separated systems ($\gamma> 0.8$) and that measurements are consistent with the expected $m=0,\ n=0$ structure. Observations show that the GAM in L-mode plasmas with $\sim 2.5-4.5$ MW auxiliary heating occurs as a radially coherent eigenmode, rather than as a continuum of frequencies as occurs in lower temperature discharges; this is consistent with theoretical expectations when finite ion Larmor radius effects are included. The intermittency of the GAM has been quantified, revealing that its autocorrelation time is fairly short, ranging from about 4 to about 15 GAM periods in cases examined, a difference that is accompanied by a modification to the probability distribution function of the $E \times B$ velocity at the GAM frequency. Conditionally-averaged bispectral analysis shows the strength of the nonlinear interaction of the GAM with broadband turbulence can vary with the magnitude of the GAM. Data also indicates a wave number dependence to the GAM's interaction with turbulence. Measurements also showed the existence of additional low frequency zonal flows (LFZF) at a few kilohertz in the core of DIII-D plasmas. These LFZF also correlated toroidally. The amplitude of both the GAM and LFZF were observed to depend on toroidal rotation, with both types of flows barely detectable in counter-injected plasmas. In a third set of results the development of diagnostic hardware, techniques used to acquire the above data, and related work is described. A novel multichannel Doppler backscattering system was developed. The five channel system operates in V-band (50-75 GHz) and has an array of 5 frequencies, separated by 350 MHz, which is tunable as a group. Laboratory tests of the hardware are presented. Doppler backscattering is a diagnostic technique for the radially localized measurement of intermediate-scale ($k_{\theta} \rho_s \sim 1$) density fluctuations and the laboratory frame propagation velocity of turbulent structures. Ray tracing, with experimental profiles and equilibria for inputs, is used to determine the scattering wave number and location. Full wave modeling, also with experimental inputs, is used for a synthetic Doppler backscattering diagnostic for nonlinear turbulence simulations. A number of non-ideal processes for DBS are also investigated; their impact on measurements in DIII-D are found, for the most part, to be small.

Turbulence Measurements at the ASDEX Upgrade Tokamak for a Comprehensive Validation of the Gyrokinetic Turbulence Code GENE

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Book Synopsis Turbulence Measurements at the ASDEX Upgrade Tokamak for a Comprehensive Validation of the Gyrokinetic Turbulence Code GENE by : Klara Höfler

Download or read book Turbulence Measurements at the ASDEX Upgrade Tokamak for a Comprehensive Validation of the Gyrokinetic Turbulence Code GENE written by Klara Höfler and published by . This book was released on 2022 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Experimental Application and Numerical Study of Reflectometry in the Alcator C-Mod Tokamak

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Total Pages : 182 pages
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Book Synopsis Experimental Application and Numerical Study of Reflectometry in the Alcator C-Mod Tokamak by : Yijun Lin

Download or read book Experimental Application and Numerical Study of Reflectometry in the Alcator C-Mod Tokamak written by Yijun Lin and published by . This book was released on 2001 with total page 182 pages. Available in PDF, EPUB and Kindle. Book excerpt: The amplitude modulated ordinary-mode reflectometer in the Alcator C-Mod tokamak is used to study the quasi-coherent (QC) continuous edge fluctuations in enhanced Da (EDA) H-modes. Reflectometer data show that the QC fluctuations are localized near the center of the density pedestal. The radial width (FWHM) is usually in the range of 0.1 - 0.3 cm. The width increases with the increase of resistivity rl. The line-integrated fluctuation level approximately scales with (v*q95).56. This result indicates that higher q95, higher density, and lower temperature are favored for the QC fluctuations. Neither the location nor the width changes significantly in an EDA H-mode period, while the frequency and level vary. A 2-D full-wave code has been developed to simulate and quantitatively interpret reflectometry signals. The code uses the finite-difference time-domain method to solve Maxwell's equations in two dimensions. Perfectly-matched layers are used as the boundary. The Huygens source technique is used to generate Gaussian beams and separate the reflected waves from the total field. Simulations based on realistic 2-D geometry of the Alcator C-Mod reflectometer provide a calibration curve by which we can relate the QC fluctuations in reflectometry signals to plasma density fluctuations. Results indicate that the line-integrated fluctuation level derived from reflectometry is similar to that measured by the phase contrast imaging system. Simulations also indicate that plasma curvature extends the reflectometry response to fluctuations of high poloidal wavenumber. A preliminary study indicates that reflectometry can be used to estimate the correlation length of the turbulence in Alcator C-Mod provided that the fluctuation level is small.

Application of Doppler Weather Radar to Turbulence Measurements which Affect Aircraft

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Total Pages : 62 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Application of Doppler Weather Radar to Turbulence Measurements which Affect Aircraft by : Jean Theodore Lee

Download or read book Application of Doppler Weather Radar to Turbulence Measurements which Affect Aircraft written by Jean Theodore Lee and published by . This book was released on 1977 with total page 62 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Global Analysis of a Reflectometry Database for Systematic Study of Plasma Turbulence in Tokamaks

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Book Synopsis Global Analysis of a Reflectometry Database for Systematic Study of Plasma Turbulence in Tokamaks by : Yan Sun

Download or read book Global Analysis of a Reflectometry Database for Systematic Study of Plasma Turbulence in Tokamaks written by Yan Sun and published by . This book was released on 2019 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: To systematically study the plasma turbulence in tokamaks, a parametrization method of frequency spectra from the Tore Supra reflectometry database has been developed. The database includes 350,000 acquisitions obtained from 6,000 discharges with different heating scenarios. In the parametrization, each spectrum has been decomposed into four component: the direct current component, the low-frequency (LF) fluctuations, the broadband (BB) turbulence and the noise level, and each component has been fitted by a function. Specifically for the BB turbulence component, three different functions have been tested and compared. The generalized Gaussian function and the Taylor function have shown excellent fitting performance. In Ohmic plasmas, EBB in the saturated Ohmic confinement regime is observed to be systematically higher than in the linear Ohmic confinement regime. In L-mode plasmas, EBB in the ion cyclotron resonance heating plasmas is globally much higher than in the lower hybrid heating plasmas. The collisional effects on the modifications of the spectra have also been studied. With the previous kinetic simulation results, a change of the dominating micro-instabilities, i.e., between the trapped electron modes and the ion temperature gradients modes, has been proposed to explain the behaviors of EBB, supported by database analysis of the density peaking and the LF component.

Model Reduction for Tokamak Plasma Turbulence

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Book Synopsis Model Reduction for Tokamak Plasma Turbulence by : Camille Gillot

Download or read book Model Reduction for Tokamak Plasma Turbulence written by Camille Gillot and published by . This book was released on 2020 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Optimal control of tokamak plasmas requires efficient and accurate prediction of heat and matter transport. Growing from kinetic resonant instabilities, turbulence saturates by involving many scales, from the small vortex up to the back-reaction on the density and temperature profiles. Self-organisation processes are of particular interest, encompassing spontaneous zonal flow genera- tion and transport by avalanche. First principle numerical simulation codes like GYSELA allow studying the gyro-kinetic evolution of the particle distribution function. The large model size and cost prompts the need for reduction. Removing velocity dimensions is the so-called collisionless closure problem for fluid equations. Earlier approaches are extended and generalised by calling to the dynamical systems and optimal control litterature. In particular, we apply the balanced truncation and rational interpolation to the one-dimensional linear VlasovPoisson problem. The interpolation method features a cheap and versatile formulation, opening the door to wider use for more complex phenomena. Quasi-linear theory is the reference model for turbulent effects. The GYSELA three-dimensional output is analysed to estimate the robustness of linear properties in turbulent filaments. Key quasi-linear quantities carry over to the non-linear regime. Effective velocities and shape of turbulent structures are computed, and match expected group velocities and linear eigenmode. Nevertheless, the turbulent potential spectrum must be specified externally to quasi- linear models. This results in radially travelling unstable linear solutions that share many properties of turbulent avalanches seen in numerical simulations.

Application of a Novel Laser-Doppler Velocimeter for Turbulence: Structural Measurements in Turbulent Boundary Layers

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Total Pages : 205 pages
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Book Synopsis Application of a Novel Laser-Doppler Velocimeter for Turbulence: Structural Measurements in Turbulent Boundary Layers by :

Download or read book Application of a Novel Laser-Doppler Velocimeter for Turbulence: Structural Measurements in Turbulent Boundary Layers written by and published by . This book was released on 2006 with total page 205 pages. Available in PDF, EPUB and Kindle. Book excerpt: An advanced laser-Doppler velocimeter (LDV), deemed the 'comprehensive LDV', is designed to acquire fully-resolved turbulence structural measurements in high Reynolds number two- and three-dimensional turbulent boundary layers. The new instrument combines, for the first time, new techniques allowing for the direct measurement of particle acceleration and sub-measurement-volume-scale position resolution so that second-order 3D particle trajectories may be measured at high repetitions. Using these measurements, several terms in the Reynolds stress transport equations may be directly estimated, giving new data for modeling and understanding the processes leading to the transport of turbulence in boundary layer flows. Measurements utilizing the CompLDV technologies are presented and include turbulence dissipation rate and fluctuating velocity-pressure gradient correlations that have been measured in 2D and 3D turbulent boundary layers using the unique capabilities of the 'comprehensive' LDV. Many of these measurements are the first of their kind ever acquired in high Reynolds number turbulent flows. The flat-plate turbulent boundary layer is studied at several Reynolds numbers up to Re-theta ~7500 to examine Reynolds numbers effects on terms such as the velocity-pressure gradient correlation and the dissipation rate in the Reynolds transport equations. Measurements are also presented in a pressure-driven three-dimensional turbulent boundary layer created upstream from a wing-body junction. The current results complement the extensive data from previous studies and provide even richer depth of knowledge on the most completely-documented 3D boundary layer flow in existence. Further measurements include the effects of high free-stream turbulence on flat plate turbulent boundary layers and a wing/body junction flow that is similar to a gas turbine flow.

The Application of X-mode Reflectometry to the Study of Large Scale Fluctuations in TFTR.

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Total Pages : 5 pages
Book Rating : 4.:/5 (16 download)

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Book Synopsis The Application of X-mode Reflectometry to the Study of Large Scale Fluctuations in TFTR. by :

Download or read book The Application of X-mode Reflectometry to the Study of Large Scale Fluctuations in TFTR. written by and published by . This book was released on 1993 with total page 5 pages. Available in PDF, EPUB and Kindle. Book excerpt: It has been suggested for some time that microwave reflectometry, has the potential for measuring the large scale structure of density fluctuations in tokamak turbulence with greatly improved spatial resolution over existing scattering techniques. The motivation for developing fluctuation diagnostics with improved spatial resolution of large scale structures is that such fluctuations may potentially account for the anomalous particle and energy transport observed in tokamaks. On TFTR we now have operational a four channel X-mode reflectometer system comprising of three fixed frequency channels at 140, 132.5, and 125 GHz and a able frequency channel scanning between 110--123 GHz. Each channel detects fluctuations from a region on the equatorial plane of the plasma torus with spatial resolution of [approx]5 cm in the poloidal direction and [approx]1 cm in the radial direction. Properties of the plasma turbulence are inferred from the amplitude and spectral coherence of phase fluctuations impressed on the reflected wave by density irregularities at or near the cutoff. Experimental results are presented which show the existence of previously unobserved large scale (k[perpendicular][rho][sub i]“1) random and coherent density fluctuations in the Ohmic and Supershot regimes of TFTR.

Tokamak Fluidlike Equations, with Applications to Turbulence and Transport in H Mode Discharges

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Total Pages : 14 pages
Book Rating : 4.:/5 (727 download)

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Book Synopsis Tokamak Fluidlike Equations, with Applications to Turbulence and Transport in H Mode Discharges by :

Download or read book Tokamak Fluidlike Equations, with Applications to Turbulence and Transport in H Mode Discharges written by and published by . This book was released on 1990 with total page 14 pages. Available in PDF, EPUB and Kindle. Book excerpt: Significant progress has been made in developing tokamak fluidlike equations which are valid in all collisionality regimes in toroidal devices, and their applications to turbulence and transport in tokamaks. The areas highlighted in this paper include: the rigorous derivation of tokamak fluidlike equations via a generalized Chapman-Enskog procedure in various collisionality regimes and on various time scales; their application to collisionless and collisional drift wave models in a sheared slab geometry; applications to neoclassical drift wave turbulence; i.e. neoclassical ion-temperature-gradient-driven turbulence and neoclassical electron-drift-wave turbulence; applications to neoclassical bootstrap-current-driven turbulence; numerical simulation of nonlinear bootstrap-current-driven turbulence and tearing mode turbulence; transport in Hot-Ion H mode discharges. 20 refs., 3 figs.