Low-q resonances, transport barriers, and secondary electrostatic convective cells
نویسنده
چکیده
Recent experimental observations have suggested key characteristics of internal transport barrier !ITB" formation near low-q surfaces in off-axis minimum-q !OAMq" discharges. These observations identify mean profile flattening localized to the low-q surface as a transition precursor in the absence of observable magnetic field perturbations. This observation suggests an electrostatic model of ITB formation which accounts for strong transport in the immediate vicinity of the lowq surface, as well as the formation of an ITB nearby the surface. Here, a low-m electrostatic convective cell driven by modulational instability of the background drift wave turbulence is discussed in the context of ITB formation near low-q resonances in OAMq discharges. Unlike pure m=n=0 zonal flows, convective cells are capable of intense mixing localized around low-q resonant surfaces, thus relaxing !T and !n profiles at the k ·B=0 resonance. However, nearby, but off the low-q resonant surface the magnitude of convective cell shear is maximal, providing an effective means of triggering a transport barrier there. Field line bending coupled with collisional viscosity are found to strongly damp the intensity of the vortical flows except in the case of weak magnetic shear. Furthermore, collisionless nonlinear saturation mechanisms such as nonlinear wave trapping are largely circumvented due to the strong mixing of the convective cell. This suggests that low-m convective cells may play a key role in the regulation of turbulent transport near low-q resonances for OAMq discharges. © 2007 American Institute of Physics. #DOI: 10.1063/1.2806327$
منابع مشابه
Electrostatic forces in fibrous filters—a review
Among various devices for removing submicrometer particles from a gas stream, fibrous filters have the advantages of providing high collection efficiencies at low-pressure drop. Even in the absence of electrostatic forces, a fibrous filter captures particles efficiently by inertial impaction, interception, and convective Brownian diffusion. Application of electrostatic forces can significantly ...
متن کاملKinematic structure of convective-scale elements in the rainbands of Hurricanes Katrina and Rita (2005)
[1] Airborne Doppler radar data collected during the Hurricane Rainband and Intensity Change Experiment (RAINEX) show the convective-scale air motions embedded in the principal rainbands of hurricanes Katrina and Rita. These embedded convective cells have overturning updrafts and low-level downdrafts (originating at 2–4 km) that enter the rainband on its radially outward side and cross over eac...
متن کاملTransport induced by large scale convective structures in a dipole-confined plasma.
Convective structures characterized by E×B motion are observed in a dipole-confined plasma. Particle transport rates are calculated from density dynamics obtained from multipoint measurements and the reconstructed electrostatic potential. The calculated transport rates determined from the large-scale dynamics and local probe measurements agree in magnitude, show intermittency, and indicate that...
متن کاملApplication of the DLVO theory for particle deposition problems
Implications of the DLVO theory for problems associated with colloid particle adsorption and deposition at solidrliquid interfaces were reviewed. The electrostatic interactions Ž . between two planar double-layers described by the classical Poisson]Boltzmann PB equation were first discussed. Then, the approximate models for calculating interactions of Ž . curved interfaces e.g. spheres were exp...
متن کاملCoherent structures, intermittent turbulence, and dissipation in high- temperature plasmas
Related Articles Residual turbulence from velocity shear stabilized interchange instabilities Phys. Plasmas 20, 012301 (2013) Freely decaying turbulence in two-dimensional electrostatic gyrokinetics Phys. Plasmas 19, 122305 (2012) Magnetic turbulence suppression by a helical mode in a cylindrical geometry Phys. Plasmas 19, 122304 (2012) Effect of secondary convective cells on turbulence intensi...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2013