Breaking the up-down symmetry of the tokamak poloidal cross-section can significantly increase the spontaneous rotation due to turbulent momentum transport. In this work, we optimize the shape of flux surfaces with both tilted elongation and tilted triangularity in order to maximize this drive of intrinsic rotation. Nonlinear gyrokinetic simulations demonstrate that adding optimally-tilted triangularity can double the momentum transport of a tilted elliptical shape. This work indicates that tilting the elongation and triangularity in an ITER-like device can reduce the energy transport and drive intrinsic rotation with an Alfven Mach number of roughly 1%. This rotation is four times larger than the rotation expected in ITER and is approximat...
A new mechanism has recently been proposed that generates a radial flux of parallel momentum in toro...
The transport of parallel momentum by small scale fluctuations is intrinsically linked to symmetry b...
International audiencePlasma rotation has been recognized as a key ingredient in the confinement pro...
Breaking the up-down symmetry of the tokamak poloidal cross-section can significantly increase the s...
Bulk toroidal rotation has proven capable of stabilising both dangerous MHD modes and turbulence. Th...
Recent work has demonstrated that breaking the up–down symmetry of tokamak flux surfaces removes a c...
Thesis: S.M., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering, ...
Recent work demonstrated that breaking the up-down symmetry of tokamak flux surfaces removes a const...
Introducing up–down asymmetry into the tokamak magnetic equilibria appears to be a feasible method t...
Breaking the up-down symmetry of tokamaks removes a constraint limiting intrinsic momentum transport...
Tokamaks with up–down asymmetric poloidal cross-sections spontaneously rotate due to turbulent trans...
Tokamaks with up-down asymmetric poloidal cross-sections spontaneously rotate due to turbulent trans...
A poloidal tilting symmetry of the local nonlinear δf gyrokinetic model is demonstrated analytically...
A new mechanism has recently been proposed that generates a radial flux of parallel momentum in toro...
The transport of parallel momentum by small scale fluctuations is intrinsically linked to symmetry b...
International audiencePlasma rotation has been recognized as a key ingredient in the confinement pro...
Breaking the up-down symmetry of the tokamak poloidal cross-section can significantly increase the s...
Bulk toroidal rotation has proven capable of stabilising both dangerous MHD modes and turbulence. Th...
Recent work has demonstrated that breaking the up–down symmetry of tokamak flux surfaces removes a c...
Thesis: S.M., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering, ...
Recent work demonstrated that breaking the up-down symmetry of tokamak flux surfaces removes a const...
Introducing up–down asymmetry into the tokamak magnetic equilibria appears to be a feasible method t...
Breaking the up-down symmetry of tokamaks removes a constraint limiting intrinsic momentum transport...
Tokamaks with up–down asymmetric poloidal cross-sections spontaneously rotate due to turbulent trans...
Tokamaks with up-down asymmetric poloidal cross-sections spontaneously rotate due to turbulent trans...
A poloidal tilting symmetry of the local nonlinear δf gyrokinetic model is demonstrated analytically...
A new mechanism has recently been proposed that generates a radial flux of parallel momentum in toro...
The transport of parallel momentum by small scale fluctuations is intrinsically linked to symmetry b...
International audiencePlasma rotation has been recognized as a key ingredient in the confinement pro...