author_facet Guazzotto, L.
Betti, R.
Guazzotto, L.
Betti, R.
author Guazzotto, L.
Betti, R.
spellingShingle Guazzotto, L.
Betti, R.
Physics of Plasmas
Magnetohydrodynamics equilibria with toroidal and poloidal flow
Condensed Matter Physics
author_sort guazzotto, l.
spelling Guazzotto, L. Betti, R. 1070-664X 1089-7674 AIP Publishing Condensed Matter Physics http://dx.doi.org/10.1063/1.1869502 <jats:p>In the present work, the effects of flow on tokamak equilibria are investigated, focusing in particular on the effects of poloidal flows. It is shown that discountinuous transonic equilibria with a pedestal structure can be obtained for relatively low values of the poloidal velocity. Equilibria with poloidal flow of the order of the poloidal Alfvén speed are shown to develop inverted Shafranov shift. Since the rotation is damped by the neoclassical poloidal viscosity, a quasi-omnigenous solution for equilibria with large rotation is also derived in order to minimize the flow damping. In this solution, the magnetic field is construed to be a function of the poloidal magnetic flux Ψ up to a small correction by an appropriate choice of the flow profiles. All numerical results are obtained with the code FLOW [L. Guazzotto, R. Betti, J. Manickam, and S. Kaye, Phys. Plasmas 11, 604 (2004)].</jats:p> Magnetohydrodynamics equilibria with toroidal and poloidal flow Physics of Plasmas
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series Physics of Plasmas
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title Magnetohydrodynamics equilibria with toroidal and poloidal flow
title_unstemmed Magnetohydrodynamics equilibria with toroidal and poloidal flow
title_full Magnetohydrodynamics equilibria with toroidal and poloidal flow
title_fullStr Magnetohydrodynamics equilibria with toroidal and poloidal flow
title_full_unstemmed Magnetohydrodynamics equilibria with toroidal and poloidal flow
title_short Magnetohydrodynamics equilibria with toroidal and poloidal flow
title_sort magnetohydrodynamics equilibria with toroidal and poloidal flow
topic Condensed Matter Physics
url http://dx.doi.org/10.1063/1.1869502
publishDate 2005
physical
description <jats:p>In the present work, the effects of flow on tokamak equilibria are investigated, focusing in particular on the effects of poloidal flows. It is shown that discountinuous transonic equilibria with a pedestal structure can be obtained for relatively low values of the poloidal velocity. Equilibria with poloidal flow of the order of the poloidal Alfvén speed are shown to develop inverted Shafranov shift. Since the rotation is damped by the neoclassical poloidal viscosity, a quasi-omnigenous solution for equilibria with large rotation is also derived in order to minimize the flow damping. In this solution, the magnetic field is construed to be a function of the poloidal magnetic flux Ψ up to a small correction by an appropriate choice of the flow profiles. All numerical results are obtained with the code FLOW [L. Guazzotto, R. Betti, J. Manickam, and S. Kaye, Phys. Plasmas 11, 604 (2004)].</jats:p>
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author Guazzotto, L., Betti, R.
author_facet Guazzotto, L., Betti, R., Guazzotto, L., Betti, R.
author_sort guazzotto, l.
container_issue 5
container_start_page 0
container_title Physics of Plasmas
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description <jats:p>In the present work, the effects of flow on tokamak equilibria are investigated, focusing in particular on the effects of poloidal flows. It is shown that discountinuous transonic equilibria with a pedestal structure can be obtained for relatively low values of the poloidal velocity. Equilibria with poloidal flow of the order of the poloidal Alfvén speed are shown to develop inverted Shafranov shift. Since the rotation is damped by the neoclassical poloidal viscosity, a quasi-omnigenous solution for equilibria with large rotation is also derived in order to minimize the flow damping. In this solution, the magnetic field is construed to be a function of the poloidal magnetic flux Ψ up to a small correction by an appropriate choice of the flow profiles. All numerical results are obtained with the code FLOW [L. Guazzotto, R. Betti, J. Manickam, and S. Kaye, Phys. Plasmas 11, 604 (2004)].</jats:p>
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spelling Guazzotto, L. Betti, R. 1070-664X 1089-7674 AIP Publishing Condensed Matter Physics http://dx.doi.org/10.1063/1.1869502 <jats:p>In the present work, the effects of flow on tokamak equilibria are investigated, focusing in particular on the effects of poloidal flows. It is shown that discountinuous transonic equilibria with a pedestal structure can be obtained for relatively low values of the poloidal velocity. Equilibria with poloidal flow of the order of the poloidal Alfvén speed are shown to develop inverted Shafranov shift. Since the rotation is damped by the neoclassical poloidal viscosity, a quasi-omnigenous solution for equilibria with large rotation is also derived in order to minimize the flow damping. In this solution, the magnetic field is construed to be a function of the poloidal magnetic flux Ψ up to a small correction by an appropriate choice of the flow profiles. All numerical results are obtained with the code FLOW [L. Guazzotto, R. Betti, J. Manickam, and S. Kaye, Phys. Plasmas 11, 604 (2004)].</jats:p> Magnetohydrodynamics equilibria with toroidal and poloidal flow Physics of Plasmas
spellingShingle Guazzotto, L., Betti, R., Physics of Plasmas, Magnetohydrodynamics equilibria with toroidal and poloidal flow, Condensed Matter Physics
title Magnetohydrodynamics equilibria with toroidal and poloidal flow
title_full Magnetohydrodynamics equilibria with toroidal and poloidal flow
title_fullStr Magnetohydrodynamics equilibria with toroidal and poloidal flow
title_full_unstemmed Magnetohydrodynamics equilibria with toroidal and poloidal flow
title_short Magnetohydrodynamics equilibria with toroidal and poloidal flow
title_sort magnetohydrodynamics equilibria with toroidal and poloidal flow
title_unstemmed Magnetohydrodynamics equilibria with toroidal and poloidal flow
topic Condensed Matter Physics
url http://dx.doi.org/10.1063/1.1869502