Fluid Simulation of the Ion Temperature Effects on a Collisional Magnetized Sheath of a Dusty Plasma
The properties of magnetized dusty plasma sheath with finite ion temperature are studied using a fluid model. Hot electrons, fluid ions, neutral particles and cold fluid dust grains are taken into account in this system. Considering the cross section for collisions between the dust and neutrals has...
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Isfahan University of Technology
2013-01-01
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doaj-c2b249540e414c81994d73c62fd9ec972020-11-24T21:37:54ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722013-01-0164511517.Fluid Simulation of the Ion Temperature Effects on a Collisional Magnetized Sheath of a Dusty PlasmaI Driouch0H ChateiDepartment of Physics, Faculty of Science, University Mohammed I, , MoroccoThe properties of magnetized dusty plasma sheath with finite ion temperature are studied using a fluid model. Hot electrons, fluid ions, neutral particles and cold fluid dust grains are taken into account in this system. Considering the cross section for collisions between the dust and neutrals has a power law dependence on the dust flow velocity, the fluid model is then solved numerically to obtain detailed sheath information under different ion temperatures. A significant change is observed in the quantities characterizing the sheath with respect to the cold ion assumption. In addition, the result reveals that the effect of ion temperature is more obvious on the dust dynamics in collisional sheath with constant cross section.http://jafmonline.net/JournalArchive/download?file_ID=30900&issue_ID=215Fluid model Ion temperature Plasma sheath Dust grains Magnetic field. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
I Driouch H Chatei |
spellingShingle |
I Driouch H Chatei Fluid Simulation of the Ion Temperature Effects on a Collisional Magnetized Sheath of a Dusty Plasma Journal of Applied Fluid Mechanics Fluid model Ion temperature Plasma sheath Dust grains Magnetic field. |
author_facet |
I Driouch H Chatei |
author_sort |
I Driouch |
title |
Fluid Simulation of the Ion Temperature Effects on a Collisional Magnetized Sheath of a Dusty Plasma |
title_short |
Fluid Simulation of the Ion Temperature Effects on a Collisional Magnetized Sheath of a Dusty Plasma |
title_full |
Fluid Simulation of the Ion Temperature Effects on a Collisional Magnetized Sheath of a Dusty Plasma |
title_fullStr |
Fluid Simulation of the Ion Temperature Effects on a Collisional Magnetized Sheath of a Dusty Plasma |
title_full_unstemmed |
Fluid Simulation of the Ion Temperature Effects on a Collisional Magnetized Sheath of a Dusty Plasma |
title_sort |
fluid simulation of the ion temperature effects on a collisional magnetized sheath of a dusty plasma |
publisher |
Isfahan University of Technology |
series |
Journal of Applied Fluid Mechanics |
issn |
1735-3572 |
publishDate |
2013-01-01 |
description |
The properties of magnetized dusty plasma sheath with finite ion temperature are studied using a fluid model. Hot electrons, fluid ions, neutral particles and cold fluid dust grains are taken into account in this system. Considering the cross section for collisions between the dust and neutrals has a power law dependence on the dust flow velocity, the fluid model is then solved numerically to obtain detailed sheath information under different ion temperatures. A significant change is observed in the quantities characterizing the sheath with respect to the cold ion assumption. In addition, the result reveals that the effect of ion temperature is more obvious on the dust dynamics in collisional sheath with constant cross section. |
topic |
Fluid model Ion temperature Plasma sheath Dust grains Magnetic field. |
url |
http://jafmonline.net/JournalArchive/download?file_ID=30900&issue_ID=215 |
work_keys_str_mv |
AT idriouch fluidsimulationoftheiontemperatureeffectsonacollisionalmagnetizedsheathofadustyplasma AT hchatei fluidsimulationoftheiontemperatureeffectsonacollisionalmagnetizedsheathofadustyplasma |
_version_ |
1725936509503143936 |