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Evolution of particle clouds around ablating pellets in magnetically confined hot plasmas

Abstract

Cryogenic hydrogen isotope pellets are being currently used for introducing fuel particles into the palsma interior in magnetic confinement fusion experiments. The spatial and time evolution of the initially low-temperature high-density particle clouds forming around such pellets are considered here, with particular attention being given to such physical processes as heating of the cloud by the energy fluxes carried by incident plasma particles, gasdynamic expansion with j vectorxB vector - produced deceleration in the transverse direction, finite-rate ionization and recombination processes, and magnetic field convection and diffusion. While the dynamic processes associated with the ionization and radial confinement processes are characterized by the relatively short Alfven time scale ({mu}s range), the subsequent phase of axial expansion is associated with a notably larger hadrodynamic time scale defined by the heat input and gasdynamic expansion rates (ms range). Data stemming from experimental measurements in toroidal confinement machines are compared with results of model calculations. Some similarities with space plasmas are briefly discussed. (orig.).
Authors:
Publication Date:
Aug 01, 1991
Product Type:
Conference
Report Number:
IPP-5/41; CONF-9107212-
Reference Number:
SCA: 700460; PA: DEN-92:002756; SN: 92000687604
Resource Relation:
Conference: Workshop on plasma experiments in the laboratory and in space,Alpbach (Germany),1-6 Jul 1991; Other Information: PBD: Aug 1991
Subject:
70 PLASMA PHYSICS AND FUSION TECHNOLOGY; HOT PLASMA; PELLET INJECTION; MEETINGS; ABLATION; FUEL PELLETS; HYDROGEN ISOTOPES; SPATIAL DISTRIBUTION; TIME DEPENDENCE; PARTICLES; CLOUDS; HEATING; ENERGY TRANSFER; EXPANSION; IONIZATION; RECOMBINATION; MAGNETIC FIELDS; CONVECTION; DIFFUSION; SHIELDING; ELECTRON TEMPERATURE; ELECTRON DENSITY; MOTION; MODIFICATIONS; LEADING ABSTRACT; 700460; HEATING AND FUELING SYSTEMS; FUELS
OSTI ID:
10129414
Research Organizations:
Max-Planck-Institut fuer Plasmaphysik, Garching (Germany)
Country of Origin:
Germany
Language:
English
Other Identifying Numbers:
Other: ON: DE92784676; TRN: DE9202756
Availability:
OSTI; NTIS (US Sales Only); INIS
Submitting Site:
DEN
Size:
23 p.
Announcement Date:
Jul 04, 2005

Citation Formats

Lengyel, L L. Evolution of particle clouds around ablating pellets in magnetically confined hot plasmas. Germany: N. p., 1991. Web.
Lengyel, L L. Evolution of particle clouds around ablating pellets in magnetically confined hot plasmas. Germany.
Lengyel, L L. 1991. "Evolution of particle clouds around ablating pellets in magnetically confined hot plasmas." Germany.
@misc{etde_10129414,
title = {Evolution of particle clouds around ablating pellets in magnetically confined hot plasmas}
author = {Lengyel, L L}
abstractNote = {Cryogenic hydrogen isotope pellets are being currently used for introducing fuel particles into the palsma interior in magnetic confinement fusion experiments. The spatial and time evolution of the initially low-temperature high-density particle clouds forming around such pellets are considered here, with particular attention being given to such physical processes as heating of the cloud by the energy fluxes carried by incident plasma particles, gasdynamic expansion with j vectorxB vector - produced deceleration in the transverse direction, finite-rate ionization and recombination processes, and magnetic field convection and diffusion. While the dynamic processes associated with the ionization and radial confinement processes are characterized by the relatively short Alfven time scale ({mu}s range), the subsequent phase of axial expansion is associated with a notably larger hadrodynamic time scale defined by the heat input and gasdynamic expansion rates (ms range). Data stemming from experimental measurements in toroidal confinement machines are compared with results of model calculations. Some similarities with space plasmas are briefly discussed. (orig.).}
place = {Germany}
year = {1991}
month = {Aug}
}