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Incorporating Line Radiation Effects into Edge Plasma Codes
Author(s) -
Scott Howard A.,
Adams Mark L.
Publication year - 2004
Publication title -
contributions to plasma physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.531
H-Index - 47
eISSN - 1521-3986
pISSN - 0863-1042
DOI - 10.1002/ctpp.200410008
Subject(s) - parameterized complexity , plasma , enhanced data rates for gsm evolution , physics , ionization , computational physics , radiation , line (geometry) , position (finance) , atomic physics , plasma parameters , electron , optics , computer science , algorithm , geometry , ion , mathematics , quantum mechanics , telecommunications , finance , economics
Strong hydrogen line radiation can significantly affect the ionization and energy balance in high‐density, lowtemperature edge plasmas. A fully self‐consistent one‐dimensional simulation code integrating line radiation with edge plasma transport has recently been demonstrated. This code allows us to evaluate the use of approximate treatments of radiation effects that could potentially be incorporated into existing two‐dimensional edge plasma codes. For a given approximation, we tabulate effective ionization, recombination and energy loss rates for hydrogen plasmas in a one‐dimensional geometry as a function of electron density, temperature and position. The position is a simple parameterization corresponding to optical depth, with the correspondence dependent on plasma properties, including magnetic field. The parameterized values can differ by more than an order of magnitude from the optically thin values. We present one‐dimensional edge plasma simulations using the parameterized tables and compare them to self‐consistent simulations to investigate the validity of this approach, the effectiveness of the parameterization and the accuracy of the approximations used. We also present results using parameterized tables in a twodimensional code and discuss the validity of applying them in this manner. (© 2004 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)

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