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A Monte-Carlo model of neutral-particle transport in diverted plasmas. (English) Zbl 0492.76120


MSC:

76X05 Ionized gas flow in electromagnetic fields; plasmic flow
76M99 Basic methods in fluid mechanics
65C20 Probabilistic models, generic numerical methods in probability and statistics

References:

[1] International Tokamak Reactor, Zero Phase (1980), IAEA: IAEA Vienna, Austria
[2] Rownson, M. T., Phys. Rev. B, 9, 5008 (1974)
[3] Callen, J., (IAEA-CN-38/Y-3. IAEA-CN-38/Y-3, 8th Intern. Conf. on Plasma Physics and Controlled Nuclear Fusion Research (1981), IAEA: IAEA Vienna)
[4] Seki, Y., Nucl. Fusion, 20, 10 (1980)
[5] Petravic, M., Phys. Rev. Lett., 48, 326 (1982)
[6] Freeman, R. L.; Jones, E. M., (CLM-R 137 (1974), Culham Lab: Culham Lab Abingdon, Perkshire, England)
[7] Jones, E. M., (CLM-R 175 (1977), Culham Lab: Culham Lab Abingdon, Berkshire, England)
[8] Bateman, G., Distribution of Neutrals Scattered Off a Wall, PPPL Appl. Phys. Rep. 1 (1979), Princeton, New Jersey
[9] Roth, J.; Bohdansky, J.; Ottenberger, W., (IPP-9/26 (1979), Max-Planck-Institut für Plasmaphysik)
[10] Kukushkin, A. S.; Pistunovich, V. I.; Putvinski, S. V., (IAEA-CN-35/B4 (1977), Plasma Physics and Controlled Nuclear Fusion Research, IAEA: Plasma Physics and Controlled Nuclear Fusion Research, IAEA Vienna, Austria)
[11] Hughes, M.; Post, D., J. Comput. Phys., 28, 43 (1978)
[12] Lister, G. G.; Post, D. E.; Goldston, R. J., (Proceedings, 3rd7 Symp. on Plasma Heating in Toroidal Devices (1976), Compositori: Compositori Bologna), 303-307
[13] Hammersley, J. M.; Handscomb, D. C., Monte-Carlo Methods (1964), Metuchen: Metuchen London · Zbl 0121.35503
[14] Clausing, P., Ann. Physik, 12, 961 (1932) · Zbl 0004.17702
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