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- ...the plasma. The lack of this large externally driven plasma current makes stellarators suitable for steady-state fusion power plants. ...ER, and achieve plasma duration of 30 minutes. This large transport in old stellarators can limit their performance as [[fusion reactor]]s. ...9 Кб (1153 слова) - 10:53, 20 марта 2024
- ...deal and resistive magnetohydrodynamic (MHD) instabilities of tokamaks and stellarators; extended MHD simulation of fusion plasmas; and Hamiltonian particle orbit ...3 Кб (357 слов) - 14:55, 2 января 2024
- ...nds in the plasma edge on particle fueling and exhaust in the HSX and W7-X stellarators | journal = Physics of Plasmas | volume = 25 | pages = 062501 | date = 2018 ...he divertor plate. However, the compatibility of the Helical Divertor with stellarators optimized for [[Neoclassical transport|neoclassical transport]] remains unc ...13 Кб (1786 слов) - 22:58, 27 февраля 2024
- [[Category:Stellarators]] ...5 Кб (548 слов) - 00:44, 18 марта 2024
- ...nt]] (HSX), [[Large Helical Device]] (LHD), and [[Wendelstein 7-X]] (W7-X) stellarators, and the [[Reversed-Field eXperiment]] (RFX) and [[Madison Symmetric Torus] ...inues to make fundamental contributions to the physics of current carrying stellarators.<ref>{{cite journal |last1=Ma |first1=X. |last2=Cianciosa |first2=M.R. |las ...21 Кб (2811 слов) - 20:53, 20 февраля 2024
- [[Category:Stellarators]] ...5 Кб (564 слова) - 11:23, 20 марта 2024
- 5 Кб (701 слово) - 09:51, 21 марта 2024
- [[Category:Stellarators]] ...7 Кб (983 слова) - 11:45, 20 февраля 2024
- ...son |first1=A. |last2=Mason |first2=D.W. |title=Binary Collision Losses in Stellarators |journal=Plasma Physics |date=1969 |volume=11 |issue=2 |pages=121–129 |do ...9 Кб (1101 слово) - 11:45, 28 февраля 2024
- ...ity resonant influence on the local Alfven resonance structure in straight stellarators / ''I. O. Girka, [[Лапшин, Владимир Ильич|V. I. Lapshin] ...5/2/304/meta Resonant influence of helicity on Alfven heating of plasma in stellarators] / ''I. O. Girka, [[Лапшин, Владимир Ильич|V. I. Lapshin ...25 Кб (738 слов) - 19:28, 11 августа 2023
- 11 Кб (1538 слов) - 19:18, 22 февраля 2024
- * Weitzner, Harold. "Conditions for the existence of steady state stellarators." Physics of Plasmas 5.2 (1998): 417–432. ...12 Кб (1404 слова) - 12:21, 19 марта 2024
- | {{oq||«for the formulation and practical application of criteria allowing stellarators to have good fast-particle and neoclassical energy confinement»}} ...19 Кб (1894 слова) - 05:48, 7 сентября 2023
- ..."2" |''"for the formulation and practical application of criteria allowing stellarators to have good fast-particle and neoclassical energy confinement."'' ...19 Кб (2519 слов) - 03:35, 19 марта 2024
- | [[Thea Energy]] (formerly Princeton Stellarators) ...24 Кб (2839 слов) - 14:57, 20 февраля 2024
- ...those areas before being circulated to an area of "good curvature". Modern stellarators use similar configurations, differing from tokamaks largely in how that sha ...28 Кб (4338 слов) - 09:42, 26 марта 2024
- [[Category:Stellarators]] ...33 Кб (4825 слов) - 22:42, 23 марта 2024
- ...ch Family (orange), Mirror Family (red), Cusp Systems (violet), Tokamaks & Stellarators (Green), Plasma Structures (gray), Inertial Electrostatic Confinement (dark ...attempts to create a natural twisted plasma path, using external magnets. Stellarators were developed by [[Lyman Spitzer]] in 1950 and evolved into four designs: ...191 Кб (26 860 слов) - 17:21, 10 марта 2024
- ...amily (orange), The Mirror Family (red), Cusp Systems (violet), Tokamaks & Stellarators (Green), Plasma Structures (gray), Inertial Electrostatic Confinement (dark ...85 Кб (11 937 слов) - 04:26, 22 марта 2024