TJ-K: Difference between revisions
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(Created page with 'The TJ-K device is a torsatron. == History == TJ-K was originally names TJ-IU, constructed at CIEMAT in Madrid, Spain. TJ-IU was taken into operation in 1994. In 1999,…') |
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The TJ-K device is a torsatron. | The TJ-K device is a torsatron with a single helical coil (''l''=1, ''m''=6). | ||
== History == | == History == | ||
TJ-K was originally | TJ-K was originally named [[TJ-IU]], and was constructed at [[CIEMAT]] in Madrid, Spain. | ||
TJ-IU was taken into operation in 1994. | TJ-IU was taken into operation in 1994, and was operated at relatively high magnetic field (0.5 T) and heating power (200 kW of ECRH heating), and corresponding relatively high values of the plasma parameters. | ||
In 1999, TJ-K was transferred to Kiel, Germany, and in 2005 to the [http://www.ipf.uni-stuttgart.de/gruppen/pdd/pdd_tjk.html IPF institute] in Stuttgart, Germany. | In 1999, TJ-K was transferred to Kiel, Germany, and in 2005 to the [http://www.ipf.uni-stuttgart.de/gruppen/pdd/pdd_tjk.html IPF institute] in Stuttgart, Germany. | ||
In its reincarnation as TJ-K, the device is operated at low magnetic field and heating (1-6 kW of ECRH), and corresponding low values of the plasma parameters (electron density: 5 × 10<sup>17</sup> m<sup>-3</sup>; electron temperature: 10 eV; ion temperature: 1 eV). |
Revision as of 08:29, 20 August 2013
The TJ-K device is a torsatron with a single helical coil (l=1, m=6).
History
TJ-K was originally named TJ-IU, and was constructed at CIEMAT in Madrid, Spain. TJ-IU was taken into operation in 1994, and was operated at relatively high magnetic field (0.5 T) and heating power (200 kW of ECRH heating), and corresponding relatively high values of the plasma parameters.
In 1999, TJ-K was transferred to Kiel, Germany, and in 2005 to the IPF institute in Stuttgart, Germany. In its reincarnation as TJ-K, the device is operated at low magnetic field and heating (1-6 kW of ECRH), and corresponding low values of the plasma parameters (electron density: 5 × 1017 m-3; electron temperature: 10 eV; ion temperature: 1 eV).