Spheromak: Difference between revisions

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A spheromak is a (self-sustaining) toroidal confinement configuration without a central conductor - hence different from a spherical tokamak, which is a very low [[toroidal coordinates|aspect ratio]] [[tokamak]].
A spheromak<ref>P.M. Bellan, ''Spheromaks: a practical application of magnetohydrodynamic dynamos and plasma self-organization'', {{ISBN|9781860941412}}</ref> is a (self-sustaining) toroidal confinement configuration without a central conductor - hence different from a spherical tokamak, which is a very low [[toroidal coordinates|aspect ratio]] [[tokamak]].


== See also ==
== See also ==


* [[:Wikipedia:Spheromak|Spheromak]] (Wikipedia)
* [[:Wikipedia:Spheromak|Spheromak]] (Wikipedia)
* Sustained Spheromak Physics Experiment (SSPX) <ref>E.B. Hooper, R.H. Bulmer, B.I. Cohen, et al., ''Sustained Spheromak Physics Experiment (SSPX): design and physics results'', [[doi:10.1088/0741-3335/54/11/113001|Plasma Phys. Control. Fusion '''54''' (2012) 113001]]</ref>
* [[:Wikipedia:Dynomak|Dynomak]] <ref>D.A. Sutherland, T.R. Jarboe, K.D. Morgan, et al., ''The dynomak: An advanced spheromak reactor concept with imposed-dynamo current drive and next-generation nuclear power technologies'', [[doi:10.1016/j.fusengdes.2014.03.072|Fusion Engineering and Design '''89''', 4 (2014) 412–425]]</ref>
* [[:Wikipedia:Dynomak|Dynomak]] <ref>D.A. Sutherland, T.R. Jarboe, K.D. Morgan, et al., ''The dynomak: An advanced spheromak reactor concept with imposed-dynamo current drive and next-generation nuclear power technologies'', [[doi:10.1016/j.fusengdes.2014.03.072|Fusion Engineering and Design '''89''', 4 (2014) 412–425]]</ref>


== References ==
== References ==
<references />
<references />

Latest revision as of 12:31, 26 January 2023

A spheromak[1] is a (self-sustaining) toroidal confinement configuration without a central conductor - hence different from a spherical tokamak, which is a very low aspect ratio tokamak.

See also

References

  1. P.M. Bellan, Spheromaks: a practical application of magnetohydrodynamic dynamos and plasma self-organization, ISBN 9781860941412
  2. E.B. Hooper, R.H. Bulmer, B.I. Cohen, et al., Sustained Spheromak Physics Experiment (SSPX): design and physics results, Plasma Phys. Control. Fusion 54 (2012) 113001
  3. D.A. Sutherland, T.R. Jarboe, K.D. Morgan, et al., The dynomak: An advanced spheromak reactor concept with imposed-dynamo current drive and next-generation nuclear power technologies, Fusion Engineering and Design 89, 4 (2014) 412–425