VMEC: Difference between revisions

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* NEMEC
* NEMEC
* DIAGNO <ref>H.J. Gardner, Nucl. Fusion '''30''' (1990) 1417</ref>
* DIAGNO, <ref>H.J. Gardner, Nucl. Fusion '''30''' (1990) 1417</ref> to calculate the response of magnetic diagnostics
* MFBE <ref>[http://dx.doi.org/10.1088/0029-5515/37/1/I03 E. Strumberger, ''Finite-&beta; magnetic field line tracing for Helias configurations'', Nucl. Fusion '''37''' (1997) 19]</ref>
* MFBE <ref>[http://dx.doi.org/10.1088/0029-5515/37/1/I03 E. Strumberger, ''Finite-&beta; magnetic field line tracing for Helias configurations'', Nucl. Fusion '''37''' (1997) 19]</ref>
* STELLOPT <ref>[http://dx.doi.org/10.1088/0029-5515/41/6/305 D.A. Spong et al., ''Physics issues of compact drift optimized stellarators'', Nucl. Fusion '''41''' (2001) 711]</ref>
* STELLOPT <ref>[http://dx.doi.org/10.1088/0029-5515/41/6/305 D.A. Spong et al., ''Physics issues of compact drift optimized stellarators'', Nucl. Fusion '''41''' (2001) 711]</ref>

Revision as of 10:50, 17 August 2009

The three-dimensional Variational Moments Equilibrium Code (VMEC) minimizes the energy functional

over the toroidal domain ωp. The solution is obtained in flux co-ordinates (s, θ, ζ), related to the cylindrical co-ordinates (R, φ, Z) by

The code assumes nested flux surfaces. [1]

Implementations of the code

The code is being used at:

  • IPP-Garching, Germany
  • NIFS, Japan
  • LNF, Spain

Enhancements / extensions of the code

  • NEMEC
  • DIAGNO, [2] to calculate the response of magnetic diagnostics
  • MFBE [3]
  • STELLOPT [4]

References