CASTOR: Normal-mode analysis of resistive MHD plasmas. (English) Zbl 0921.76100
Summary: The CASTOR (complex Alfvén spectrum of toroidal plasmas) code computes the entire spectrum of normal modes in resistive MHD for general tokamak configurations. The applied Galerkin method, in conjunction with a Fourier finite element discretisation, leads to a large scale eigenvalue problem \({\mathbf A}\underline x=\lambda {\mathbf B}\underline x\), where \({\mathbf A}\) is a nonself-adjoint matrix. \(\copyright\) Academic Press.
MSC:
76M10 | Finite element methods applied to problems in fluid mechanics |
76X05 | Ionized gas flow in electromagnetic fields; plasmic flow |
76W05 | Magnetohydrodynamics and electrohydrodynamics |
Keywords:
spectrum; tokamak configurations; Galerkin method; Fourier finite element discretisation; large scale eigenvalue problem; nonself-adjoint matrixSoftware:
CASTORReferences:
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