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- W2006316367 abstract "When Boundary Element Methods are exploited for the numerical calculation of linear magnetostatic fields, a vector potential formulation is mostly applied to deal with two-dimensional problems whereas scalar potentials seem to be more suitable for three-dimensional situations. This paper shows how permanent magnets can be modelled in this environment. The source terms arising from permanent magnets consist of a curl or divergence of the magnetization depending upon the formulation. For some important practical applications, e.g. unit magnetization with constant or radial direction, these source terms are nonzero only on the surface of the magnets and are therefore modelled by jump conditions for the flux. A two-dimensional example finds its origin in magneto-optical memories, where a multilayer system is employed to realize direct overwrite. Characteristic of this problem are finite boundary conditions and thin high permeable layers. As another application a three-dimensional calculation was performed for a pole of a permanent magnet. It is shown that a general purpose potential code (BEASY) can be used for such type of calculations." @default.
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- W2006316367 date "1990-09-01" @default.
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- W2006316367 title "Modelling of permanent magnets with the boundary element method" @default.
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- W2006316367 doi "https://doi.org/10.1016/0955-7997(90)90034-7" @default.
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