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Interior solution of azimuthally symmetric case of Laplace equation in orthogonal similar oblate spheroidal coordinates

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    0586597 - ÚJF 2025 RIV DE eng J - Journal Article
    Strunz, Pavel
    Interior solution of azimuthally symmetric case of Laplace equation in orthogonal similar oblate spheroidal coordinates.
    European Physical Journal Plus. Roč. 139, č. 5 (2024), č. článku 409. ISSN 2190-5444. E-ISSN 2190-5444
    R&D Projects: GA MŠMT(CZ) EH22_008/0004591
    Institutional support: RVO:61389005
    Keywords : Similar Oblate Spheroidal (SOS) * Laplace equation * interior solution
    OECD category: Nuclear physics
    Impact factor: 3.4, year: 2022
    Method of publishing: Open access
    https://doi.org/10.1140/epjp/s13360-024-05181-4

    Curvilinear coordinate systems distinct from the rectangular Cartesian coordinate system are particularly valuable in the field calculations as they facilitate the expression of boundary conditions of differential equations in a reasonably simple way when the coordinate surfaces fit the physical boundaries of the problem. The recently finalized orthogonal similar oblate spheroidal (SOS) coordinate system can be particularly useful for a physical processes description inside or in the vicinity of the bodies or particles with the geometry of an oblate spheroid. The solution of the azimuthally symmetric case of the Laplace equation was found for the interior space in the orthogonal SOS coordinates. In the frame of the derivation of the harmonic functions, the Laplace equation was separated by a special separation procedure. A generalized Legendre equation was introduced as the equation for the angular part of the separated Laplace equation. The harmonic functions were determined as relations involving generalized Legendre functions of the first and of the second kind. Several lower-degree functions are reported. Recursion formula facilitating determination of the higher-degree harmonic functions was found. The general solution of the azimuthally symmetric Laplace equation for the interior space in the SOS coordinates is reported.
    Permanent Link: https://hdl.handle.net/11104/0354051

     
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