Nonlinear impedance boundary condition for 2D BEM

被引:2
|
作者
de Falco, Carlo [1 ,2 ]
Di Rienzo, Luca [3 ]
Ida, Nathan [4 ]
Yuferev, Sergey [5 ]
机构
[1] Politecn Milan, Dept Math, MOX Modeling & Sci Comp, Milan, Italy
[2] Fdn CEN, Ctr Europeo Nanomed, Milan, Italy
[3] Politecn Milan, Dept Elect Informat & Bioengn, Milan, Italy
[4] Univ Akron, Akron, OH 44325 USA
[5] Infineon Technol AG, Villach, Austria
关键词
Eddy currents; Skin-effect; Ferromagnetic materials; Surface impedance; Boundary element method; EDDY-CURRENT PROBLEMS; SURFACE-IMPEDANCE; PENETRATION; EQUATIONS;
D O I
10.1108/COMPEL-01-2017-0035
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
PurposeThe purpose of this paper is the derivation and efficient implementation of surface impedance boundary conditions (SIBCs) for nonlinear magnetic conductors. Design/methodology/approachAn approach based on perturbation theory is proposed, which expands to nonlinear problems the methods already developed by the authors for linear problems. Differently from the linear case, for which the analytical solution of the diffusion equation in the semi-infinite space for the magnetic field is available, in the nonlinear case the corresponding nonlinear diffusion equation must be solved numerically. To this aim, a suitable smooth map is defined to reduce the semi-infinite computational domain to a finite one; then the diffusion equation is solved by a Galerkin method relying on basis functions constructed via the push-forward of a Lagrangian polynomial basis whose degrees of freedom are collocated at Gauss-Lobatto nodes. The use of such basis in connection with a suitable under-integration naturally leads to mass-lumping without impacting the order of the method. The solution of the diffusion equation is coupled with a boundary element method formulation for the case of parallel magnetic conductors in terms of E and B fields. FindingsThe results are validated by comparison with full nonlinear finite element method simulations showing very good accordance at a much lower computational cost. Research limitations/implicationsLimitations of the method are those arising from perturbation theory: the introduced small parameter must be much less than one. This implies that the penetration depth of the magnetic field into the magnetic and conductive media must be much smaller than the characteristic size of the conductor. Originality/valueThe efficient implementation of a nonlinear SIBC based on a perturbation approach is proposed for an electric and magnetic field formulation of the two-dimensional problem of current driven parallel solid conductors.
引用
收藏
页码:772 / 783
页数:12
相关论文
共 50 条
  • [1] Nonlinear BEM-surface impedance boundary condition formulation for unstructured meshes
    Freschi, Fabio
    Giaccone, Luca
    Repetto, Maurizio
    2016 IEEE CONFERENCE ON ELECTROMAGNETIC FIELD COMPUTATION (CEFC), 2016,
  • [2] Algebraic formulation of nonlinear surface impedance boundary condition coupled with BEM for unstructured meshes
    Freschi, Fabio
    Giaccone, Luca
    Repetto, Maurizio
    ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 2018, 88 : 104 - 114
  • [3] Nonlinear Impedance Boundary Condition for Time-domain E-B BEM Formulation
    de Falco, Carlo
    Di Rienzo, Luca
    Ida, Nathan
    Yuferev, Sergey
    2016 IEEE CONFERENCE ON ELECTROMAGNETIC FIELD COMPUTATION (CEFC), 2016,
  • [4] A new BEM technique for nonlinear 2D magnetostatics
    Lobry, J
    ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 2002, 26 (09) : 795 - 801
  • [5] On identifying Dirichlet condition for 2D Laplace equation by BEM
    Fukuoka Univ, Fukuoka, Japan
    Eng Anal Boundary Elem, 3 (223-230):
  • [6] On identifying Dirichlet condition for 2D Laplace equation by BEM
    Kobayashi, K
    Onishi, K
    Ohura, Y
    ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 1996, 17 (03) : 223 - 230
  • [7] Analytic Nonlinear Correction to the Impedance Boundary Condition
    Del Vecchio, Bob
    Ahuja, Raj
    2014 IEEE PES T&D CONFERENCE AND EXPOSITION, 2014,
  • [8] Analytic Nonlinear Correction to the Impedance Boundary Condition
    Del Vecchio, Robert M.
    Ahuja, Rajendra
    IEEE TRANSACTIONS ON MAGNETICS, 2013, 49 (12) : 5687 - 5691
  • [9] Condition number of the BEM matrix arising from the Stokes equations in 2D
    Dijkstra, W.
    Mattheij, R. M. M.
    ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 2008, 32 (09) : 736 - 746
  • [10] A Reduced Order Series Expansion for the BEM Incorporating the Boundary Layer Impedance Condition
    Paltorp, Mikkel
    Henriquez, Vicente Cutanda
    Aage, Niels
    Andersen, Peter Risby
    JOURNAL OF THEORETICAL AND COMPUTATIONAL ACOUSTICS, 2024, 32 (02):