Purpose - To propose a novel 3D hybrid approach, based on a discrete formulation of Maxwell equations (the cell method - CM), suitable for solving eddy current problems in unbounded domains. Design/methodology/approach - Field equations for magnetodynamics are expressed directly in algebraic form thanks to the CM. The eddy current problem inside bulk conductors is formulated in terms of discrete modified vector potential, whereas magnetic scalar potential is used in order to model the free space. The CM is coupled to the boundary element method by using a surface boundary operator, which maps the surface magnetic fluxes to the surface magnetic scalar potentials. This leads to a unique set of linear equations to be solved in terms of discre...
A novel 3-D hybrid formulation for time-harmonic eddy current problems in multiply connected domains...
A novel 3-D integral formulation for solving eddy currents in thin conductors of any shape and topol...
The theory of discrete electromagnetism (DEM) is quickly gaining ground in the computational electro...
A finite formulation for 3-D eddy current problems in unbounded domains is presented. This approach ...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
International audienceA new Boundary Element Method (BEM) formulation has been developed for the com...
International audienceA new Boundary Element Method (BEM) formulation has been developed for the com...
A boundary-element method using a magnetic vector potential for eddy-current analysis is described. ...
A boundary-element method using a magnetic vector potential for eddy-current analysis is described. ...
A boundary-element method using a magnetic vector potential for eddy-current analysis is described. ...
A novel 3-D hybrid formulation for time-harmonic eddy current problems in multiply connected domains...
A novel 3-D integral formulation for solving eddy currents in thin conductors of any shape and topol...
The theory of discrete electromagnetism (DEM) is quickly gaining ground in the computational electro...
A finite formulation for 3-D eddy current problems in unbounded domains is presented. This approach ...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
A hybrid a-Cell Method formulation for solving eddy-current problems in 3-D multiply-connected regio...
International audienceA new Boundary Element Method (BEM) formulation has been developed for the com...
International audienceA new Boundary Element Method (BEM) formulation has been developed for the com...
A boundary-element method using a magnetic vector potential for eddy-current analysis is described. ...
A boundary-element method using a magnetic vector potential for eddy-current analysis is described. ...
A boundary-element method using a magnetic vector potential for eddy-current analysis is described. ...
A novel 3-D hybrid formulation for time-harmonic eddy current problems in multiply connected domains...
A novel 3-D integral formulation for solving eddy currents in thin conductors of any shape and topol...
The theory of discrete electromagnetism (DEM) is quickly gaining ground in the computational electro...