Title of article :
A dual BIE approach for large-scale modelling of 3-D electrostatic problems with the fast multipole boundary element method
Author/Authors :
Y. J. Liu، نويسنده , , L. Shen، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
A dual boundary integral equation (BIE) formulation is presented for the analysis of general 3-D electrostatic
problems, especially those involving thin structures. This dual BIE formulation uses a linear
combination of the conventional BIE and hypersingular BIE on the entire boundary of a problem domain.
Similar to crack problems in elasticity, the conventional BIE degenerates when the field outside a thin
body is investigated, such as the electrostatic field around a thin conducting plate. The dual BIE formulation,
however, does not degenerate in such cases. Most importantly, the dual BIE is found to have better
conditioning for the equations using the boundary element method (BEM) compared with the conventional
BIE, even for domains with regular shapes. Thus the dual BIE is well suited for implementation with
the fast multipole BEM. The fast multipole BEM for the dual BIE formulation is developed based on
an adaptive fast multiple approach for the conventional BIE. Several examples are studied with the fast
multipole BEM code, including finite and infinite domain problems, bulky and thin plate structures, and
simplified comb-drive models having more than 440 thin beams with the total number of equations above
1.45 million and solved on a PC. The numerical results clearly demonstrate that the dual BIE is very
effective in solving general 3-D electrostatic problems, as well as special cases involving thin perfect
conducting structures, and that the adaptive fast multipole BEM with the dual BIE formulation is very
efficient and promising in solving large-scale electrostatic problems. Copyright q 2007 John Wiley &
Sons, Ltd.
Keywords :
Fast Multipole Method , 3-D electrostatic problems , boundary element method
Journal title :
International Journal for Numerical Methods in Engineering
Journal title :
International Journal for Numerical Methods in Engineering