Many boundary element integral equation kernels are based on the Green’s functions of the Laplace and Helmholtz equations in three dimensions. These include, for example, the Laplace, Helmholtz, elasticity, Stokes, and Maxwell equations. Integral equation formulations lead to more compact, but dense linear systems. These dense systems are often solved iteratively via Krylov subspace methods, which may be accelerated via the fast multipole method. There are advantages to Galerkin formulations for such integral equations, as they treat problems associated with kernel singularity, and lead to symmetric and better conditioned matrices. However, the Galerkin method requires each entry in the system matrix to be created via the computation of a d...
International audienceAn explicit method for the evaluation of singular and near-singular integrals ...
summary:In the present paper we describe, how to use the Galerkin-method efficiently in solving boun...
Abstract—We present a generic technique, automated by computer-algebra systems and available as open...
Many boundary element integral equation kernels are based on the Green’s functions of the Laplace an...
The Laplace and Helmholtz equations are two of the most important partial differential equations (PD...
We present a generic technique, automated by computer-algebra systems and available as open-source s...
AbstractIn this paper we propose an efficient strategy to compute nearly singular integrals over pla...
AbstractA systematic treatment of the three-dimensional Poisson equation via singular and hypersingu...
Algorithms for the direct evaluation of singular Galerkin boundary integrals for three-dimensional a...
AbstractAn accurate and efficient semi-analytic integration technique is developed for three-dimensi...
AbstractOn employing isoparametric, piecewise linear shape functions over a flat triangle, exact for...
Abstract—We present a generic technique, automated by computer-algebra systems and available as open...
A method is proposed for evaluation of single and double layer potentials of the Laplace and Helmhol...
We present algorithms for computing weakly singular and near-singular integrals arising when solving...
summary:In the present paper we describe, how to use the Galerkin-method efficiently in solving boun...
International audienceAn explicit method for the evaluation of singular and near-singular integrals ...
summary:In the present paper we describe, how to use the Galerkin-method efficiently in solving boun...
Abstract—We present a generic technique, automated by computer-algebra systems and available as open...
Many boundary element integral equation kernels are based on the Green’s functions of the Laplace an...
The Laplace and Helmholtz equations are two of the most important partial differential equations (PD...
We present a generic technique, automated by computer-algebra systems and available as open-source s...
AbstractIn this paper we propose an efficient strategy to compute nearly singular integrals over pla...
AbstractA systematic treatment of the three-dimensional Poisson equation via singular and hypersingu...
Algorithms for the direct evaluation of singular Galerkin boundary integrals for three-dimensional a...
AbstractAn accurate and efficient semi-analytic integration technique is developed for three-dimensi...
AbstractOn employing isoparametric, piecewise linear shape functions over a flat triangle, exact for...
Abstract—We present a generic technique, automated by computer-algebra systems and available as open...
A method is proposed for evaluation of single and double layer potentials of the Laplace and Helmhol...
We present algorithms for computing weakly singular and near-singular integrals arising when solving...
summary:In the present paper we describe, how to use the Galerkin-method efficiently in solving boun...
International audienceAn explicit method for the evaluation of singular and near-singular integrals ...
summary:In the present paper we describe, how to use the Galerkin-method efficiently in solving boun...
Abstract—We present a generic technique, automated by computer-algebra systems and available as open...