AbstractThermal effects are well known to manifest themselves as additional volume integral terms in the direct formulation of the boundary integral equation (BIE) for linear elastic solids when using the boundary element method (BEM). This domain integral has been successfully transformed in an exact manner to surface ones only in isotropy and in 2D anisotropy, thereby restoring the BEM as a truly boundary solution technique. The difficulties with extending it to 3D general anisotropic solids lie in the mathematical complexity of the Green’s function and its derivatives for such materials. These quantities are required items in the BEM formulation. In this paper, the exact, analytical transformation of the volume integral associated with t...
AbstractThe authors have very recently proposed an efficient, accurate alternative scheme to numeric...
The paper presents novel boundary element technique for analysis of anisotropic thermomagnetoelectro...
AbstractGreen’s functions for transversely isotropic thermoelastic biomaterials are established in t...
AbstractThermal effects are well known to manifest themselves as additional volume integral terms in...
AbstractThe authors have very recently proposed an efficient, accurate alternative scheme to numeric...
A general, efficient and robust boundary element method (BEM) formulation for the numerical solution...
A numerical implementation of the Somigliana identity in displacements for the solution of 3D elas...
The main aim of this paper was to develop an advanced processing method for analyzing of anisotropic...
The main goal of this work relies on developing an experimental procedure to verify a thermoelastic ...
Algorithms for the direct evaluation of singular Galerkin boundary integrals for three-dimensional a...
A novel approach is presented for the isogeometric Boundary Element analysis of domains that contain...
The implementation of WangÕs theoretical solution is presented for elastostatic displacement GreenÕs...
A novel approach is presented for the isogeometric Boundary Element analysis of domains that contain...
[[abstract]]The main impediment to the development of efficient algorithms for the stress analysis o...
[[abstract]]The main impediment to the development of efficient algorithms for the stress analysis o...
AbstractThe authors have very recently proposed an efficient, accurate alternative scheme to numeric...
The paper presents novel boundary element technique for analysis of anisotropic thermomagnetoelectro...
AbstractGreen’s functions for transversely isotropic thermoelastic biomaterials are established in t...
AbstractThermal effects are well known to manifest themselves as additional volume integral terms in...
AbstractThe authors have very recently proposed an efficient, accurate alternative scheme to numeric...
A general, efficient and robust boundary element method (BEM) formulation for the numerical solution...
A numerical implementation of the Somigliana identity in displacements for the solution of 3D elas...
The main aim of this paper was to develop an advanced processing method for analyzing of anisotropic...
The main goal of this work relies on developing an experimental procedure to verify a thermoelastic ...
Algorithms for the direct evaluation of singular Galerkin boundary integrals for three-dimensional a...
A novel approach is presented for the isogeometric Boundary Element analysis of domains that contain...
The implementation of WangÕs theoretical solution is presented for elastostatic displacement GreenÕs...
A novel approach is presented for the isogeometric Boundary Element analysis of domains that contain...
[[abstract]]The main impediment to the development of efficient algorithms for the stress analysis o...
[[abstract]]The main impediment to the development of efficient algorithms for the stress analysis o...
AbstractThe authors have very recently proposed an efficient, accurate alternative scheme to numeric...
The paper presents novel boundary element technique for analysis of anisotropic thermomagnetoelectro...
AbstractGreen’s functions for transversely isotropic thermoelastic biomaterials are established in t...