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Selected Topics in Boundary Integral Formulations for Solids and Fluids

Suggested readings

A. Chandra and S. Mukherjee, Boundary Element Methods in Manufacturing, Oxford University Press, 1997.
S. Mukherjee, X. Shi and Y.X. Mukherjee, Internal variables and their sensitivities in three-dimensional linear elasticity by the boundary contour method. Computer Methods in Applied Mechanics and Engineering, Vol. 187, 2000, pp. 289–306.
M.K. Chati and S. Mukherjee, The boundary node method for three-dimensional problems in potential theory. International Journal for Numerical Methods in Engineering, Vol. 47, 2000, pp.1523–1547.
L. Gaul & M. Schanz, A comparative study of three boundary element approaches to calculate the transient response of viscoelastic solids with unbounded domains, Comput. Methods Appl. Mech. Engng., Vol. 179, 1999, pp.111–123.
L. Gaul & M. Wagner & W. Wenzel, Hybrid boundary element methods in frequency and time domain, Boundary Elements in Acoustics, WIT Press, Southampton, 2000.
V. Kompis, P. Novák, M. Handrik, Finite dispalcement in reciprocity based FE formulation, CD-ROM Proceedings of the Conference on Numerical Methods in Continuum Mechanics, Lipt. Ján, 2000.
B. Sarler, D. Gobin, B. Goyeau, J. Perko, H. Power, Natural convection in porous media – dual reciprocity boundary element method solution of the Darcy model, Int. J. Numer. Methods Fluids, Vol. 33, 2000, pp. 279–312.
B. Sarler, J. Mencinger, Solution of temperature field in DC cast aluminium alloy billet by the dual reciprocity boundary element method, Int. J. Numer. Meth. Heat Fluid Flow, Vol. 9, 1999, pp. 269–295.

See also