Boundary Elements And Other Mesh Reduction Methods Xxxvi

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Boundary Elements and Other Mesh Reduction Methods XXXVI

The Conference on Boundary Elements and Mesh Reduction Methods (BEM/MRM) is recognised as the international forum for the latest advances in these techniques and their applications in science and engineering. Launched in 1978 the Conference continues to attract original contributions and has become the forum for their rapid dissemination throughout the international scientific community. Practically all new boundary element ideas have first appeared in the proceedings of these meetings.
Boundary Elements and Other Mesh Reduction Methods XXXVII

Since 1978 the conference on Boundary Elements and Mesh Reduction Methods has produced a successful series of volumes in which all major developments in the field have been presented. The 37th volume in the series continues this success by bringing together the latest advanced research carried out by different groups around the world. The included papers cover topics such as: Advanced meshless and mesh reduction methods; Advanced formulations; Computational methods; Stochastic modelling; Emerging applications; Solid mechanics applications; Dynamics and vibrations; Damage mechanics and fracture; Material characterisation; Fluid flow modelling; Electrical engineering and electromagnetics; Heat and mass transfer.
ENBoundary Elements and Other Mesh Reduction Methods XXXVI

Author: Brebbia C a Cheng A H -D Gao Xiao-Wei
language: en
Publisher:
Release Date: 2013-01-01
The Conference on Boundary Elements and Mesh Reduction Methods (BEM/MRM) is recognised as the international forum for the latest advances in these techniques and their applications in science and engineering.Papers presented at the 36th Conference, contained in this volume, cover topics such as Integration techniques; Green functions; Advanced numerical solvers; Hybrid methods; Advanced meshless methods; Probabilistic BEM; Dual boundary element techniques; Galerkin boundary element; Trefftz methods; Collocation technique; Biologically inspired methods; Free surface techniques; Fluid flow; Stress analysis; Fracture and crack propagation.