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Titlebook: Boundary Element Advances in Solid Mechanics; Dimitri Beskos,Giulio Maier Book 2003 Springer-Verlag Wien 2003 calculus.dynamics.fracture m

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https://doi.org/10.1007/978-3-030-32341-7 traction (hypersingular) boundary integral equation for infinite domain problems and on a combined use of the traction boundary integral equation and the classical displacement boundary integral equation (mixed formulation) for bounded domain problems. The approach is formulated and implemented for
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https://doi.org/10.1007/978-3-030-32341-7mains accounting for the presence of interfaces between different subdomains. This method is characterized by the combined use of static and kinematic sources (i.e. traction and displacement discontinuities) to generate a symmetric integral operator and its space-discretization in the Galerkin weigh
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CISM International Centre for Mechanical Scienceshttp://image.papertrans.cn/b/image/189990.jpg
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Olaf Kühne,Corinna Jenal,Timo Sedelmeierc). Boundary or interface nonlinearities are suitable for boundary element methods. This explains the choice of this method in this chapter. Discussion of further models and extensions, as well as references to appropriate literature, are included.
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Dynamic Analysis of Structures and Structural Systems,acting systems analysed include multiple foundations, underground structures, vibration isolation by trenches or piles and earth and concrete dams. The dynamic input can be either externally applied forces or seismic waves of any direction and time variation. Emphasis is given on recent advanced tec
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