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Titlebook: Wave Propagation in Viscoelastic and Poroelastic Continua; A Boundary Element A Martin Schanz Book 2001 Springer-Verlag Berlin Heidelberg 2

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Convolution quadrature method, to an arbitrary time-dependent load if the impulse response function is known. The convolution between the impulse response function and the loading is the solution. Other examples of convolution integrals are integral equations in time domain for elastodynamics or the hereditary integral formulation of viscoelastic constitutive equations.
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Poroelastodynamic boundary element formulation,ude approximation for investigating wave propagation in such media. The presence of a freely moving fluid in such materials modifies their mechanical response. Three mechanisms play a key role in the interaction between the interstitial fluid and the porous material:
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Viscoelastodynamic boundary element formulation, domain representation of the governing integral equation. These formulations are developed by applying the elastic-viscoelastic correspondence principle to the elastodynamic boundary element formulation, e.g., [115] for a frequency domain or [123] for a Laplace domain formulation.
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978-3-642-07490-5Springer-Verlag Berlin Heidelberg 2001
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Martin SchanzOUR EUROPEENNE DES DROITS DE L‘HOMME 3 B. AMENDEMENTS AU REGLEMENT INTERIEUR DE LA COMMISSION EUROPEENNE DES DROITS DE L‘HOMME 3 C. DECLARATIONS D‘ACCEPTATION DE LA COMPETENCE DE LA COM­ MISSION EUROPEENNE DES DROITS DE L‘HOMME EN MATIERE DE REQUETES INDIVIDUELLES (Article 25 de la Convention) Autri
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