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IssuesArchive of Issues2018-2pp.184-194

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L.B. Maslov, "Dynamic Model of a Periodic Medium with Double Porosity," Mech. Solids. 53 (2), 184-194 (2018)
Year 2018 Volume 53 Number 2 Pages 184-194
DOI 10.3103/S0025654418020097
Title Dynamic Model of a Periodic Medium with Double Porosity
Author(s) L.B. Maslov (Ivanovo State Power Engineering University, Rabfakovskaya 34, Ivanovo, 153003 Russia; Peter the Great St. Petersburg Polytechnic University, ul. Polytechnicheskaya 29, St. Petersburg, 195251 Russia, maslov@tipm.ispu.ru)
Abstract The paper presents a unified mathematical approach for describing the dynamic stress-strain state of mechanical structures from heterogeneous materials possessing a double coupled system of pore channels filled with fluid. New dynamic equations describing the oscillations of poroelastic systems based on the developed model of a continuous medium with additional degrees of freedom in the form of various pressures of the components constituting the liquid phase of the material are obtained. The equations and the method of obtaining them have a greater degree of generalization than those encountered in the literature. Theoretical results can be used to study the propagation of vibrations in fractured geological rocks saturated with liquid, to develop technical systems of new structural materials with a porous structure, for the analysis of micro streams of fluid in the hierarchical system of microporous bone tissue.
Keywords poroelasticity, double porosity, dynamics, harmonic oscillations, mathematical model, mixed formulation
References
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Received 18 December 2012
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