Variational Continuum Multiphase Poroelasticity

Theory and Applications

Nonfiction, Science & Nature, Technology, Material Science, Science, Physics, Mechanics
Cover of the book Variational Continuum Multiphase Poroelasticity by Roberto Serpieri, Francesco Travascio, Springer Singapore
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Roberto Serpieri, Francesco Travascio ISBN: 9789811034527
Publisher: Springer Singapore Publication: January 19, 2017
Imprint: Springer Language: English
Author: Roberto Serpieri, Francesco Travascio
ISBN: 9789811034527
Publisher: Springer Singapore
Publication: January 19, 2017
Imprint: Springer
Language: English

This book collects the theoretical derivation of a recently presented general variational macroscopic continuum theory of multiphase poroelasticity (VMTPM), together with its applications to consolidation and stress partitioning problems of interest in several applicative engineering contexts, such as in geomechanics and biomechanics.

The theory is derived based on a purely-variational deduction, rooted in the least-Action principle, by considering a minimal set of kinematic descriptors. The treatment herein considered keeps a specific focus on the derivation of most general medium-independent governing equations.

It is shown that VMTPM recovers paradigms of consolidated use in multiphase poroelasticity such as Terzaghi's stress partitioning principle and Biot's equations for wave propagation. In particular, the variational treatment permits the derivation of a general medium-independent stress partitioning law, and the proposed variational theory predicts that the external stress, the fluid pressure, and the stress tensor work-associated with the macroscopic strain of the solid phase are partitioned according to a relation which, from a formal point of view, turns out to be strictly compliant with Terzaghi's law, irrespective of the microstructural and constitutive features of a given medium. Moreover, it is shown that some experimental observations on saturated sandstones, generally considered as proof of deviations from Terzaghi's law, are ordinarily predicted by VMTPM.

As a peculiar prediction of VMTPM, the book shows that the phenomenon of compression-induced liquefaction experimentally observed in cohesionless mixtures can be obtained as a natural implication of this theory by a purely rational deduction. A characterization of the phenomenon of crack closure in fractured media is also inferred in terms of macroscopic strain and stress paths.

Altogether the results reported in this monograph exemplify the capability of VMTPM to describe and predict a large class of linear and nonlinear mechanical behaviors observed in two-phase saturated materials.

 

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book collects the theoretical derivation of a recently presented general variational macroscopic continuum theory of multiphase poroelasticity (VMTPM), together with its applications to consolidation and stress partitioning problems of interest in several applicative engineering contexts, such as in geomechanics and biomechanics.

The theory is derived based on a purely-variational deduction, rooted in the least-Action principle, by considering a minimal set of kinematic descriptors. The treatment herein considered keeps a specific focus on the derivation of most general medium-independent governing equations.

It is shown that VMTPM recovers paradigms of consolidated use in multiphase poroelasticity such as Terzaghi's stress partitioning principle and Biot's equations for wave propagation. In particular, the variational treatment permits the derivation of a general medium-independent stress partitioning law, and the proposed variational theory predicts that the external stress, the fluid pressure, and the stress tensor work-associated with the macroscopic strain of the solid phase are partitioned according to a relation which, from a formal point of view, turns out to be strictly compliant with Terzaghi's law, irrespective of the microstructural and constitutive features of a given medium. Moreover, it is shown that some experimental observations on saturated sandstones, generally considered as proof of deviations from Terzaghi's law, are ordinarily predicted by VMTPM.

As a peculiar prediction of VMTPM, the book shows that the phenomenon of compression-induced liquefaction experimentally observed in cohesionless mixtures can be obtained as a natural implication of this theory by a purely rational deduction. A characterization of the phenomenon of crack closure in fractured media is also inferred in terms of macroscopic strain and stress paths.

Altogether the results reported in this monograph exemplify the capability of VMTPM to describe and predict a large class of linear and nonlinear mechanical behaviors observed in two-phase saturated materials.

 

More books from Springer Singapore

Cover of the book Innovative Research in Transportation Infrastructure by Roberto Serpieri, Francesco Travascio
Cover of the book Regional Conference on Science, Technology and Social Sciences (RCSTSS 2016) by Roberto Serpieri, Francesco Travascio
Cover of the book Numeracy in Authentic Contexts by Roberto Serpieri, Francesco Travascio
Cover of the book Playful Disruption of Digital Media by Roberto Serpieri, Francesco Travascio
Cover of the book Institutional Design and Capacity to Enhance Effective Governance of Oil and Gas Wealth: The Case of Kurdistan Region by Roberto Serpieri, Francesco Travascio
Cover of the book Diabetic Retinopathy by Roberto Serpieri, Francesco Travascio
Cover of the book Organizational Transition and Systematic Governance by Roberto Serpieri, Francesco Travascio
Cover of the book The Humanities in Contemporary Chinese Contexts by Roberto Serpieri, Francesco Travascio
Cover of the book Pretreatment of Lignocellulosic Biomass for Biofuel Production by Roberto Serpieri, Francesco Travascio
Cover of the book Re-emerging Russia by Roberto Serpieri, Francesco Travascio
Cover of the book Computational Intelligence: Theories, Applications and Future Directions - Volume II by Roberto Serpieri, Francesco Travascio
Cover of the book In the Realm of the Senses by Roberto Serpieri, Francesco Travascio
Cover of the book Recent Trends in Physics of Material Science and Technology by Roberto Serpieri, Francesco Travascio
Cover of the book Introduction to General Relativity by Roberto Serpieri, Francesco Travascio
Cover of the book Human Computer Interaction Using Hand Gestures by Roberto Serpieri, Francesco Travascio
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy