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Viscoelastic interfaces driven in di...
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Landes, Francois P.
Viscoelastic interfaces driven in disordered media[electronic resource] :applications to friction /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
531.1134
書名/作者:
Viscoelastic interfaces driven in disordered media : applications to friction // by Francois P. Landes.
作者:
Landes, Francois P.
出版者:
Cham : : Springer International Publishing :, 2016.
面頁冊數:
xiii, 206 p. : : ill., digital ;; 24 cm.
Contained By:
Springer eBooks
標題:
Friction.
標題:
Surfaces (Technology)
標題:
Tribology.
標題:
Soil mechanics.
標題:
Physics.
標題:
Nonlinear Dynamics.
標題:
Geophysics/Geodesy.
標題:
Complex Systems.
標題:
Geophysics and Environmental Physics.
ISBN:
9783319200224
ISBN:
9783319200217
內容註:
Introduction to Friction -- Application of Friction to Seismic Faults -- Elastic Interfaces Driven in Disordered Media -- Viscoelastic Interfaces Driven in Disordered Media -- Directed Percolation: a Non-Markovian Variant -- General Perspectives.
摘要、提要註:
This book offers an in-depth study of two well-known models of "avalanche" dynamics, modified minimally by the inclusion of relaxation. Many complex systems respond to continuous inputs of energy by accumulation of stress over time, interrupted by sudden energy releases called avalanches. The first model studied is the viscoelastic interface driven over disorder, which is shown to display the fundamental features of friction. In the mean-field limit, the friction force derived semi-analytically is compatible with laboratory experiments (displaying both velocity weakening and contact aging) In two dimensions, large-scale numerical simulations are in good agreement with the basic features of real earthquakes (Gutenberg-Richter Law, aftershock migration) The second model is a non-Markovian variant of Directed Percolation, in which we observe that the universality class is only partly modified by relaxation, a promising finding with respect to our first model.
電子資源:
http://dx.doi.org/10.1007/978-3-319-20022-4
Viscoelastic interfaces driven in disordered media[electronic resource] :applications to friction /
Landes, Francois P.
Viscoelastic interfaces driven in disordered media
applications to friction /[electronic resource] :by Francois P. Landes. - Cham :Springer International Publishing :2016. - xiii, 206 p. :ill., digital ;24 cm. - Springer theses,2190-5053. - Springer theses..
Introduction to Friction -- Application of Friction to Seismic Faults -- Elastic Interfaces Driven in Disordered Media -- Viscoelastic Interfaces Driven in Disordered Media -- Directed Percolation: a Non-Markovian Variant -- General Perspectives.
This book offers an in-depth study of two well-known models of "avalanche" dynamics, modified minimally by the inclusion of relaxation. Many complex systems respond to continuous inputs of energy by accumulation of stress over time, interrupted by sudden energy releases called avalanches. The first model studied is the viscoelastic interface driven over disorder, which is shown to display the fundamental features of friction. In the mean-field limit, the friction force derived semi-analytically is compatible with laboratory experiments (displaying both velocity weakening and contact aging) In two dimensions, large-scale numerical simulations are in good agreement with the basic features of real earthquakes (Gutenberg-Richter Law, aftershock migration) The second model is a non-Markovian variant of Directed Percolation, in which we observe that the universality class is only partly modified by relaxation, a promising finding with respect to our first model.
ISBN: 9783319200224
Standard No.: 10.1007/978-3-319-20022-4doiSubjects--Topical Terms:
565135
Friction.
LC Class. No.: QC197
Dewey Class. No.: 531.1134
Viscoelastic interfaces driven in disordered media[electronic resource] :applications to friction /
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This book offers an in-depth study of two well-known models of "avalanche" dynamics, modified minimally by the inclusion of relaxation. Many complex systems respond to continuous inputs of energy by accumulation of stress over time, interrupted by sudden energy releases called avalanches. The first model studied is the viscoelastic interface driven over disorder, which is shown to display the fundamental features of friction. In the mean-field limit, the friction force derived semi-analytically is compatible with laboratory experiments (displaying both velocity weakening and contact aging) In two dimensions, large-scale numerical simulations are in good agreement with the basic features of real earthquakes (Gutenberg-Richter Law, aftershock migration) The second model is a non-Markovian variant of Directed Percolation, in which we observe that the universality class is only partly modified by relaxation, a promising finding with respect to our first model.
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