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Titlebook: Micro to MACRO Mathematical Modelling in Soil Mechanics; Pasquale Giovine,Paolo Maria Mariano,Giuseppe Mort Conference proceedings 2018 Sp

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书目名称Micro to MACRO Mathematical Modelling in Soil Mechanics
编辑Pasquale Giovine,Paolo Maria Mariano,Giuseppe Mort
视频video
概述Collects new results on the micro-to-macro modelling of granular materials.Focuses on comparison of appropriateness of models and mathematics rigorousness.Selection of best papers
丛书名称Trends in Mathematics
图书封面Titlebook: Micro to MACRO Mathematical Modelling in Soil Mechanics;  Pasquale Giovine,Paolo Maria Mariano,Giuseppe Mort Conference proceedings 2018 Sp
描述.This special issue collects selected contributions (excluding general lectures) of a Symposium on "Micro to MACRO Mathematical Modelling in Soil Mechanics", which took place at the University of Reggio Calabria, Italy, from May 29th to June 1st, 2018..The Symposium provided an opportunity to enhance the scientific debate on the construction of mathematical models for the description of the physical behaviour of soils, as well as on the suggestions provided by the micro-mechanical observation of the matter. The focus was on the comparison between the appropriateness of models and the need of mathematics to obtain rigorous results, which involves know-how from applied mathematical physics, geotechnical engineering and mechanics of solids..The contributions were selected by the Editors and the other Members of the Scientific Committee of the Symposium: Gianfranco Capriz (Pisa, Roma), Claudio di Prisco (Milan), Wolfgang Ehlers (Stuttgart), James T. Jenkins (Cornell), Stefan Luding (Twente), David Muir Wood (Dundee), Kenichi Soga (Berkeley)..
出版日期Conference proceedings 2018
关键词soil mechanics; porous materials; granular materials; discrete element method; micro-to-macro; modelling
版次1
doihttps://doi.org/10.1007/978-3-319-99474-1
isbn_ebook978-3-319-99474-1Series ISSN 2297-0215 Series E-ISSN 2297-024X
issn_series 2297-0215
copyrightSpringer Nature Switzerland AG 2018
The information of publication is updating

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Evolution of Granular Contact Gain, Loss and Movement Under Shear Studied Using Synchrotron X-ray M. In the current study, the evolution of inter-particle contacts (i.e., the contact gain, contact loss and contact movement) within a dry glass beads sheared under a low confining pressure is investigated. The test is carried out in a miniature triaxial apparatus, and high-resolution synchrotron X-r
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