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Titlebook: Views on Microstructures in Granular Materials; Pasquale Giovine,Paolo Maria Mariano,Giuseppe Mort Book 2020 Springer Nature Switzerland A

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發(fā)表于 2025-3-21 18:40:04 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Views on Microstructures in Granular Materials
編輯Pasquale Giovine,Paolo Maria Mariano,Giuseppe Mort
視頻videohttp://file.papertrans.cn/984/983072/983072.mp4
概述Highlights state-of-the-art theoretical, experimental, and applied trends in the study of granular materials.Motivates readers from a range of fields to explore this active area of research, with chap
叢書名稱Advances in Mechanics and Mathematics
圖書封面Titlebook: Views on Microstructures in Granular Materials;  Pasquale Giovine,Paolo Maria Mariano,Giuseppe Mort Book 2020 Springer Nature Switzerland A
描述.This contributed volume provides an up-to-date overview of the mechanics of granular materials, ranging from sparse media to soils. With chapters exploring state-of-the-art theoretical, experimental, and applied trends in the study of granular matter in various states, readers will be motivated to learn about the current challenges and potential avenues of exploration in this active area of research. Including a variety of perspectives, this volume will be a valuable reference for audiences in a number of fields. Specific topics covered include:.X-ray tomography techniques for analyzing sand.Evaluation of effective stress in unsaturated soils.Hyper-plasticity.Wave propagation in granular systems.Partly saturated porous media.Multi-scale approaches to the dynamics of sparse media.Views on Microstructures in Granular Materials. is an ideal resource for PhD students and researchers in applied mathematics, solid-state physics, civil engineering, and mechanical engineering..
出版日期Book 2020
關(guān)鍵詞Microstructures granular; Granular material modelling; Constitutive models; Soils mechanics; Micromechan
版次1
doihttps://doi.org/10.1007/978-3-030-49267-0
isbn_ebook978-3-030-49267-0Series ISSN 1571-8689 Series E-ISSN 1876-9896
issn_series 1571-8689
copyrightSpringer Nature Switzerland AG 2020
The information of publication is updating

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沙發(fā)
發(fā)表于 2025-3-21 22:33:27 | 只看該作者
Wave Propagation and Elasticity in Granular Soils: A Numerical Approach for a Micromechanical Perspting from the classical Effective Medium Theory. Finally, the chapter describes how micromechanical models can be extended to the case of immersed granular soils, and compares the new model with experiments on sand soils in a wide range of saturation degrees.
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地板
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Dense, Inhomogeneous, Granular Shearing,of a dense aggregate of identical frictional spheres sheared in a gravitational field between horizontal, rigid, bumpy boundaries by the upper boundary or in the absence of gravity between two coaxial, bumpy cylinders by the inner cylinder. In both scenarios, the resulting flow consists of a region
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Notes on Constitutive Relations for Porous Solids,tic and thermal constraints on ellipsoidal microstructures, in order to involve in the constitutive relations higher-order derivatives of macro- and micro-displacements and/or temperature avoiding classical incompatibilities.
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Wave Propagation and Elasticity in Granular Soils: A Numerical Approach for a Micromechanical Perspmpts to frame and compare contributions from soil mechanics, solid mechanics and physics. In a wide landscape, we focus on the micromechanical approach to the topic. Numerical simulations, based on the Discrete Element Method, have revealed the outmost role of the microstructure in characterising th
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發(fā)表于 2025-3-23 05:19:43 | 只看該作者
Macroscale Yield Criteria for Geomaterials,t gives rise to the natural coupling between the meridian and the deviatoric sections of the resulting yield surfaces; the second is called . because it is based on the definition of two distinct functions, one meridian and one deviatoric; the third is called . and can be seen as intermediate betwee
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發(fā)表于 2025-3-23 06:15:47 | 只看該作者
Biological Driven Phase Transitions in Fully or Partly Saturated Porous Media: A Multi-Component FEmate impact of landfill gas emissions significantly, since methane is estimated to have a global warming potential (GWP) of 25 over 100 years (GWP of CO. = 1). To understand and forecast the biological processes, a Finite-Element Model (FEM) is developed to simulate the behavior of methanotrophic la
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