Search results for "Homogenisation"

showing 9 items of 9 documents

Mechanical behavior of a sandwich with corrugated GRP core: numerical modeling and experimental validation

2014

In this work the mechanical behaviour of a core reinforced composite sandwich structure is studied. The sandwich employs a Glass Reinforced Polymer (GRP) orthotropic material for both the two external skins and the inner core web. In particular, the core is designed in order to cooperate with the GRP skins in membrane and flexural properties by means of the addition of a corrugated laminate into the foam core. An analytical model has been developed to replace a unit cell of this structure with an orthotropic equivalent thick plate that reproduces the in plane and out of plane behaviour of the original geometry. Different validation procedures have been implemented to verify the quality of t…

Materials scienceDiscretizationlcsh:Mechanical engineering and machineryComposite numberlcsh:TA630-695Shell (structure)Orthotropic materialFinite Element.Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineFlexural strengthHomogenisationlcsh:TJ1-1570Composite materialSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria IndustrialeSandwich Structurebusiness.industrySandwich StructuresMechanical EngineeringCorrugated CoreInner corelcsh:Structural engineering (General)Structural engineeringFinite element methodCore (optical fiber)Mechanics of MaterialsbusinessFrattura ed Integrità Strutturale
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A microstructural model for homogenisation and cracking of piezoelectric polycrystals

2019

Abstract An original three-dimensional generalised micro-electro-mechanical model for computational homogenisation and analysis of degradation and micro-cracking of piezoelectric polycrystalline materials is proposed in this study. The model is developed starting from a generalised electro-mechanical boundary integral representation of the micro-structural problem for the individual bulk grains and a generalised cohesive formulation is employed for studying intergranular micro-damage initiation and evolution into intergranular micro-cracks. To capture the electro-mechanical coupling at the evolving damaging intergranular interfaces, standard mechanical cohesive laws are enriched with suitab…

Materials scienceMechanical EngineeringNumerical analysisComputational MechanicsGeneral Physics and AstronomyBoundary (topology)010103 numerical & computational mathematicsMechanicsMicro-mechanicDegrees of freedom (mechanics)Intergranular corrosionPiezoelectric material01 natural sciencesComputer Science ApplicationsMicro-cracking010101 applied mathematicsPolycrystalline materialMechanics of MaterialsBoundary element methodGrain boundaryCrystalliteBoundary value problem0101 mathematicsComputational homogenisationReduction (mathematics)
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Biotic homogenisation in bird communities leads to large‐scale changes in species associations

2021

The impact of global change on biodiversity is commonly assessed in terms of changes in species distributions, community richness and community composition. Whether and how much associations between species are also changing is much less documented. In this study, we quantify changes in large-scale patterns of species associations in bird communities in relation to changes in species composition. We use network approaches to build three community-aggregated indices reflecting complementary aspects of species association networks. We characterise the spatio–temporal dynamics of these indices using a large-scale and high-resolution dataset of bird co-abundances of 109 species monitored for 17…

[SDV.EE]Life Sciences [q-bio]/Ecology environmentekologiset verkostothomogenisationinteraction networklinnustolintukannatbiodiversiteettiβ-diversity[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/EcosystemsAvifaunaspecies association[SDE]Environmental Sciencesavifaunacommunitysense organs[SDE.BE]Environmental Sciences/Biodiversity and EcologyEcology Evolution Behavior and Systematics
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Multi-scale modelling of heterogeneous shell structures

2011

International audience; This paper reviews multi-scale computational homogenisation frameworks for the non-linear behaviour of heterogeneous thin planar shells. Based on a review of some of the currently available methods, a computational homogenisation scheme for shells is applied on to representative volume elements for plain weave composites. The effect of flexural loading on the potential failure modes of such materials is analysed, focusing on the reinforcement-matrix delamination mechanism. The attention is next shifted toward failure localisation in masonry unit cells. Subsequently, a recently developed computational FE2 solution scheme accounting for damage localisation at structura…

thin planar shellstextile reinforced compositesmasonry[ SPI.MAT ] Engineering Sciences [physics]/Materialscomputational homogenisation[SPI.MAT] Engineering Sciences [physics]/Materials[SPI.MAT]Engineering Sciences [physics]/Materialsfailure
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Impacts of agricultural intensification on bird communities: New insights from a multi-level and multi-facet approach of biodiversity

2016

International audience; Following the multiplicity of studies dealing with the effects of agricultural intensification on bird diversity, one of the lessons drawn is that these effects depend on both the taxonomic group, the component of diversity, the aspect of intensification, and the spatial scale. This often leads to disparate results among studies suggesting that the investigation of agriculture-biodiversity relationships suffers from scale-dependence, information redundancy, non-linearity problems, and thus, unpredictability.Here, we propose a multi-scale and multi-facet approach to clarify the impacts of agricultural intensification on biodiversity and possible mitigating actions. Ou…

0106 biological sciencesCrop practices010504 meteorology & atmospheric sciencesta1172BiodiversityBeta diversityScalesLand coverGeneralist and specialist speciesFarmland bird diversity010603 evolutionary biology01 natural sciences0105 earth and related environmental sciencesTrophic level2. Zero hungerEcologyAgroforestryEcologybusiness.industryAgricultural intensification15. Life on landGeographyLandscape homogenisationAgricultureSpatial ecologyta1181Biological dispersalAnimal Science and ZoologySpecies traits[SDE.BE]Environmental Sciences/Biodiversity and EcologybusinessAgronomy and Crop Science
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Biotic homogenisation in bird communities leads to large-scale changes in species associations

2020

AbstractAimThe impact of global change on biodiversity is commonly assessed in terms of changes in species distributions, community richness and community composition. Whether and how much associations between species, i.e. the degree of correlation in their spatial co-occurrence, are also changing is much less documented and mostly limited to local studies of ecological networks. In this study, we quantify changes in large-scale patterns of species associations in bird communities in relation to changes in species composition.LocationFrance.Time period2001-2017.Major taxa studiedCommon breeding birds.MethodsWe use network approaches to build three community-aggregated indices reflecting co…

homogenisationbeta-diversityinteraction networkEcologyCommunity structureBiodiversityWoodlandGeneralist and specialist speciesEcological networkGeographyTaxonHabitatAvifaunaspecies associationcommunitysense organsSpecies richness
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The influence of building interactions on seismic and elastic body waves

2019

We outline some recent research advances on the control of elastic waves in thin and thick plates, that have occurred since the large scale experiment [S. Brûlé, Phys. Rev. Lett. 112, 133901 (2014)] that demonstrated significant interaction of surface seismic waves with holes structuring sedimentary soils at the meter scale. We further investigate the seismic wave trajectories of compressional body waves in soils structured with buildings. A significant substitution of soils by inclusions, acting as foundations, raises the question of the effective dynamic properties of these structured soils. Buildings, in the case of perfect elastic conditions for both soil and buildings, are shown to int…

Earthquake engineeringTechnologyScale (ratio)elastic cloakingBody wavesCITYMaterials ScienceCloakingMaterials Science Multidisciplinary01 natural sciencesSeismic wavePhysics::Geophysics03 medical and health sciencesSeismic metamaterial0103 physical sciences[PHYS.MECA.SOLID]Physics [physics]/Mechanics [physics]/Solid mechanics [physics.class-ph]General Materials Science010306 general physics030304 developmental biology0303 health sciencesScience & TechnologyhomogenisationCLOAKINGphysics.class-phCondensed Matter Physicslcsh:QC1-999[PHYS.MECA.ACOU]Physics [physics]/Mechanics [physics]/Acoustics [physics.class-ph][SPI.GCIV]Engineering Sciences [physics]/Civil EngineeringMechanics of Materialssite-city interaction[SPI.OPTI]Engineering Sciences [physics]/Optics / Photoniclcsh:Electrical engineering. Electronics. Nuclear engineeringearthquake engineeringlcsh:TK1-9971Seismologylcsh:Physics
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VIRTUAL ELEMENT METHOD FOR COMPUTATIONAL HOMOGENIZATIONS OF UNIDIRECTIONAL FIBER-REINFORCED COMPOSITE MATERIALS

2019

The Virtual Element Method (VEM) is a generalization of the Finite Element Method (FEM) for the treatment of general polygonal/polyhedral mesh elements. Despite its recent introduction, VEM has been applied to several problems in structural mechanics. Due to such capability of dealing with mesh elements of general shape and of naturally addressing the presence of hanging nodes, the VEM ensures a noticeable simplification in the data preparation stage of the analysis, allowing implementing a mesh generation process over complex multi-domain geometries in a fully automated way. Moreover, for the lowest order VEM used in this contribution,no numerical integration is required to compute the sys…

Micromechanics Computational homogenisation Composite materials Virtual Element MethodSettore ING-IND/04 - Costruzioni E Strutture Aerospaziali
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Bending effect on the risk for delamination at the reinforcement/matrix interface of 3D woven fabric composite using a shell-like RVE

2012

This paper presents a computational homogenisation-based technique for flexural effects in textile reinforced composite planar shells. An homogenisation procedure is used for the in-plane and the out-of-plane behaviour of three-dimensional woven composite shells, taking the in-plane periodicity of the material into account while relaxing any periodicity tying in the thickness direction. Several types of damage (matrix or reinforcement cracking, delamination, …) can appear in a composite material. In this paper, material non-linear computations are used to assess the importance of bending on the risk for delamination at the reinforcement/matrix interface. The normal and tangential stresses a…

Résistance et comportement des matériauxMaterials scienceComposite number[ SPI.MAT ] Engineering Sciences [physics]/MaterialsShell (structure)Non-linear flexural behaviour02 engineering and technologyBendingSciences de l'ingénieur01 natural sciencesWoven composite[SPI.MAT]Engineering Sciences [physics]/MaterialsStress (mechanics)Flexural strengthDebonding0101 mathematicsComposite materialComputational homogenisationThermoplastic yarnsCivil and Structural EngineeringFiber pull-outRésistance des matériauxbusiness.industryDelaminationStructural engineering021001 nanoscience & nanotechnology010101 applied mathematicsDelaminationCeramics and Composites0210 nano-technologybusinessFailure mode and effects analysis
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