Search results for "porous medium"

showing 10 items of 164 documents

The 3D structure of fabric and its relationship to liquid and vapor transport

2004

Polymeric carrier fabrics are commonly used in many industrial processes including manufacture of paper and board. Apart from acting as a carrier for the compressible porous material during the manufacturing process, the synthetic woven fabrics comprising mainly of poly ethylene terypthalate (PET) yarns, impart valuable product attributes, i.e. softness, bulk, absorbency, etc. in consumer products. The three-dimensional structure of the fabrics plays a critical role in deciding the manufacturing and energy efficiency as well as product end-use properties. X-ray micro computed tomography (X-CT) provides a non-intrusive technique to visualize and analyze the three-dimensional structure of por…

/dk/atira/pure/sustainabledevelopmentgoals/affordable_and_clean_energyChemistryPapermakingNanotechnologyThermal diffusivityTortuosityPermeability (earth sciences)Colloid and Surface ChemistryFluid dynamicsSDG 7 - Affordable and Clean EnergyDiffusion (business)Composite materialPorous mediumPorosityColloids and Surfaces A: Physicochemical and Engineering Aspects
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On the solution of a parabolic PDE involving a gas flow through a semi-infinite porous medium

2021

Abstract Taking as start point the parabolic partial differential equation with the respective initial and boundary conditions, the present research focuses onto the flow of a sample of waste-water derived from a standard/conventional dyeing process. In terms of a highly prioritized concern, meaning environment decontamination and protection, in order to remove the dyes from the waste waters, photocatalyses like ZnO or TiO2 nanoparticles were formulated, due to their high surface energy which makes them extremely reactive and attractive. According to the basics of ideal fluid, the key point is the gas flow through an ideal porous pipe consisting of nanoparticles bound one to each other, for…

010302 applied physicsPartial differential equationDifferential equationNumerical analysisGeneral Physics and Astronomy02 engineering and technologyMechanicsWastewater decontamination021001 nanoscience & nanotechnology01 natural sciencesParabolic partial differential equationlcsh:QC1-999Parabolic equation and systemsBoundary value problemsDifferential equationFlow (mathematics)0103 physical sciencesNanoporous ZnO particlesBoundary value problem0210 nano-technologyPorosityPorous mediumlcsh:PhysicsNumerical analysisResults in Physics
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Experimental investigation of the effect of moisture on the acoustic properties of lightweight substrates used in green envelopes

2021

International audience; Substrates are used in green walls and roofs to supply air and water to the roots of the growing plants. These substrates are porous with micropores which store water and macropores which facilitate drainage and air entry. Effect of moisture on acoustic absorption is studied for two lightweight substrates: coir dust and perlite. Measurement of dry and moistened substrates are conducted to evaluate their effective speed of sound, attenuation, characteristic impedance, compressibility and density between 100 Hz and 1000 Hz using an impedance tube and the three microphone-two load method. Effect of moisture on these quantities is found to depend strongly upon the intera…

010302 applied physics[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph]Materials scienceAcoustics and UltrasonicsMacroporeMoistureAcoustic porous mediumLightweight substrateSound absorption;Lightweight substrate;Acoustic porous medium;Moisture;Green envelopeGreen envelope01 natural sciencesCharacteristic impedance[SPI.MAT]Engineering Sciences [physics]/MaterialsSubstrate (building)Speed of sound0103 physical sciencesPerliteSound absorptionComposite material[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/MicroelectronicsPorosity010301 acousticsMicroscale chemistryMoisture
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2019

Abstract. The flow of fluids through porous media such as groundwater flow or magma migration is a key process in geological sciences. Flow is controlled by the permeability of the rock; thus, an accurate determination and prediction of its value is of crucial importance. For this reason, permeability has been measured across different scales. As laboratory measurements exhibit a range of limitations, the numerical prediction of permeability at conditions where laboratory experiments struggle has become an important method to complement laboratory approaches. At high resolutions, this prediction becomes computationally very expensive, which makes it crucial to develop methods that maximize …

010504 meteorology & atmospheric sciencesStratigraphyFinite differencePaleontologySoil ScienceReynolds numberGeologyMechanics010502 geochemistry & geophysics01 natural sciencesStencilNon-Newtonian fluidPhysics::GeophysicsPhysics::Fluid DynamicsPermeability (earth sciences)symbols.namesakeGeophysicsGeochemistry and PetrologyFluid dynamicsNewtonian fluidsymbolsPorous mediumGeology0105 earth and related environmental sciencesEarth-Surface ProcessesSolid Earth
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Modeling mass transfer in fracture flows with the time domain-random walk method

2019

The time domain-random walk method was developed further for simulating mass transfer in fracture flows together with matrix diffusion in surrounding porous media. Specifically, a time domain-random walk scheme was developed for numerically approximating solutions of the advection-diffusion equation when the diffusion coefficient exhibits significant spatial variation or even discontinuities. The proposed scheme relies on second-order accurate, central-difference approximations of the advective and diffusive fluxes. The scheme was verified by comparing simulated results against analytical solutions in flow configurations involving a rectangular channel connected on one side with a porous ma…

1171 GeosciencesvirtauslaskentaPOROUS-MEDIAadvection116 Chemical sciencesPorous media010103 numerical & computational mathematicsClassification of discontinuitiesPORE114 Physical scienceskulkeutuminen01 natural scienceshuokoisuusMatrix (mathematics)porous mediadiffuusio (fysikaaliset ilmiöt)Mass transfersimulointiPERMEABILITYTime domainBreakthrough curve0101 mathematicsComputers in Earth SciencesDiffusion (business)matrix diffusionPhysicsHETEROGENEOUS ROCK MATRIXHYDRODYNAMIC TRANSPORTPOROSITYSolute transportMechanicssimulationRandom walkDIFFUSIONComputer Science ApplicationsComputational MathematicsComputational Theory and MathematicsFlow (mathematics)solute transportSIMULATIONAdvectionMatrix diffusionbreakthrough curvePorous mediumComputational Geosciences
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Nanomechanics of individual aerographite tetrapods

2017

Carbon-based three-dimensional aerographite networks, built from interconnected hollow tubular tetrapods of multilayer graphene, are ultra-lightweight materials recently discovered and ideal for advanced multifunctional applications. In order to predict the bulk mechanical behaviour of networks it is very important to understand the mechanics of their individual building blocks. Here we characterize the mechanical response of single aerographite tetrapods via in situ scanning electron and atomic force microscopy measurements. To understand the acquired results, which show that the overall behaviour of the tetrapod is governed by the buckling of the central joint, a mechanical nonlinear mode…

3D carbon networksMaterials scienceScienceTechnische FakultätHingeGeneral Physics and AstronomyIngenieurwissenschaften [620]Nanotechnology02 engineering and technology010402 general chemistry01 natural sciencesArticleGeneral Biochemistry Genetics and Molecular Biologylaw.inventionUnknownlawTetrapod (structure)Aerographiteddc:5AerographiteAerographite 3D carbon networks porous materialsMultidisciplinaryGrapheneFaculty of EngineeringQarticleGeneral Chemistry021001 nanoscience & nanotechnologyFinite element method6200104 chemical sciencesBucklingddc:500ddc:6200210 nano-technologyPorous mediumScholarlyArticleporous materialsNanomechanicsNature Communications
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Permeability of three-dimensional random fiber webs

1998

We report the results of essentially ab initio simulations of creeping flow through large threedimensional random fiber webs that closely resemble fibrous sheets such as paper and nonwoven fabrics. The computational scheme used in this Letter is that of the lattice-Boltzmann method and contains no free parameters concerning the properties of the porous medium or the dynamics of the flow. The computed permeability of the web is found to be in good agreement with experimental data, and confirms that permeability depends exponentially on porosity over a large range of porosity. [S0031-9007(97)05087-4]

:Engineering::Computer science and engineering [DRNTU]Materials sciencePhysicsfiber websAb initioGeneral Physics and AstronomyStokes flowcreeping flowPhysics::GeophysicsPermeability (earth sciences)Flow (mathematics)simulationsFiberComposite materialPorous mediumPorosityFree parameter
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An Introduction to Soil and Water Infiltration

2016

This chapter provides a short presentation of general characteristics of the soil. Basic concepts concerning soil water content and potential and flow of water in the porous medium are then reported since these concepts are diffusely used throughout this book. The infiltration process is finally illustrated considering different modeling approaches. In particular, development of analytical infiltration models is described with reference to one-dimensional gravity-free water absorption, one-dimensional gravity driven infiltration, one-dimensional gravity and capillary driven infiltration and, finally, three-dimensional gravity and capillary driven infiltration.

Absorption of waterCapillary actionQuantitative Biology::Tissues and OrgansPhysics::OpticsSoil science04 agricultural and veterinary sciences010501 environmental sciences01 natural sciencesPhysics::GeophysicsPressure headInfiltration (hydrology)Hydraulic conductivitySoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental sciencePorous mediumWater content0105 earth and related environmental sciences
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X-ray CT imaging as a scientific tool to study the capillary water absorption in sedimentary rocks used in cultural heritages

2009

This paper proposes the X-Ray CT imaging as appropriate tool for investigating the capillary water absorption in sedimentary rocks. This technique, in fact, provides information useful for deeping the knowledge about of the porosity and the kinetics of the water capillary absorption in porous materials. The possibility to improve in non invasive manner, the understanding of this phenomenon, constitutes a fundamental aspect to take actions in the restoration and conservation of lapideous artifact and monuments from cultural heritages. The investigated sedimentary rocks come from different Sicilian quarries and were used for the building of the Greek temples in the archaeological areas of Agr…

Absorption of waterGeographyRegion of interestX-ray CT cultural heritagesCapillary water absorptionMineralogySedimentary rockWettingPorosityPorous mediumAbsorption (electromagnetic radiation)SPIE Proceedings
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Fast Measurements of Adsorption on Porous Materials Using Jäntti's Method

1999

In 1972, Jäntti et al. formulated a method to shorten the time taken for adsorption measurements. We suggested at the Kiev International Conference on Vacuum Microbalance Techniques (1999) that the applicability of this method could be widened by considering a number of parallel adsorptions. There is, however, a more complicated but perhaps more interesting variant possible when extra mass transport is considered to occur in series. Such an application could involve adsorption within a porous structure where diffusion must be considered as a process occurring in series with adsorption on the surface.

AdsorptionChemical engineeringChemistryGeneral Chemical Engineeringlcsh:QD450-801lcsh:Physical and theoretical chemistrySurfaces and InterfacesGeneral ChemistryPorous mediumAdsorption Science & Technology
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