Search results for "fluid"

showing 10 items of 5513 documents

Status of new 18 GHz ECRIS HIISI

2018

A new 18 GHz ECR ion source HIISI is under commissioning at the Accelerator Laboratory at the University of Jyvaskyla (JYFL). The main purpose of HIISI is to produce high-energy beam cocktails, e.g. Xe44+, for radiation effects testing of electronics with the K130 cyclotron. The initial commissioning results in 18+14 GHz operation with oxygen, argon and xenon are reported. The beam currents are compared to those produced by reference ion sources (JYFL 14 GHz ECRIS, GTS and SuSI). At the moment (October 2017) 560 µA of O6+ and 310 µA of Ar13+, for example, have been reached with HIISI at 2.3 kW total power.A new 18 GHz ECR ion source HIISI is under commissioning at the Accelerator Laboratory…

University of JyväskyläMaterials scienceCyclotrontutkimuslaitteetchemistry.chemical_elementRadiation01 natural sciences7. Clean energy010305 fluids & plasmasIonlaw.inventionNuclear physicsXenonHIISIlaw0103 physical sciencesheavy ion ion source injector010302 applied physicsArgonta114syklotronitIon sourcechemistrysäteilyfysiikkaMoment (physics)ionsaccelerator laboratoryBeam (structure)
researchProduct

Electromyographic evaluation of specific elastic band exercises targeting neck and shoulder muscle activation

2020

Background: Specific strength training at a high intensity is effective in reducing work related neck/shoulder pain. However, it remains to be documented as to which exercises most specifically target neck and shoulder muscles at high activation level while using simple equipment as e.g., elastic bands. We hypothezised that selected exercises would specifically target the respective muscles, as follows: (1) shrugs and reverse flyes: the upper trapezius muscle, (2) cervical extension and lateral flexion: the upper neck extensor muscle, and (3) cervical flexion and rotation: the sternocleidomastoideus muscle. Methods: Eleven healthy males (25.9 &plusmn

Upper trapeziusmusculoskeletal diseasesMusculoskeletal painRepetition maximumlihaksettherapeutic exercisesElectromyographyTherapeutic exerciseswork related neck painWork relatedlcsh:Technologylcsh:Chemistrykivunhoito03 medical and health sciences0302 clinical medicineMedicineGeneral Materials ScienceInstrumentationlcsh:QH301-705.5musculoskeletal painFluid Flow and Transfer ProcessesOrthodontics030222 orthopedicsmedicine.diagnostic_testbusiness.industrylcsh:TProcess Chemistry and TechnologyWork related neck painGeneral EngineeringkipuHigh activationShoulder musclelcsh:QC1-999Computer Science ApplicationsIntensity (physics)elektromyografialcsh:Biology (General)lcsh:QD1-999lcsh:TA1-2040Physical training intensityvoimaharjoitteluphysical training intensityExtensor musclebusinesslcsh:Engineering (General). Civil engineering (General)030217 neurology & neurosurgerylcsh:Physicsliikuntahoito
researchProduct

Fractional-order theory of thermoelasticicty. I: Generalization of the Fourier equation

2018

The paper deals with the generalization of Fourier-type relations in the context of fractional-order calculus. The instantaneous temperature-flux equation of the Fourier-type diffusion is generalized, introducing a self-similar, fractal-type mass clustering at the micro scale. In this setting, the resulting conduction equation at the macro scale yields a Caputo's fractional derivative with order [0,1] of temperature gradient that generalizes the Fourier conduction equation. The order of the fractional-derivative has been related to the fractal assembly of the microstructure and some preliminary observations about the thermodynamical restrictions of the coefficients and the state functions r…

Uses of trigonometryGeneralization01 natural sciences010305 fluids & plasmasScreened Poisson equationsymbols.namesakeFractional operators0103 physical sciencesFractional Fourier equationMechanics of Material010306 general physicsFourier seriesMathematicsFourier transform on finite groupsEntropy functionsHill differential equationPartial differential equationMechanical EngineeringFourier inversion theoremMathematical analysisTemperature evolutionMechanics of MaterialssymbolsFractional operatorSettore ICAR/08 - Scienza Delle CostruzioniEntropy function
researchProduct

Convective Roll Instabilities of Vertical Throughflow with Viscous Dissipation in a Horizontal Porous Layer

2009

Published version of an article from the journal: Transport in Porous Media. The original publication is available at Spingerlink. http://dx.doi.org/10.1007/s11242-009-9417-y The vertical throughflow with viscous dissipation in a horizontal porous layer is studied. The horizontal plane boundaries are assumed to be isothermal with unequal temperatures and bottom heating. A basic stationary solution of the governing equations with a uniform vertical velocity field (throughflow) is determined. The temperature field in the basic solution depends only on the vertical coordinate. Departures from the linear heat conduction profile are displayed by the temperature distribution due to the forced con…

VDP::Mathematics and natural science: 400::Mathematics: 410::Applied mathematics: 413DARCY’S LAWConvectionThroughflowDarcy's lawMaterials scienceLINEAR STABILITYGeneral Chemical EngineeringTHROUGHFLOWThermodynamicsMechanicsThermal conductionCritical valueHorizontal planeCatalysisForced convectionPhysics::Fluid DynamicsPOROUS MEDIUMCONVECTIVE ROLLSVDP::Technology: 500::Materials science and engineering: 520Linear stabilityTransport in Porous Media
researchProduct

Frequency domain control based on quantitative feedback theory for vibration suppression in structures equipped with magnetorheological dampers

2009

This is an author-created, un-copyedited version of an article accepted for publication in Smart Materials and Structures. IOP Publishing Ltd is not responsible for any errors or omissions in this version of the manuscript or any version derived from it. The definitive publisher authenticated version is available online at http://dx.doi.org/10.1088/0964-1726/18/9/095041 This paper addresses the problem of designing quantitative feedback theory (QFT) based controllers for the vibration reduction in a structure equipped with an MR damper. In this way, the controller is designed in the frequency domain and the natural frequencies of the structure can be directly accounted for in the process. T…

VDP::Mathematics and natural science: 400::Mathematics: 410::Applied mathematics: 413EngineeringNichols plotRetroacció (Electrònica)business.industryVDP::Technology: 500::Mechanical engineering: 570::Machine construction and engineering technology: 571Vibration controlControl engineeringNonlinear controlFeedback control systemsCondensed Matter PhysicsAtomic and Molecular Physics and OpticsDamperQuantitative feedback theoryMechanics of MaterialsControl theoryFrequency domainSignal ProcessingMagnetorheological fluidSistemes de control per retroaccióGeneral Materials ScienceElectrical and Electronic EngineeringFeedback (Electronics)businessCivil and Structural Engineering
researchProduct

Linear instability of mixed convection of cold water in a porous layer induced by viscous dissipation

2009

Accepted version of an article published in the journal: International Journal of Thermal Sciences, Elsevier Published version available on Science Direct: http://dx.doi.org/10.1016/j.ijthermalsci.2008.06.012 An analysis of linear stability of the stationary laminar Darcy flow in a horizontal porous layer is performed. The porous layer is saturated with cold water. The upper plane boundary is assumed to be subject to heat transfer with finite conductance to an environment at the temperature of maximum density of cold water. The lower plane boundary is adiabatic. Convective instabilities are caused by flow viscous dissipation, inducing a basic temperature distribution that decreases in the u…

VDP::Mathematics and natural science: 400::Mathematics: 410::Applied mathematics: 413Materials scienceDarcy's lawLINEAR STABILITYGeneral EngineeringThermodynamicsLaminar flowCondensed Matter PhysicsInstabilityVISCOUS DISSIPATIONVDP::Mathematics and natural science: 400::Physics: 430Physics::Fluid DynamicsDARCY LAWPOROUS MEDIUMCombined forced and natural convectionHeat transferThermalPorous mediumBUOYANT FLOWLinear stability
researchProduct

Stability of Flow with Viscous Dissipation in a Horizontal Porous Layer with an Open Boundary Having a Prescribed Temperature Gradient

2010

Published version of an article in the journal: Transport in Porous Media. The original publication is available at www.springerlink.com, http://dx.doi.org/10.1007/s11242-010-9588-6 A buoyancy-induced stationary flow with viscous dissipation in a horizontal porous layer is investigated. The lower boundary surface is impermeable and subject to a uniform heat flux. The upper open boundary has a prescribed, linearly varying, temperature distribution. The buoyancy-induced basic velocity profile is parallel and non-uniform. The linear stability of this basic solution is analysed numerically by solving the disturbance equations for oblique rolls arbitrarily oriented with respect to the basic velo…

VDP::Mathematics and natural science: 400::Mathematics: 410::Applied mathematics: 413PhysicsBuoyancyOPEN BOUNDARYGeneral Chemical EngineeringBoundary (topology)MechanicsRayleigh numberPOROUS LAYERengineering.materialCritical valueVISCOUS DISSIPATIONInstabilityCatalysisTHERMAL INSTABILITYPhysics::Fluid DynamicsTemperature gradientClassical mechanicsHeat fluxPRESCRIBED TEMPERATURE GRADIENTengineeringVDP::Technology: 500::Materials science and engineering: 520Linear stabilityTransport in Porous Media
researchProduct

Image Processing and Measurement of the Bubble Properties in a Bubbling Fluidized Bed Reactor

2022

The efficiency of a fluidized bed reactor depends on the bed fluid dynamic behavior, which is significantly influenced by the bubble properties. This work investigates the bubble properties of a bubbling fluidized bed reactor using computational particle fluid dynamic (CPFD) simulations and electrical capacitance tomography (ECT) measurements. The two-dimensional images (along the reactor horizontal and vertical planes) of the fluidized bed are obtained from the CPFD simulations at different operating conditions. The CPFD model was developed in a commercial CPFD software Barracuda Virtual Reactor 20.0.1. The bubble behavior and bed fluidization behavior are characterized form the bubble pro…

VDP::Teknologi: 500Control and OptimizationRenewable Energy Sustainability and the EnvironmentEnergy Engineering and Power TechnologyBuilding and ConstructionElectrical and Electronic Engineeringfluidized bed; bubble diameter; bubble rise velocity; bubble frequency; computational particle fluid dynamic; image processingEngineering (miscellaneous)Energy (miscellaneous)
researchProduct

Suitability of the VOF Approach to Model an Electrogenerated Bubble with Marangoni Micro-Convection Flow

2022

When a hydrogen or oxygen bubble is created on the surface of an electrode, a micro-convective vortex flow due to the Marangoni effect is generated at the bottom of the bubble in contact with the electrode. In order to study such a phenomenon numerically, it is necessary to be able to simulate the surface tension variations along with a liquid-gas interface, to integrate the mass transfer across the interface from the dissolved species present in the electrolyte to the gas phase, and to take into account the moving contact line. Eulerian methods seem to have the potential to solve this modeling. However, the use of the continuous surface force (CSF) model in the volume of fluid (VOF) framew…

VOFheight functionFluid Flow and Transfer Processeselectrogenerated bubbleSettore ING-IND/23 - Chimica Fisica ApplicataMarangoni convectionMechanical Engineeringspurious currentCFDCondensed Matter Physicselectrogenerated bubble; spurious currents; VOF; height function; CFD; Marangoni convectionFluids
researchProduct

Thermal conductivity measurement of insulating innovative building materials by hot plate and heat flow meter devices: A Round Robin Test

2019

Abstract The characterization of thermal insulation properties of construction materials represents a fundamental step on the building insulation assessment. In recent years innovative materials have been introduced in the market to fulfill the continuously growing requirements of energy saving and sustainability, and their performance is not so reliable and mature as it happens for traditional insulators. The work presents a Round Robin Test realised among six European laboratories hosting hot plates devices to measure the thermal conductivity of four different materials: aerogel, vacuum insulation panels, polystyrene and birch wood fibre insulation boards. After the definition of the comm…

Vacuum insulated panelAerogel; Birch wood boards; Hot plate; Polystyrene; Thermal conductivity; Vacuum insulation panelsMaterials scienceBuilding insulation020209 energyAerogel; Birch wood boards; Hot plate; Polystyrene; Thermal conductivity; Vacuum insulation panels; Condensed Matter Physics; Engineering (all)Mechanical engineeringAerogelBirch wood boardsHot platePolystyreneThermal conductivityVacuum insulation panelsCondensed Matter Physic02 engineering and technology01 natural sciences7. Clean energy010305 fluids & plasmasThermal conductivity measurementVacuum insulation panelsVacuum insulation panelEngineering (all)Thermal conductivityThermal insulationHot plate Thermal conductivity Aerogel Vacuum insulation panels Polystyrene Birch wood boards0103 physical sciences11. Sustainability0202 electrical engineering electronic engineering information engineeringMetrePolystyreneAerogelArquitecturabusiness.industryHot plateGeneral EngineeringFísicaBirch wood boardsCondensed Matter PhysicsCharacterization (materials science)Thermal conductivityBirch wood boardRound robin testbusiness
researchProduct