Search results for "Heat Transfer"

showing 10 items of 442 documents

Harmonic emission at microwave frequencies in Ba0.6K0.4BiO3 crystals

1998

Abstract Nonlinear microwave emission by Ba0.6K0.4BiO3 crystals is investigated. Second- and third-harmonic signals are studied as a function of the temperature and the applied magnetic field at different values of the input power level. The experimental data are discussed in the framework of models previously reported in the literature. We show that there are several mechanisms responsible for harmonic emission in Ba0.6K0.4BiO3 crystals: they play a different role depending on the temperature and the intensity of the applied field. We suggest that harmonic emission at temperatures far from Tc is due to nonlinear processes in weak links or flux motion, while nonlinearity near Tc is ascribab…

High-temperature superconductivityMaterials scienceField (physics)Energy Engineering and Power TechnologySecond-harmonic generationCondensed Matter PhysicsMolecular physicsElectronic Optical and Magnetic Materialslaw.inventionMagnetic fieldNonlinear systemNuclear magnetic resonancelawHarmonicElectrical and Electronic EngineeringMicrowaveIntensity (heat transfer)Physica C: Superconductivity
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Unsteadiness and transition to turbulence in woven spacer filled channels for Membrane Distillation

2017

To characterize the performance of Membrane Distillation (MD) modules, channels filled with woven spacers were investigated by Computational Fluid Dynamics (including Direct Numerical Simulations and the use of the SST k-ω turbulence model) and by parallel experiments with Thermochromic Liquid Crystals. The cases considered here regard mutually orthogonal filaments with a spacer pitch to channel height ratio P/H=2, two spacer orientations θ with respect to the main flow (0° and 45°), and bulk Reynolds numbers Re from ∼200 to ∼2000, an interval of great interest in practical MD applications. For both values of θ, CFD predicted steady-state flow for Re up to ∼300, and chaotic flow …

HistoryFlow (psychology)Thermodynamics02 engineering and technologyComputational fluid dynamicsEducationPhysics::Fluid Dynamicssymbols.namesake020401 chemical engineeringLiquid crystal0204 chemical engineeringbusiness.industryTurbulenceChemistryOscillationSpacer-filled channels CFD membrane distillation turbulence RANS DNSReynolds numberMechanics021001 nanoscience & nanotechnologyComputer Science ApplicationsHeat transfersymbols0210 nano-technologyReynolds-averaged Navier–Stokes equationsbusiness
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Influence of the boundary conditions on heat and mass transfer in spacer-filled channels

2017

The purpose of this study is to discuss some problems which arise in heat or mass transfer in complex channels, with special reference to the spacer-filled channels adopted in membrane processes. Among the issues addressed are the consistent definition of local and mean heat or mass transfer coefficients; the influence of the wall boundary conditions; the influence of one-side versus two-side heat/mass transfer. Most of the results discussed were obtained by finite volume CFD simulations concerning heat transfer in Membrane Distillation or mass transfer in Electrodialysis and Reverse Electrodialysis, but many of the conclusions apply also to different processes involving geometrically compl…

HistoryMaterials scienceConvective heat transferFilm temperature02 engineering and technologyMechanicsHeat transfer coefficientElectrodialysis021001 nanoscience & nanotechnologyChurchill–Bernstein equationComputer Science ApplicationsEducationPhysics and Astronomy (all)020401 chemical engineeringMass transferReversed electrodialysisHeat transfer0204 chemical engineering0210 nano-technology
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Experimental investigation of two-side heat transfer in spacer-filled channels

2020

Abstract In Membrane Distillation (MD), spacers support the membranes and promote mixing, thus reducing temperature polarization. Their efficient design requires a knowledge of the distribution of the local heat transfer coefficient h and of its dependence on Reynolds number, spacer geometry and flow-spacer relative orientation. In previous work, we applied Thermochromic Liquid Crystals (TLC) and digital image processing to the measurement of h distributions for different spacer configurations; data were used to validate CFD simulations and select turbulence models. For constructive reasons, the test section allowed only one-side heat transfer, while in most MD configurations (e.g. spiral-w…

HistorySettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciMaterials scienceMembrane Distillation Thermochromic liquid crystals (TLC) Spacer-filled channelsHeat transferComposite materialSettore ING-IND/19 - Impianti NucleariComputer Science ApplicationsEducation
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Experimental study of the combined RES-based generators and electric storage systems for public buildings

2019

Abstract In the present paper, a new approach to the management of energy resources in the Research and Technology Centre of Energy (CRTEn -Tunisia) is proposed and evaluated by the monitoring of a PV installation realized for the cooperation project DE.DU.ENER.T, using renewable energy and economic criteria. The aim of this project is to improve energy efficiency order to minimize the electricity cost consumed at the CRTEn laboratory. According to the bills of electricity received, we noticed that there is a high consumption of electrical current. So, we targeted to install a photovoltaic field of 12KWc to reduce these bills by using the sustainable, green and clean sources. A theoretical …

Hybrid Energ SystemPayback periodbusiness.industry020209 energyFossil fuelPhotovoltaic system02 engineering and technologyHeat TransferSizingAutomotive engineeringRenewable energyPhotovoltaic PanelSettore ING-IND/33 - Sistemi Elettrici Per L'Energia020401 chemical engineering0202 electrical engineering electronic engineering information engineeringEnvironmental scienceElectricityRenewable Energy0204 chemical engineeringbusinessEnergy (signal processing)SimulationEfficient energy use
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Shelter and remotely sensed night temperatures in orange groves

1991

In previous papers we have used a linear regression approach for determining nocturnal air temperature in orange groves from satellite thermal data. However, this procedure has a poor precision (≈ 2 °C) for applications such as frost forecasting. For this reason a theoretical method has been proposed, which is based on the following assumptions: (1) the air temperature (Ta) is the result of the convective heat exchange between ground and air, and between air and orange trees, and (2) the remotely-sensed temperature (T) can be expressed as a function of ground (Tg) and orange tree (Ts) temperatures. So the relationshipT = Ta + (ag − α) (Tg − Ts) has been derived, wherea = (1 +h2πR/h1L)−1 and…

HydrologyAtmospheric ScienceMaterials scienceConvective heat transferThermalEmissivityAnalytical chemistryHeat transfer coefficientOrange (colour)Temperature measurementFruit treeCitrus × sinensisTheoretical and Applied Climatology
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The influence of slope angle on sediment, water and seed losses on badland landscapes

1997

Abstract By means of simulated rainfall the influence of the slope angle on the soil, water and seed erosion has been studied on badland surfaces. Slope angle has a clear positive effect controlling soil erodibility and erosion rates, but it does not have any influence on the volume of runoff after 40 minutes of rain at an intensity of 55 mm h−1. In contrast, slope angle has a clear influence on runoff initiation, with cracks and crusts as the main factors controlling the time to ponding and time to runoff. Both ponding and runoff initiation start earlier on pediments than on slopes, where more cracks exist. Steady-state infiltration rates and seed losses have an inverse relationships with …

HydrologyHydrology (agriculture)Pediment (geology)ErosionSedimentSurface runoffIntensity (heat transfer)Vegetation and slope stabilityPondingGeologyEarth-Surface Processes
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The contrasted response of ash to wetting

2013

Abstract After a wildfire the soil is covered by ash. Ash properties depend on vegetation type, amount of fuel and fire intensity. The ash layer controls the post-fire soil hydrologic response, but little is known about the effect of ash thickness and ash type on infiltration, which is relevant for post-fire runoff and soil losses and for ecosystems rehabilitation and restoration. This paper analyses the role of i) ash type (black or white), ii) thickness (5, 15 and 30 mm-thick) and iii) temporal variation (0, 15 and 40 days) under three simulated rain events (55 mm for 1 h) on soil surface hydrology. The rainfall was simulated on 0.25 m2 plots, and time to ponding, runoff and runoff discha…

HydrologyHydrology (agriculture)Soil waterVegetation typeSoil ScienceSoil scienceEcosystemInfiltration (HVAC)Surface runoffIntensity (heat transfer)GeologyPondingGeoderma
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Bench-scale investigation of inclined dense jets

2005

In this work experimental data on the geometry of dense inclined jets issuing in a lab-scale glass rectangular tank are presented. The surrounding fluid was always tap water at room temperature while the dense jets were water solutions of NaCl. Four parameters were changed in the experiments, namely nozzle diameter and inclination, and jet density and flow rate. Jet trajectories were revealed by a colored tracer. Images of the jet were recorded by a digital camera and then further digitally processed, eventually resulting in a time-averaged tracer intensity field. All the jet geometrical parameters, once normalized, were found to be very well correlated to the densimetric Froude number. Mod…

HydrologyJet (fluid)Materials scienceField (physics)Astrophysics::High Energy Astrophysical PhenomenaMechanical EngineeringNozzlesubmerged jets jet diffusion negatively buoyant jetsMechanicsVolumetric flow ratePhysics::Fluid Dynamicssymbols.namesakeViscosityFroude numbersymbolsHigh Energy Physics::ExperimentDiffusion (business)Intensity (heat transfer)Water Science and TechnologyCivil and Structural Engineering
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Quick and Slow Components of the Hydrologic Response at the Hillslope Scale

2016

It is widely recognized that the Hortonian mechanism of runoff generation occurs in arid and semi-arid regions, generally characterized by high rainfall intensity on soils exhibiting low infiltrabilities. Differently, in steeply sloping forested watersheds in humid climates, by infiltrating through a highly permeable upper soil horizon, water moves beneath the soil surface determining a slow response. However, in most real cases, for example when in arid regions mountain forested areas take place, both (quick and slow) runoff generation processes coexist and together contribute to the hydrologic hillslope response. In this paper, based on analytical solutions of the hydrologic response, ins…

HydrologySubsurface stormflowGamma probability density function0208 environmental biotechnologyhillslope scale overland flow subsurface stormflow instantaneous response function gamma probability density function02 engineering and technologySoil surfaceAgricultural and Biological Sciences (miscellaneous)Arid020801 environmental engineeringInstantaneous response functionOverland flowSoil waterEnvironmental scienceSoil horizonSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliSlow responseHillslope scaleScale (map)Surface runoffIntensity (heat transfer)Water Science and TechnologyCivil and Structural Engineering
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