Search results for " Kinetic energy"

showing 10 items of 46 documents

Pressure induced insulator/half-metal/metal transition in a strongly correlatedp-electron system

2012

Mixed-valent Rb${}_{4}$O${}_{6}$ provides an exceptional prototype material for studying the interplay between local correlations (Hubbard $U$) and electron kinetic energy ($W$) in the open $sp$-electron shell. Based on a first-principles calculation we show that depending on $U/W$ ratio, when tuned by external pressure, Rb${}_{4}$O${}_{6}$ exhibits a surprising sequence of phase transitions between strongly correlated antiferromagnetic insulator, ferromagnetic insulator ($U/W\phantom{\rule{-0.16em}{0ex}}\ensuremath{\gg}\phantom{\rule{-0.16em}{0ex}}1$), moderately correlated ferromagnetic half-metal ($U/W\phantom{\rule{-0.16em}{0ex}}\ensuremath{\sim}\phantom{\rule{-0.16em}{0ex}}1$), and fin…

PhysicsPhase transitionCondensed matter physicsCondensed Matter PhysicsElectron systemElectronic Optical and Magnetic MaterialsExternal pressureMetalFerromagnetismvisual_artvisual_art.visual_art_mediumAntiferromagnetismHalf-metalElectron kinetic energyPhysical Review B
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Turbulent mixing and dispersion mechanisms over flexible and dense vegetation

2019

The present study investigates flow turbulence and dispersion processes in the presence of flexible and dense vegetation on the bed. The turbulent dispersion coefficients and the terms of the turbulent kinetic energy equation are determined by using data collected in a straight laboratory channel with living vegetation on the bed. Results show that the turbulent integral lengths assume an order of magnitude comparable to the stems’ characteristic dimension independently by the direction and the turbulence assumes an isotropic behavior. The coefficients of dispersion have a trend similar to that of the turbulent lengths and assume low values in the longitudinal, transversal and vertical dire…

PhysicsTurbulent diffusion010504 meteorology & atmospheric sciencesTurbulenceIsotropyMechanicsDissipation010502 geochemistry & geophysics01 natural sciencesSettore ICAR/01 - IdraulicaNonlinear Sciences::Chaotic DynamicsPhysics::Fluid DynamicsGeophysicsFree surfacePhysics::Space PhysicsTurbulence kinetic energyWake turbulenceVegetated channels Flexible vegetation Turbulence DispersionOrder of magnitude0105 earth and related environmental sciencesActa Geophysica
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Reply to “Comment to ‘Dynamics of supercooled confined water measured by deep inelastic neutron scattering’ by Y. Finkelstein and R. Moreh”

2019

We reply to the comment [Front. Phys. 14(5), 53605 (2019)] by Y. Finkelstein and R. Moreh on our article Front. Phys. 13(1), 138205 (2018). We agree with some of their criticisms about our calculation of the temperature effect on the kinetic energy of hydrogen atoms of supercooled confined water; we also agree with their statement that, in view of the current sensitivity of the technique, possible effects of the liquid-liquid water transition are hardly detected with deep inelastic neutron scattering (DINS). However, we disagree with their use of the translational mass ratio of a single water molecule and, in general, with their underestimation of collective effects.

Physicsliquid-liquid transitionPhysics and Astronomy (miscellaneous)HydrogenSettore FIS/07Front (oceanography)chemistry.chemical_elementvibrational density of statesMass ratioproton kinetic energyKinetic energy01 natural sciencesInelastic neutron scatteringSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)chemistry0103 physical sciencesLibrationlibrationAtomic physics010306 general physicsSupercoolingConfined waterdeep inelastic neutron scatteringsupercooled water
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Explicit cloud-top entrainment parameterization in the global climate model ECHAM5-HAM

2011

New developments in the turbulence parameterization in the general circulation model ECHAM5-HAM are presented. They consist mainly of an explicit entrainment closure at the top of stratocumulus-capped boundary layers and the addition of an explicit contribution of the radiative divergence in the buoyancy production term. The impact of the new implementations on a single column model study and on the global scale is presented here. The parameterization has a "smoothing" effect: the abnormally high values of turbulence kinetic energy are reduced, both in the single column and in the Californian stratocumulus region. A sensitivity study with prescribed droplet concentration shows a reduction i…

Physics::Fluid DynamicsConvectionBuoyancyScale (ratio)Cloud topTurbulence kinetic energyRadiative transferengineeringEnvironmental scienceLiquid water pathEntrainment (meteorology)engineering.materialAtmospheric sciences
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Kinetic model for steady heat flow

1986

We construct a consistent solution of the Bhatnagar-Gross-Krook (BGK) model kinetic equation describing a system in a steady state with constant pressure and nonuniform temperature. The thermal profile is not linear and depends on the interaction potential. All the moments of the distribution function are given as polynomials in the local thermal gradient. In particular, the heat flux always obeys the (linear) Fourier law.

Physics::Fluid DynamicsPhysicsTemperature gradientSteady stateDistribution functionHeat fluxKinetic modelThermalTurbulence kinetic energyKinetic theory of gasesThermodynamicsMechanicsNonlinear Sciences::Cellular Automata and Lattice GasesPhysical Review A
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Modeling Rainfall Erosivity by Measured Drop-Size Distributions

2015

AbstractThe study of the detachment of soil particles due to rainfall erosivity requires knowledge of the energetic characteristics of the precipitation. In this paper, following a review of both the drop-size distribution (DSD) proposed by one researcher and the corresponding relationship for evaluating the kinetic power of rainfall, the reliability of that researcher’s DSD using the size distributions of raindrops detected by an optical disdrometer installed at Palermo (Sicily) is experimentally tested. Finally, an experimental verification of both the relationship proposed by two separate research teams for evaluating the specific and unit rainfall kinetic energy is carried out.

Rainfall kinetic energyDrop sizeDisdrometerMeteorologyEnvironmental ChemistryEnvironmental scienceSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliPrecipitationDrop size distribution Ulbrich‘s distribution Kinetic energy Rainfall erosivityKinetic energyGeneral Environmental ScienceWater Science and TechnologyCivil and Structural Engineering
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A Check of Water Drop Impact Effects on Surface Soil Saturated Hydraulic Conductivity

2020

The post-tillage dynamics of the surface soil saturated hydraulic conductivity, Ks, was studied at the Masse experimental station (central Italy, silty-clay-loam soil). A sequence of experiments was performed by rainfall simulation on two replicated micro-plots (width 1 m, length 0.92 m, slope 16%) established on bare soil. Each high-intensity rainfall simulation was preceded by a low-intensity wetting phase. The soil water content, w, was measured before wetting and both before and after simulation. Runoff was measured at 5 min intervals. The infiltration rate was calculated as the difference between rainfall intensity and runoff rate. Finally, Ks was assumed to be equal to the infiltratio…

Rainfall kinetic energyInfiltrationSoil scienceInfiltration (HVAC)Exponential functionTillageTillageHydraulic conductivitySoil waterRainfall simulationEnvironmental scienceWettingSurface runoffPorous mediumInfiltration; Rainfall kinetic energy; Rainfall simulation; Tillage
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Dispositivo e metodo di misura delle caratteristiche energetiche delle precipitazioni

2018

Settore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliRainfall Rainfall kinetic energy Raindrop diameter Raindrop sampling sensor
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STUDIO DI UN AMMORTIZZATORE ELETTROMAGNETICO A RECUPERO DI ENERGIA

2013

Questo lavoro ha come obiettivo principale lo studio teorico e con supporto di software F.E.M. di un dispositivo che consenta recupero energetico da una sospensione automobilistica. In sostituzione allo smorzatore viscoso, che dissipa l’energia cinetica del veicolo a seguito dell’attraversamento di strade sconnesse o ostacoli più marcati, si è usato uno smorzatore elettromagnetico che svolga le funzioni dello smorzatore viscoso consentendo un recupero di energia elettrica. Lo smorzatore elettromagnetico è di tipo a magneti permanenti e il suo funzionamento si basa sul fenomeno dell’induzione elettromagnetica. Il modello matematico descrive il funzionamento dello smorzatore, restituendo i va…

Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineMain objective of this work is the theoretical study and support of FEM software of a device that allows for energy recovery from an automotive suspension. In replacing the viscous damper which dissipates the kinetic energy of the vehicle due to rough roads or obstacles more marked an electromagnetic damper is used that performs the functions of the viscous damper allowing a recovery of electricity. The damper is of the electromagnetic type with permanent magnets and its operation is based on the phenomenon of electromagnetic induction. The mathematical model describes the operation of the damper restoring the values of the electrical and mechanical magnitudes as a function of the relative speed between the rod and the stator. Energy recovery has been estimated considering an electric minicar that transits on a bumpy road. The recovered power has a total value of about 250W.
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K-ϵ-L model in turbulent superfluid helium

2020

Abstract We generalize the K − ϵ model of classical turbulence to superfluid helium. In a classical viscous fluid the phenomenological eddy viscosity characterizing the effects of turbulence depends on the turbulent kinetic energy K and the dissipation function ϵ , which are mainly related to the fluctuations of the velocity field and of its gradient. In superfluid helium, instead, we consider the necessary coefficients for describing the effects of classical and quantum turbulence, involving fluctuations of the velocity, the heat flux, and the vortex line density of the quantized vortex lines. By splitting the several fields into a time-average part and a fluctuating part, some expressions…

Statistics and ProbabilityPhysicsTurbulenceQuantum turbulenceTurbulence modelingStatistical and Nonlinear PhysicsContext (language use)01 natural sciences010305 fluids & plasmasVortexPhysics::Fluid DynamicsQuantum electrodynamicsEnergy cascade0103 physical sciencesTurbulence kinetic energy010306 general physicsSuperfluid helium-4Physica A: Statistical Mechanics and its Applications
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