Search results for "Liquid Metal"

showing 10 items of 61 documents

Phase boundary dynamics of bubble flow in a thick liquid metal layer under an applied magnetic field

2020

Dynamic neutron radiography is used to observe the effect of a transverse magnetic field on argon bubbles rising through a thick layer of liquid gallium without interactions with the container walls.

Fluid Flow and Transfer ProcessesLiquid metalPhase boundaryMaterials scienceArgonCondensed matter physicsPhysics::Instrumentation and DetectorsNeutron imagingDynamics (mechanics)Computational Mechanicschemistry.chemical_elementMagnetic fieldPhysics::Fluid DynamicschemistryModeling and SimulationBubble flowNuclear ExperimentLayer (electronics)Physical Review Fluids
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Dynamic mode decomposition of magnetohydrodynamic bubble chain flow in a rectangular vessel

2021

We demonstrate the first application of dynamic mode decomposition (DMD) to bubble flow with resolved dynamic liquid/gas boundaries. Specifically, we have applied DMD to the output of numerical simulations for a system where chains of bubbles ascend through a rectangular liquid metal vessel. Flow patterns have been investigated in the vessel and bubble reference frames. We show how gas flow rate and applied magnetic affect bubble wake flow and larger-scale flow structures within the liquid metal vessel by examining the velocity field mode statistics over trajectory time and total flow time as well as the computed mode velocity fields. The results of this proof-of-concept study indicate that…

Fluid Flow and Transfer ProcessesPhysicsLiquid metalMechanical EngineeringBubbleComputational MechanicsFluid Dynamics (physics.flu-dyn)FOS: Physical sciencesMechanicsPhysics - Fluid DynamicsWakeCondensed Matter PhysicsVolumetric flow ratePhysics::Fluid DynamicsFlow (mathematics)Mechanics of MaterialsDynamic mode decompositionVector fieldMagnetohydrodynamic drive
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Permanent magnet bottom-stirred swirling flow in coaxial shallow cylindrical containers

2021

Here, an original rotating permanent magnet (RPM) system placed coaxially with the liquid metal container is studied as an effective means of generating flow in shallow cylinders for potential application in aluminum metallurgy (e.g., for ladle stirring and metal dosing). The studied RPM system generates volume force with strong axial variation and force maximum near the radial midpoint. The numerical and experimental data show that, in the shallow cylinder case, the azimuthal velocity follows the force radial distribution. The resulting velocity maximum occurs near the radial midpoint, unlike in the traditional rotating magnetic field (RMF) stirrer systems, where the velocity maximum occur…

Fluid Flow and Transfer ProcessesPhysicsRotating magnetic fieldAngular momentumLiquid metalMechanical EngineeringComputational MechanicsRadiusMechanicsCondensed Matter Physics01 natural sciences010305 fluids & plasmasPhysics::Fluid DynamicsBoundary layerMechanics of MaterialsMagnet0103 physical sciencesCylinderCoaxial010306 general physicsPhysics of Fluids
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Parametric thermal analysis for the optimization of Double Walled Tubes layout in the Water Cooled Lithium Lead inboard blanket of DEMO fusion reactor

2019

Abstract Within the roadmap that will lead to the nuclear fusion exploitation for electric energy generation, the construction of a DEMOnstration (DEMO) reactor is, probably, the most important milestone to be reached since it will demonstrate the technological feasibility and economic competitiveness of an industrial-scale nuclear fusion reactor. In order to reach this goal, several European universities and research centres have joined their efforts in the EUROfusion action, funded by HORIZON 2020 UE programme. Within the framework of EUROfusion research activities, ENEA and University of Palermo are involved in the design of the Water-Cooled Lithium Lead Breeding Blanket (WCLL BB), that …

HistoryNuclear Fusion Blanket Liquid Metal Thermal AnalysisDouble walledMaterials scienceNuclear engineeringWater cooledchemistry.chemical_element02 engineering and technologyFusion powerBlanket021001 nanoscience & nanotechnology01 natural sciences7. Clean energy010305 fluids & plasmasComputer Science ApplicationsEducationchemistry0103 physical sciencesLithium0210 nano-technologyLead (electronics)Thermal analysisSettore ING-IND/19 - Impianti NucleariParametric statisticsJournal of Physics: Conference Series
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First Results of the Testing of the Liquid Gallium Jet Limiter Concept for ISTTOK

2006

The use of liquid metals as plasma facing components in tokamaks has recently experienced a renewed interest stimulated by their advantages to the development of a fusion reactor. Liquid metals have been proposed to solve problems related to the erosion and neutronic activation of solid walls submitted to high power loads allowing an efficient heat exhaustion from fusion devices. Presently the most promising materials are Lithium and Gallium. ISTTOK, a small size tokamak, will be used to test the behavior of a liquid Gallium jet in the vacuum chamber and its influence on the plasma. This paper presents a description of the conceived setup as well as experimental results. The liquid Gallium …

Jet (fluid)Liquid metalMaterials scienceNuclear engineeringHydrostatic pressureAnalytical chemistrychemistry.chemical_elementFusion powerPhysics::Fluid DynamicschemistryPhysics::Plasma PhysicsLimiterVacuum chamberGalliumISTTOKAIP Conference Proceedings
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Interaction of a liquid gallium jet with the tokamak ISTTOK edge plasma

2008

Abstract The interaction of a liquid gallium jet with plasma has been investigated in the tokamak ISTTOK. This paper presents a description of the conceived experimental setup, a detailed characterization of the produced jets and the first experimental results related to the gallium–plasma interaction. A stable jet has been obtained, which was not noticeably affected by magnetic field transients. ISTTOK has been successfully operated with the gallium jet without degradation of the discharge or a significant plasma contamination by liquid metal. This observation is supported by spectroscopic measurements showing that gallium radiation is limited to the region around the jet. Furthermore, the…

Jet (fluid)Liquid metalTokamakMaterials scienceAstrophysics::High Energy Astrophysical PhenomenaMechanical Engineeringchemistry.chemical_elementPlasmaFusion powerlaw.inventionPhysics::Fluid DynamicsNuclear magnetic resonanceNuclear Energy and EngineeringchemistryPhysics::Plasma PhysicslawLimiterHigh Energy Physics::ExperimentGeneral Materials ScienceGalliumAtomic physicsISTTOKCivil and Structural EngineeringFusion Engineering and Design
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Electronic-structure-induced deformations of liquid metal clusters

1995

Ab initio molecular dynamics is used to study deformations of sodium clusters at temperatures $500\cdots 1100$ K. Open-shell Na$_{14}$ cluster has two shape isomers, prolate and oblate, in the liquid state. The deformation is stabilized by opening a gap at the Fermi level. The closed-shell Na$_8$ remains magic also at the liquid state.

Liquid metalCondensed Matter - Materials ScienceMaterials scienceFermi levelMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesElectronic structureProlate spheroidMolecular physicsAb initio molecular dynamicssymbols.namesakeLiquid stateCluster (physics)symbolsPhysics::Atomic and Molecular ClustersDeformation (engineering)
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Interaction of a Liquid Gallium Jet with ISTTOK Edge Plasmas

2008

The use of liquid metals as plasma facing components in tokamaks has recently experienced a renewed interest stimulated by their advantages in the development of a fusion reactor. Liquid metals have been proposed to solve problems related to the erosion and neutronic activation of solid walls submitted to high power loads allowing an efficient heat exhaust from fusion devices. Presently the most promising candidate materials are lithium and gallium. However, lithium has a short liquid state range when compared, for example, with gallium that has essentially better thermal properties and lower vapor pressure. To explore further these properties, ISTTOK tokamak is being used to test the inter…

Liquid metalJet (fluid)TokamakChemistryNuclear engineeringHydrostatic pressurechemistry.chemical_elementPlasmaFusion powerlaw.inventionlawGalliumAtomic physicsISTTOKAIP Conference Proceedings
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A comparison between the chemical behaviour of lead-gold and lead-bismuth eutectics towards 316L stainless steel

2013

Radiochimica acta, 101 (10)

Liquid metalLBEScanning electron microscopeIsothermal02 engineering and technology01 natural sciencesIsothermal process010305 fluids & plasmasCorrosion0103 physical sciences540 ChemistrySpallationPhysical and Theoretical ChemistryEutectic systemChemistryChromium AlloysLGEMetallurgySpallation targetAtmospheric temperature range021001 nanoscience & nanotechnologyCorrosion; LGE; LBE; Isothermal; SS 316L; Liquid metal; Spallation targetLiquid metalCorrosion570 Life sciences; biology0210 nano-technologySS 316L
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Gravitational flow of a thin film of liquid metal in a strong magnetic field

2014

Abstract The influence of a poloidal magnetic field of the spherical Tokamak on super thin (h ≈ 0.1 mm) film flow of liquid metal driven by gravity over the surface of the cooled divertor plate is addressed. The experimental setup developed at the Institute of Physics, University of Latvia (IPUL) is described, which makes it possible to drive and visualize such liquid metal flows in the solenoid of the superconducting magnet “Magdalena”. As applied to the above setup, the magnetic field effect on the operation of the capillary system of liquid metal flow distribution (CSFD) is evaluated by using molten metal (lithium or eutectic InGaSn alloy) with a very small linear flowrate q ≤ 1 mm2/s, s…

Liquid metalMaterials scienceCapillary actionMechanical EngineeringSolenoidSuperconducting magnetMechanicsSpherical tokamakVolumetric flow rateMagnetic fieldPhysics::Fluid DynamicsNuclear magnetic resonanceNuclear Energy and EngineeringGeneral Materials ScienceThin filmCivil and Structural EngineeringFusion Engineering and Design
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