Publication | Open Access
The temperature and size distribution of large water clusters from a non-equilibrium model
16
Citations
33
References
2015
Year
EngineeringLiquid-liquid FlowFluid MechanicsWater ClustersGas-liquid FlowEarth ScienceLarge Water ClustersRarefied FlowGas DynamicNumerical SimulationTransport PhenomenaThermodynamicsMaterials ScienceCluster SciencePhysicsSize DistributionMultiphase FlowNon-equilibrium ProcessNatural SciencesApplied PhysicsHybrid Lagrangian-eulerian ApproachEquilibrium ThermodynamicsNon-equilibrium ModelNeon-water Vapor MixturesCritical PhenomenonSurface WaterMultiscale Modeling
A hybrid Lagrangian-Eulerian approach is used to examine the properties of water clusters formed in neon-water vapor mixtures expanding through microscale conical nozzles. Experimental size distributions were reliably determined by the sodium doping technique in a molecular beam machine. The comparison of computed size distributions and experimental data shows satisfactory agreement, especially for (H2O)n clusters with n larger than 50. Thus validated simulations provide size selected cluster temperature profiles in and outside the nozzle. This information is used for an in-depth analysis of the crystallization and water cluster aggregation dynamics of recently reported supersonic jet expansion experiments.
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