Publication | Closed Access
Scaling of heat transfer and temperature distribution in granular flows in rotating drums
27
Citations
31
References
2016
Year
EngineeringGranular FlowsFluid MechanicsMechanical EngineeringGranular MediumConvective Heat TransferHeat Transfer ProcessNumerical SimulationTransport PhenomenaThermodynamicsThermal ModelingParticle-laden FlowHeat TransferMultiphase FlowTarget TemperatureHeat ExchangerHeat Transfer EnhancementCivil EngineeringAverage TemperatureTemperature DistributionGranular MaterialsThermal EngineeringMultiscale Modeling
Accurate prediction of the time required to heat up granular materials to a target temperature is crucial for several processes. However, we do not have quantitative models to predict the average temperature or the temperature distribution of the particles. Here, we computationally investigate the scaling of heat transfer in granular flows in rotating drums. Based on our simulations, which include a wide range of system and material properties, we identify the appropriate characteristic time that is used to derive equations that predict the particles' average temperature and the particles' temperature distribution.
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