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Of the dimensionless maximum solid temperature, average solid temperature and average inner boundary temperature, the first two are much sensitive to solid-to-fluid thermal conductivity ratio.
The solid temperature at the front has been smoothed out using an internal layer asymptotic approximation.
An interesting feature of this graph is the fact that the solid temperature is greater than the phase change temperature.
The results demonstrate that decreasing the height of flow channels can lower the average solid temperature and improve cell efficiency.
The gas flow temperature increases monotonically for all the cases, and is mainly determined by the solid temperature.
The simulation results of solid temperature, gas species and process rate in the bed are accordant with experimental data.
Similar(33)
Infrared thermographic techniques have been used for the first time to determine real-time gas and solid temperatures, as well as gas-solid temperature gradients in microwave heated structured reactors.
Simulations comparing differing model assumptions show that there are slight differences between results when fluid and solid temperatures are taken to be identical and results when a difference between fluid and solid temperatures is assumed.
Process dynamics are analysed to demonstrate how solid temperatures along the axes of the reactor reflect the endothermic/exothermic interplay of reactions during a process upset.
The method has been used to obtain gas and solid temperatures during the ethylene epoxidation reaction carried out on a silver-copper oxide catalyst.
The in-situ composite matrix and the β foils are composited at the semi-solid temperature using the modified melt infiltration method.
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