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Honeycomb ceramic regenerator of radiative heat transfer
Ceramic honeycomb body is made through a very dense small holes, when the heating gas through the pores along the honeycomb body, wherein each of the hole can be seen as non-isothermal cavity. Based on the previous model, the circular tunnel radiation honeycomb for the study, established in consideration of radiation energy and convection heat transfer compound when heat equations using numerical software FlexPDE influences regenerative ceramic oxide bed temperature distribution and radiation oxidation bed temperature. the results showed that, oxidation bed trapezoidal axial temperature distribution; radiation having a smooth bed oxidation temperature gradient effects resulting simulation and experimental results are in good agreement.
 
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