By Robert W. Lyczkowski, Walter F. Podolski, Jacques X. Bouillard, Stephen M. Folga
Thermo-Hydrodynamic layout of Fluidized mattress Combustors: Estimating steel Wastage is a distinct quantity that unearths that the main delicate parameters affecting steel wastage are superficial fluidizing speed, particle diameter, and particle sphericity. Gross consistencies among disparate info assets utilizing diversified suggestions have been stumbled on whilst the erosion charges are in comparison at the similar foundation utilizing the idea that of renormalization. The simplified mechanistic types and correlations, while tested, can be utilized to renormalize any experimental information to allow them to be in comparison on a constant foundation utilizing a grasp equation.
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Additional resources for Thermo-Hydrodynamic Design of Fluidized Bed Combustors: Estimating Metal Wastage
Eq. 22 to renormalize the metal wastage rate upwards but only up to the point where the particle hardness equals the target hardness. Tables of tube and particle hardness are listed in Appendix B. 1 Discussion Zhu conducted nine tests in the lower part of a CFB at four different tube temperatures to test the effect of temperature on the erosion of different materials. Seven materials (brass, copper, Al2011, SS304, SS316, CS1020, and CS1050) were tested . The outside diameter of each tube was 32 mm.
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Thermo-Hydrodynamic Design of Fluidized Bed Combustors: Estimating Metal Wastage by Robert W. Lyczkowski, Walter F. Podolski, Jacques X. Bouillard, Stephen M. Folga