= 0.00986 in. H2O-min-ft/ 6.5 For Ke = 0.577 in. H90-min/ft and K, gr, design a reverse-air baghouse to filter 20,000 cfm of air with 2,5 gr/ft of flour, Assume a cleaning time of 3.0 minutes and a filtration time of 60 minutes. In your design, specify the number of compartments, the filtering velocity, the cloth area per com- partment, and the total number of bags required if each bag is 10 ft long and 1 ft in diameter. Also, specify the maximum pressure drop that will be experienced đuring the run.

Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter2: Matter And Energy
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Problem 15RQ: Why is information regarding the specific volume of gases important to the designer of...
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Calculate the numerical values of Ke and Ks in Problem 6.5 in SI units.

= 0.00986 in. H2O-min-ft/
6.5 For Ke = 0.577 in. H90-min/ft and K,
gr, design a reverse-air baghouse to filter 20,000 cfm of air with
2,5 gr/ft of flour, Assume a cleaning time of 3.0 minutes and a
filtration time of 60 minutes. In your design, specify the number
of compartments, the filtering velocity, the cloth area per com-
partment, and the total number of bags required if each bag is 10
ft long and 1 ft in diameter. Also, specify the maximum pressure
drop that will be experienced đuring the run.
Transcribed Image Text:= 0.00986 in. H2O-min-ft/ 6.5 For Ke = 0.577 in. H90-min/ft and K, gr, design a reverse-air baghouse to filter 20,000 cfm of air with 2,5 gr/ft of flour, Assume a cleaning time of 3.0 minutes and a filtration time of 60 minutes. In your design, specify the number of compartments, the filtering velocity, the cloth area per com- partment, and the total number of bags required if each bag is 10 ft long and 1 ft in diameter. Also, specify the maximum pressure drop that will be experienced đuring the run.
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