4.2 For the following particle size distribution, calculate the efficiency of a Lapple conventional cyclone with a body diameter of 0.50 meters. The particulate density p, = 1200 kg/m*, the gas density Pg = 0.90 kg/mº, the gas viscosíty u = 0.06 kg/m-tr, and the inlet gas velocity V = 25 m/s. Size Range, pum Mass Percent in Size Range 0-4 4-10 3.0 10.0 10-20 20-40 40-80 30.0 40.0 15.0 >80 2,0

Structural Analysis
6th Edition
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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Calculate the pressure drop (kPa) for the cyclone of Problem 4.2 assuming К - 12. Also, estimate the pressure drop for placing two such cyclones in series.

4.2 For the following particle size distribution, calculate the efficiency
of a Lapple conventional cyclone with a body diameter of 0.50
meters. The particulate density p, = 1200 kg/m*, the gas density
Pg = 0.90 kg/mº, the gas viscosíty u = 0.06 kg/m-tr, and the inlet
gas velocity V = 25 m/s.
Size Range, pum
Mass Percent in Size Range
0-4
4-10
3.0
10.0
10-20
20-40
40-80
30.0
40.0
15.0
>80
2,0
Transcribed Image Text:4.2 For the following particle size distribution, calculate the efficiency of a Lapple conventional cyclone with a body diameter of 0.50 meters. The particulate density p, = 1200 kg/m*, the gas density Pg = 0.90 kg/mº, the gas viscosíty u = 0.06 kg/m-tr, and the inlet gas velocity V = 25 m/s. Size Range, pum Mass Percent in Size Range 0-4 4-10 3.0 10.0 10-20 20-40 40-80 30.0 40.0 15.0 >80 2,0
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