CONVEYING VELOCITIES 100 4000 SOC 80 14 N 111901JA 2003 : : 18 Th 7 in 54500360 CONY IYWO 4000w 50 3 3500 CONY TIMIOCITY

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answerhappygod
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CONVEYING VELOCITIES 100 4000 SOC 80 14 N 111901JA 2003 : : 18 Th 7 in 54500360 CONY IYWO 4000w 50 3 3500 CONY TIMIOCITY

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Conveying Velocities 100 4000 Soc 80 14 N 111901ja 2003 18 Th 7 In 54500360 Cony Iywo 4000w 50 3 3500 Cony Timiocity 1
Conveying Velocities 100 4000 Soc 80 14 N 111901ja 2003 18 Th 7 In 54500360 Cony Iywo 4000w 50 3 3500 Cony Timiocity 1 (411.15 KiB) Viewed 71 times
Conveying Velocities 100 4000 Soc 80 14 N 111901ja 2003 18 Th 7 In 54500360 Cony Iywo 4000w 50 3 3500 Cony Timiocity 2
Conveying Velocities 100 4000 Soc 80 14 N 111901ja 2003 18 Th 7 In 54500360 Cony Iywo 4000w 50 3 3500 Cony Timiocity 2 (455.64 KiB) Viewed 71 times
Can you please tell how we got (pumping speed =757 m3/h) from the graph.
please provide a good explainations, calculations and show how we got this number 757 from the attached graph.
thank you
CONVEYING VELOCITIES 100 4000 SOC 80 14 N 111901JA 2003 : : 18 Th 7 in 54500360 CONY IYWO 4000w 50 3 3500 CONY TIMIOCITY MRM cu ILAI / L. MAIL. 40 1000 30 45 2 se 10 WULK WEIGNT OR MATERIALS IN UCU FT. AVERAGE VELOCITY & AIR VOLUMES FOR CONVEYING MATERIALS
Design Criteria We have the char of density 1.59 g/cmº (carbon), so the vacuum air velocity must be high enough to carry a particle the size of char. We can determined this with pipe diameter / area which is (m/m). From the Fig1, we can also determine the requirement speed for the vacuum system then we can determine the selection for the vacuum pump. From the conveying velocity graph Fig1b, the phase should be around 20 m/s or more for velocity. Pipe ID (m) 0.1 Cross Section (m2) 0.00785 Pumping Speed (m3/h) 757 Velocity (m/s) Velocity (fpm) 5272
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