turbine agitator with six flat blades and a disk has a diameter of 0.303m. It is used in a ank with a diameter of 0.51m and height of 0.71m. The width is 0.0315m. Four baffles are used with a width of 0.041m. The turbine operates at 300rmp in a liquid having a density of 28kg/m³ and a visocisty of 0.04Pas a) Calcualte the kW of the turbine and kW/m³ b) Scale up this system to a vessel whose volume is four times as large, for the case of equal mass transfer rate
turbine agitator with six flat blades and a disk has a diameter of 0.303m. It is used in a ank with a diameter of 0.51m and height of 0.71m. The width is 0.0315m. Four baffles are used with a width of 0.041m. The turbine operates at 300rmp in a liquid having a density of 28kg/m³ and a visocisty of 0.04Pas a) Calcualte the kW of the turbine and kW/m³ b) Scale up this system to a vessel whose volume is four times as large, for the case of equal mass transfer rate
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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A7.
![A turbine agitator with six flat blades and a disk has a diameter of 0.303m. It is used in a
tank with a diameter of 0.51m and height of 0.71m. The width is 0.0315m. Four baffles are
used with a width of 0.041m. The turbine operates at 300rmp in a liquid having a density of
928kg/m³ and a visocisty of 0.04Pas
a) Calcualte the kW of the turbine and kW/m³
b) Scale up this system to a vessel whose volume is four times as large, for the case of
equal mass transfer rate](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Faf24e36d-0f02-49db-b940-8c748bdb888a%2F469f87fb-bbbf-4858-bf01-4dae11cda018%2Fxnln7xd_processed.png&w=3840&q=75)
Transcribed Image Text:A turbine agitator with six flat blades and a disk has a diameter of 0.303m. It is used in a
tank with a diameter of 0.51m and height of 0.71m. The width is 0.0315m. Four baffles are
used with a width of 0.041m. The turbine operates at 300rmp in a liquid having a density of
928kg/m³ and a visocisty of 0.04Pas
a) Calcualte the kW of the turbine and kW/m³
b) Scale up this system to a vessel whose volume is four times as large, for the case of
equal mass transfer rate
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