2. (7-10 from Davis and Cornwell, 2008). Determine the removal efficiency of a "standard" cyclone that is being designed to remove 15 um diameter particles with a density of 800 kg/m3 using the following design specifications: o Cyclone barrel diameter = 0.50 m o Gas flow rate = 4.0 m3/sec o Gas temperature = 25°C % Removal:
2. (7-10 from Davis and Cornwell, 2008). Determine the removal efficiency of a "standard" cyclone that is being designed to remove 15 um diameter particles with a density of 800 kg/m3 using the following design specifications: o Cyclone barrel diameter = 0.50 m o Gas flow rate = 4.0 m3/sec o Gas temperature = 25°C % Removal:
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
![2. (7-10 from Davis and Cornwell, 2008). Determine the removal efficiency of a "standard" cyclone that is being designed to remove 15 um diameter
particles with a density of 800 kg/m3 using the following design specifications:
o Cyclone barrel diameter = 0.50 m
o Gas flow rate = 4.0 m3/sec
o Gas temperature = 25°C
% Removal:
%](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fadd145de-fe31-4420-b5e9-42ebb1d04558%2F77928671-e344-4274-8445-231ef5d90779%2F1jmahas_processed.jpeg&w=3840&q=75)
Transcribed Image Text:2. (7-10 from Davis and Cornwell, 2008). Determine the removal efficiency of a "standard" cyclone that is being designed to remove 15 um diameter
particles with a density of 800 kg/m3 using the following design specifications:
o Cyclone barrel diameter = 0.50 m
o Gas flow rate = 4.0 m3/sec
o Gas temperature = 25°C
% Removal:
%
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