Calculate the diameter of the exhaust stack in meters for a driving pressure of 0.20 kPa. Note: The actual velocity is 40% of the theoretical velocity
Calculate the diameter of the exhaust stack in meters for a driving pressure of 0.20 kPa. Note: The actual velocity is 40% of the theoretical velocity
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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Question
A power plant is situated at an altitude having an ambient air at 96.53 kPa and 23.88°C. Flue gases at a rate of 5 kg/s enter the stack at 200°C and leaves at 160°C. Calculate the diameter of the exhaust stack in meters for a driving pressure of 0.20 kPa. Note: The actual velocity is 40% of the theoretical velocity.

Transcribed Image Text:A power plant is situated at an altitude having an ambient air at 96.53 kPa and
23.88°C. Flue gases at a rate of 5 kg/s enter the stack at 200°C and leaves at
160°C. Calculate the diameter of the exhaust stack in meters for a driving
pressure of 0.20 kPa. Note: The actual velocity is 40% of the theoretical velocity.
(17)
1.15
0.85
1.05
1.25
0.95
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