Problem 3 A coal power plant emits SO₂ at a rate of 1.9 kg/s into a 2.8 m/s wind. The height of the stack is 100 m and the diameter is 1.6 m with an exit velocity of 9.5 m/s and a temperature of 320 °C. The atmospheric temperature and pressure are 20 °C and 95 kPa, respectively. If the plume's standard deviations at x = 850 m are σy= 180 m and σz= 60 m, use M.S. Excel to plot the concentration of SO2 vs. distance from the centerline (y) at x = 850 m and z= 100 m. Use (-1000, 1000) range for y with 50 m increments and show your work (calculations).

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Problem 3
A coal power plant emits SO₂ at a rate of 1.9 kg/s into a 2.8 m/s wind. The height of the stack is
100 m and the diameter is 1.6 m with an exit velocity of 9.5 m/s and a temperature of 320 °C. The
atmospheric temperature and pressure are 20 °C and 95 kPa, respectively. If the plume's standard
deviations at x = 850 m are oy= 180 m and oz= 60 m, use M.S. Excel to plot the concentration of
SO2 vs. distance from the centerline (y) at x = 850 m and z = 100 m. Use (-1000, 1000) range for
y with 50 m increments and show your work (calculations).
Transcribed Image Text:Problem 3 A coal power plant emits SO₂ at a rate of 1.9 kg/s into a 2.8 m/s wind. The height of the stack is 100 m and the diameter is 1.6 m with an exit velocity of 9.5 m/s and a temperature of 320 °C. The atmospheric temperature and pressure are 20 °C and 95 kPa, respectively. If the plume's standard deviations at x = 850 m are oy= 180 m and oz= 60 m, use M.S. Excel to plot the concentration of SO2 vs. distance from the centerline (y) at x = 850 m and z = 100 m. Use (-1000, 1000) range for y with 50 m increments and show your work (calculations).
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