A stack emitting 66 g/s of NO has an effective stack height of 80 m. The windspeed is 2.5 m/s at 10 m, and it is a clear summer day with a few broken clouds. Assuming rough terrain, estimate the ground-level NO concentration: a. directly downwind at a distance of 3.0 km. b. at a point located 3.0 km downwind and 0.2 km off the downwind axis.
A stack emitting 66 g/s of NO has an effective stack height of 80 m. The windspeed is 2.5 m/s at 10 m, and it is a clear summer day with a few broken clouds. Assuming rough terrain, estimate the ground-level NO concentration: a. directly downwind at a distance of 3.0 km. b. at a point located 3.0 km downwind and 0.2 km off the downwind axis.
Chapter2: Loads On Structures
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![6. Problem 7.36 (modified), Masters and Ela, Introduction to Environmental Engineering and
Science, 3rd Ed.:
A stack emitting 66 g/s of NO has an effective stack height of 80 m. The windspeed is
2.5 m/s at 10 m, and it is a clear summer day with a few broken clouds. Assuming rough
terrain, estimate the ground-level NO concentration:
a. directly downwind at a distance of 3.0 km.
b. at a point located 3.0 km downwind and 0.2 km off the downwind axis.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3a04aaaa-29fe-431c-8bc7-f4bc9c0d9156%2F40e4d3d2-c37b-4d09-a41c-30e53651dcc3%2Fvl1e2p42_processed.png&w=3840&q=75)
Transcribed Image Text:6. Problem 7.36 (modified), Masters and Ela, Introduction to Environmental Engineering and
Science, 3rd Ed.:
A stack emitting 66 g/s of NO has an effective stack height of 80 m. The windspeed is
2.5 m/s at 10 m, and it is a clear summer day with a few broken clouds. Assuming rough
terrain, estimate the ground-level NO concentration:
a. directly downwind at a distance of 3.0 km.
b. at a point located 3.0 km downwind and 0.2 km off the downwind axis.
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