The layout of the small foul sewer system is shown in Figure Q3 (a) and relevant data is available in Table Q 3 (a). Assume infiltration as 3% of the dry weather flow and water consumption rate as 270 liters/person/day. Determine the pipe size for each branch of the sewer network.
The layout of the small foul sewer system is shown in Figure Q3 (a) and relevant data is available in Table Q 3 (a). Assume infiltration as 3% of the dry weather flow and water consumption rate as 270 liters/person/day. Determine the pipe size for each branch of the sewer network.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![The layout of the small foul sewer system is shown in Figure Q3 (a)
and relevant data is available in Table Q 3 (a). Assume infiltration as
3% of the dry weather flow and water consumption rate as 270
liters/person/day. Determine the pipe size for each branch of the sewer
network.
A
Figure Q3 (a). Layout of foul sewer system
Table Q 3 (a)- Sewer design data
Sewer
Population
Gradient 1:
Industrial
discharge
(m/day)
A
500
60
340
В
350
55
450
250
55
350](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdf87c36d-8de9-4b24-8534-48eb4bf8ebc4%2F997dbc4d-4e6d-44ac-93f7-f8b397813c63%2Fjgbjp3t_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The layout of the small foul sewer system is shown in Figure Q3 (a)
and relevant data is available in Table Q 3 (a). Assume infiltration as
3% of the dry weather flow and water consumption rate as 270
liters/person/day. Determine the pipe size for each branch of the sewer
network.
A
Figure Q3 (a). Layout of foul sewer system
Table Q 3 (a)- Sewer design data
Sewer
Population
Gradient 1:
Industrial
discharge
(m/day)
A
500
60
340
В
350
55
450
250
55
350
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