A waste water stream (flow = 2 m3/s), ultimate BOD = 90 mg/l is joining a small river (flow = 12 m3/s) ultimate BOD = 5 mg/l. Both water streams gets mixed up instantaneously. Cross-section area at the river is 50 m². Assuming Deoxygenation constant = 0.25-1 day. Estimated downstream BOD of river flow. %3D
A waste water stream (flow = 2 m3/s), ultimate BOD = 90 mg/l is joining a small river (flow = 12 m3/s) ultimate BOD = 5 mg/l. Both water streams gets mixed up instantaneously. Cross-section area at the river is 50 m². Assuming Deoxygenation constant = 0.25-1 day. Estimated downstream BOD of river flow. %3D
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![A waste water stream (flow = 2 m3/s), ultimate BOD = 90 mg/l is joining a small river
(flow = 12 m³/s) ultimate BOD = 5 mg/I. Both water streams gets mixed up
instantaneously. Cross-section area at the river is 50 m2. Assuming Deoxygenation
constant = 0.251 day. Estimated downstream BOD of river flow.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Facc2854b-e1d9-4302-b2d8-e119bc2cb70f%2Fcdc6cf6c-3bef-4e25-8822-c828cd5cc096%2Fot7d62p_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A waste water stream (flow = 2 m3/s), ultimate BOD = 90 mg/l is joining a small river
(flow = 12 m³/s) ultimate BOD = 5 mg/I. Both water streams gets mixed up
instantaneously. Cross-section area at the river is 50 m2. Assuming Deoxygenation
constant = 0.251 day. Estimated downstream BOD of river flow.
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