(Problem 10.51) Water flows from a storage tank, over two triangular weirs, and into two irrigation channels. The head for each weir is 0.4ft and the flowrate in the channel fed by the 90-degree V-notch weir is to be twice the flowrate in the other channel. Determine the angle O for the second weir. - (Ans: 02 = 53-degrees) %3D ....
(Problem 10.51) Water flows from a storage tank, over two triangular weirs, and into two irrigation channels. The head for each weir is 0.4ft and the flowrate in the channel fed by the 90-degree V-notch weir is to be twice the flowrate in the other channel. Determine the angle O for the second weir. - (Ans: 02 = 53-degrees) %3D ....
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![(Problem 10.51) Water flows from a storage tank, over two triangular weirs, and into two
irrigation channels. The head for each weir is 0.4ft and the flowrate in the channel fed by
the 90-degree V-notch weir is to be twice the flowrate in the other channel. Determine
the angle O for the second weir. ..
(Ans: 2 = 53-degrees)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fea08a2bd-5493-4460-b9ff-9664fadf62af%2Fdc97aebd-0aa3-49ed-9b4d-efc961ea524e%2Fhagfr5b_processed.png&w=3840&q=75)
Transcribed Image Text:(Problem 10.51) Water flows from a storage tank, over two triangular weirs, and into two
irrigation channels. The head for each weir is 0.4ft and the flowrate in the channel fed by
the 90-degree V-notch weir is to be twice the flowrate in the other channel. Determine
the angle O for the second weir. ..
(Ans: 2 = 53-degrees)
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