A rectangular channel 12.0 m wide is laid on a slope of 0.0028. The depth of flow at one section is 1.5 m, while the depth of flow at another section 500 m downstream is 1.80 m. Determine the probable rate of flow if n = 0.026. Show that the critical depth in a triangular channel can be expressed as 4/5 of the minimum specific energy.
A rectangular channel 12.0 m wide is laid on a slope of 0.0028. The depth of flow at one section is 1.5 m, while the depth of flow at another section 500 m downstream is 1.80 m. Determine the probable rate of flow if n = 0.026. Show that the critical depth in a triangular channel can be expressed as 4/5 of the minimum specific energy.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![A rectangular channel 12.0 m wide is laid on a
slope of 0.0028. The depth of flow at one
section is 1.5 m, while the depth of flow at
another section 500 m downstream is 1.80 m.
Determine the probable rate of flow if n = 0.026.
Show that the critical depth in a triangular
channel can be expressed as 4/5 of the
minimum specific energy.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa9b1e90a-854a-4832-9302-c95f32f6ca43%2F36547a42-f69d-4294-8a43-18f8c0d90cf0%2Fz04lnu_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A rectangular channel 12.0 m wide is laid on a
slope of 0.0028. The depth of flow at one
section is 1.5 m, while the depth of flow at
another section 500 m downstream is 1.80 m.
Determine the probable rate of flow if n = 0.026.
Show that the critical depth in a triangular
channel can be expressed as 4/5 of the
minimum specific energy.
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