2- A hydraulic jump is situated in a 4-m wide rectangular channel. The discharge in the channel is 7.5 m³/s, and the depth upstream of the jump is 0.3 m. a) Determine the conjugate depth of the jump, y2 b) Use momentum equation and calculate the drag force, FD excreted from water to the block if the downstream depth rises to y3=2.7 m. V₁ V₁ FD -T
2- A hydraulic jump is situated in a 4-m wide rectangular channel. The discharge in the channel is 7.5 m³/s, and the depth upstream of the jump is 0.3 m. a) Determine the conjugate depth of the jump, y2 b) Use momentum equation and calculate the drag force, FD excreted from water to the block if the downstream depth rises to y3=2.7 m. V₁ V₁ FD -T
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
![2- A hydraulic jump is situated in a 4-m wide rectangular channel. The discharge in the channel is 7.5 m³/s,
and the depth upstream of the jump is 0.3 m.
a) Determine the conjugate depth of the jump, y2
b) Use momentum equation and calculate the drag force, FD excreted from water to the block if the
downstream depth rises to y3=2.7 m.
V1
V₁
FD](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2884978c-cdfd-46a8-b0f9-ee4e96e13210%2Feaf5691c-a713-4488-9397-c07f9e6e62c0%2Frd8u3d_processed.jpeg&w=3840&q=75)
Transcribed Image Text:2- A hydraulic jump is situated in a 4-m wide rectangular channel. The discharge in the channel is 7.5 m³/s,
and the depth upstream of the jump is 0.3 m.
a) Determine the conjugate depth of the jump, y2
b) Use momentum equation and calculate the drag force, FD excreted from water to the block if the
downstream depth rises to y3=2.7 m.
V1
V₁
FD
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