4444 A sluice gate used to control the flow in a horizontal channel of unit width is shown in the figure. d₁ = 1.0 m (1) d₂ = 0.2 m It is obeserved that the depth of flow is 1.0 m upstream of the gate, while the depth is 0.2 m downstream of the gate. Assuming a smooth flow transition across the sluice gate, i.e., without any energy loss, and the acceleration due to gravity as 10 m/s², the discharge (in m³/s, up to two decimal places) passing under the sluice gate is

Structural Analysis
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A sluice gate used to control the flow in a
horizontal channel of unit width is shown in the
figure.
d₁ = 1.0 m
1
2
d₂ = 0.2 m
It is obeserved that the depth of flow is 1.0 m
upstream of the gate, while the depth is 0.2 m
downstream of the gate. Assuming a smooth flow
transition across the sluice gate, i.e., without any
energy loss, and the acceleration due to gravity
as 10 m/s², the discharge (in m³/s, up to two
decimal places) passing under the sluice gate is
Transcribed Image Text:********* A sluice gate used to control the flow in a horizontal channel of unit width is shown in the figure. d₁ = 1.0 m 1 2 d₂ = 0.2 m It is obeserved that the depth of flow is 1.0 m upstream of the gate, while the depth is 0.2 m downstream of the gate. Assuming a smooth flow transition across the sluice gate, i.e., without any energy loss, and the acceleration due to gravity as 10 m/s², the discharge (in m³/s, up to two decimal places) passing under the sluice gate is
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