M1Q10 PART #2 (METHOD) Water discharging from a spillway into a rectangular horizontal (wide) channel goes through a hydraulic jump, before returning to a river (see schematic below). PART #2 (method): Which method could be used to determine the height of this step?单项选择题

A

Use the momentum equation directly between the jump and the river, ignoring energy losses

B

Apply the gradually varied flow (step method) from the gate to the river without considering the jump

C

Assume the step height is equal to the difference between the conjugate depth after the jump and the river depth

D

Apply an energy balance between the post-jump section and the river to estimate the step height

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M1Q9 PART #2 (Numerical Answer) The jet emerging from an underflow vertical sluice gate contracts at the "vena contracta" just downstream of the gate, where the depth is 0.7 m. Downstream of the gate, where the flow is unaffected, water depth coincides with the normal depth dn = 3.2 m. The channel has got a rectangular cross section 8 m wide, n = 0.03 and slope S0 = 0.002. PART #2 (numerical calculation): What is the depth immediately upstream of the hydraulic jump? (Answer in m). 

M1Q10 PART #1 (Numerical Answer) Water discharging from a spillway into a rectangular horizontal (wide) channel goes through a hydraulic jump, before returning to a river (see schematic below). PART #1 (numerical calculation): If the conjugate depth after the jump is d2 = 2.1 m and the corresponding velocity is V2 = 1.79 m/s, what is the height of the step Δ z0 that would allow a uniform transition to the river where flow depth is d3 = 1.5 m and velocity is V3 = 2.5 m/s. (Answer in m). 

M1Q9 PART #4 (METHOD) The jet emerging from an underflow vertical sluice gate contracts at the "vena contracta" just downstream of the gate, where the depth is 0.7 m. Downstream of the gate, where the flow is unaffected, water depth coincides with the normal depth dn = 3.2 m. The channel has got a rectangular cross section 8 m wide, n = 0.03 and slope S0 = 0.002. PART #4 (method): Which method could be used to determine the hydraulic jump location?

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