Problem 1: Critical Depth and Minimum Specific Energy
A rectangular channel is wide and carries . Determine critical depth and minimum specific energy using .
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0 of 3 Steps CompletedProblem 2: Specific Energy, Froude Number, and Flow Regime
A wide rectangular channel carries at depth . Determine mean velocity, specific energy, Froude number, and flow regime.
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0 of 3 Steps CompletedProblem 3: Alternate Depths at Equal Specific Energy
In a rectangular channel, unit discharge is and specific energy is . Determine the two possible depths and identify their regimes.
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0 of 3 Steps CompletedProblem 4: Maximum Bed Rise before Choking
A wide rectangular channel carries at an upstream depth of . Neglect losses and take . Determine the maximum bed rise that can occur before the raised section becomes critical.
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0 of 3 Steps CompletedProblem 5: Sequent Depth of a Hydraulic Jump
Supercritical flow in a rectangular channel has upstream depth and velocity . Determine the upstream Froude number and downstream conjugate depth.
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0 of 3 Steps CompletedProblem 6: Hydraulic-Jump Energy and Power Dissipation
For and , determine the specific-energy loss. If total discharge is , estimate hydraulic power dissipated.
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0 of 2 Steps CompletedProblem 7: Tailwater Check for Hydraulic-Jump Location
A calculated free hydraulic jump requires downstream conjugate depth . At the same discharge, the actual tailwater depth at the proposed basin is only . What does this imply?
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0 of 2 Steps CompletedProblem 8: Broad-Crested Weir at Critical Flow
Water passes over a broad-crested weir with available specific head above the crest. Neglect approach-velocity correction and losses. The crest is wide. Determine critical depth and discharge.
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0 of 3 Steps CompletedProblem 9: Critical Slope and Mild-Slope Classification
A wide rectangular channel carries with Manning . Determine the critical slope and classify an actual reach with .
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0 of 3 Steps CompletedProblem 10: Water-Surface Profile Classification
Classify each case: (a) , , ; (b) , , .
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0 of 3 Steps CompletedProblem 11: Local GVF Depth Gradient
At a channel section, , , and . Determine and interpret its sign.
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0 of 2 Steps CompletedProblem 12: Direct-Step Reach Length and Sign Convention
For two states in a prismatic channel, , , and . Determine the signed distance from section 1 to section 2.
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0 of 2 Steps CompletedProblem 13: One Standard-Step Update in a Rectangular Channel
A wide rectangular channel carries with and bed slope . At an upstream station, . The next station is downstream. Using the average of endpoint friction slopes, determine the downstream depth by iteration with .
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0 of 3 Steps CompletedProblem 14: Spatially Varied Flow with Uniform Lateral Inflow
A channel enters a reach with and receives uniform lateral inflow . Determine discharge at the downstream end.