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CL420, CL442, CL443: Water Engineering 2

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Flow rate in the flume is dictated by:
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Flow transitions from a supercritical to sub-critical flow result in a hydraulic jump?
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Flow transitions from a sub-critical to supercritical flow result in a hydraulic jump?
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Flumes act like a simply supported beam. This means that they will bend and deflect under loading. This deflection will impact:
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Sub-critical Flows have a normal depth “X” than the critical depth of flow.
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As flow approaches an obstacle (e.g. a weir) I would expect it to gain potential energy and thus the depth to “X” and the velocity to “Y”. What are “X” and “Y”?
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The minimum energy required by the flow to overcome any obstacle can be found using:
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Identify the correct sketch depicting the depth profile of the different depths associated with a supercritical GVF situation.

 

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GVF may be classified based on the slope of the channel and the relationship between “X” depth and the “Y” and “Z” depths
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GVF classification defines the profile of the depth of flow relative to the key hydraulic depths using …
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