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Design of a circular hydraulic jump

โœ Scribed by G. A. Gachechiladze


Publisher
Springer
Year
1970
Tongue
English
Weight
182 KB
Volume
4
Category
Article
ISSN
1570-1468

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We performed axisymmetric r-z simulations to clarify the structure formation of the circular hydraulic jump. The transition from a type I to a type II jump, which was induced by changing the depth of the fluid far away from the jet in the laboratory experiment, was investigated numerically. We found

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When a high-flow-rate circular jet impinges vertically on a horizontal plane, it flows out radially and then undergoes a distinctive hydraulic jump on the plane because of boundary layer separation induced by hydrostatic back pressure. The jump radius is shown to be 0.37 a Re 1/3 -1/8 , where = (ga