2022
DOI: 10.1007/s13201-022-01824-y
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Energy dissipation in hydraulic jumps using triple screen layers

Abstract: In the present study, series of laboratory experiments were conducted to investigate the effectiveness of perforated screens as energy dissipators in mixed triple wall mode in the case of small hydraulic structures. The shapes of openings for each layer of screens were either circular, square or triangular. Every layer of the screen had a porosity of 45% per unit depth of the screen. The experiments were conducted to dissipate the energy for supercritical flows of Froude number F1 ranging from 3.2 to 19.3. The… Show more

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Cited by 4 publications
(1 citation statement)
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References 13 publications
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“…Hydraulic jumps are commonly encountered in natural environments and oftentimes enforced in human-made facilities to generate mechanisms such as energy dissipation and mixing processes (Singh and Roy, 2023). The jumps are characterized by a rapid rise in free surface elevation at the transition from supercritical flow to subcritical flow, and are always accompanied by intense turbulence, energy dissipation and air entrainment (Witt et al, 2018).…”
Section: Introductionmentioning
confidence: 99%
“…Hydraulic jumps are commonly encountered in natural environments and oftentimes enforced in human-made facilities to generate mechanisms such as energy dissipation and mixing processes (Singh and Roy, 2023). The jumps are characterized by a rapid rise in free surface elevation at the transition from supercritical flow to subcritical flow, and are always accompanied by intense turbulence, energy dissipation and air entrainment (Witt et al, 2018).…”
Section: Introductionmentioning
confidence: 99%