Numerical study of submerged hydraulic jumps over triangular macroroughnesses

Author:

Kumar Jayant Harshit1ORCID,Jhamnani Bharat1

Affiliation:

1. 1 Department of Civil Engineering, Delhi Technological University, Delhi, India

Abstract

Abstract The hydraulic jump is a phenomenon that occurs in open channels. In past studies, hydraulic jumps over smooth and macrorough beds have been investigated to enhance energy dissipation, but triangular macroroughness, specifically the right-angled triangular macroroughness, has not been dealt with. The objective of this article is to numerically investigate submerged hydraulic jumps over right angle and isosceles triangular macrorough beds. To achieve this, a numerical model based on computational fluid dynamics (CFD) has been utilized. Numerically obtained jump characteristics such as submerged depth ratio, tailwater depth ratio, longitudinal velocity profile, flow pattern in the cavity region, and energy dissipation have been presented in detail. In particular, initial Froude number reduction in both tailwater and submerged depth ratios as well as an increase in the energy dissipation of submerged hydraulic jumps have been noticed on isosceles triangular macroroughness with different arrangements, as compared to smooth beds. The present numerical model has been validated with the experimental model, and the mean error between the two for submerged depth and tailwater depth ratios was found to be below 6%. This confirms the adequacy of the present CFD model in predicting relevant submerged hydraulic jump characteristics over macrorough beds.

Publisher

IWA Publishing

Subject

Atmospheric Science,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering,Water Science and Technology

Reference42 articles.

1. Estimation of hydraulic jump on corrugated bed using artificial neural networks and genetic programming;Water Sci. Eng.,2013

2. Effect of buried plates on scour profiles downstream of hydraulic jump in open channels with horizontal and reverse bed slopes;Water Sci. Eng.,2016

3. Analysis of turbulent hydraulic jump over a transitional rough bed of a rectangular channel: Universal relations;J. Eng. Mech.,2011

4. Effect of corrugated beds on characteristics of submerged hydraulic jump;Ain Shams Engineering Journal,2014

5. Experimental and CFD modeling of hydraulic jumps forming at submerged weir;J. Inst. Eng. Ser. A,2019

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