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SPH Simulation of Hydraulic Jump on Corrugated Riverbeds

Shenglong Gu, Fuping Bo, Min Luo Orcid Logo, Ehsan Kazemi, Yunyun Zhang, Jiahua Wei

Applied Sciences, Volume: 9, Issue: 3, Start page: 436

Swansea University Author: Min Luo Orcid Logo

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DOI (Published version): 10.3390/app9030436

Abstract

This paper presents a numerical study of the hydraulic jump on corrugated riverbed using the Smoothed Particle Hydrodynamics (SPH) method. By simulating an experimental benchmark example, the SPH model is demonstrated to predict the wave profile, velocity field, and energy dissipation rate of hydrau...

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Published in: Applied Sciences
ISSN: 2076-3417
Published: MDPI AG 2019
Online Access: Check full text

URI: https://cronfa.swan.ac.uk/Record/cronfa48815
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Abstract: This paper presents a numerical study of the hydraulic jump on corrugated riverbed using the Smoothed Particle Hydrodynamics (SPH) method. By simulating an experimental benchmark example, the SPH model is demonstrated to predict the wave profile, velocity field, and energy dissipation rate of hydraulic jump with good accuracy. Using the validated SPH model, the dynamic evolvement of the hydraulic jump on corrugated riverbed is studied focusing on the vortex pattern, jump length, water depth after hydraulic jump, and energy dissipation rate. In addition, the influences of corrugation height and length on the characteristics of hydraulic jump are parametrically investigated.
Keywords: SPH; hydraulic jump; corrugated riverbed; energy dissipation
College: Faculty of Science and Engineering
Issue: 3
Start Page: 436