Numerical Analysis on Hydraulic Characteristics of U-shaped Channel of Various Trapezoidal Cross-Sections

Curved channel with trapezoidal cross-section is approximate to the common form in nature fluvial networks and its hydraulic characteristics are considerably complex and variable. Combined with volume of fluid (VOF) method, renormalization group (RNG) k-ε turbulence model was employed to nu...

Full description

Bibliographic Details
Main Authors: Ruichang Hu, Jianmin Zhang
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:Water
Subjects:
Online Access:https://www.mdpi.com/2073-4441/10/12/1788
id doaj-7a39d51908b14de78c3b99591dcdbca6
record_format Article
spelling doaj-7a39d51908b14de78c3b99591dcdbca62020-11-24T23:28:18ZengMDPI AGWater2073-44412018-12-011012178810.3390/w10121788w10121788Numerical Analysis on Hydraulic Characteristics of U-shaped Channel of Various Trapezoidal Cross-SectionsRuichang Hu0Jianmin Zhang1State Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu 610065, ChinaState Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu 610065, ChinaCurved channel with trapezoidal cross-section is approximate to the common form in nature fluvial networks and its hydraulic characteristics are considerably complex and variable. Combined with volume of fluid (VOF) method, renormalization group (RNG) k-ε turbulence model was employed to numerically investigate the flow properties in the U-shaped channel with various trapezoidal cross-sections. Analyses were performed from the aspects of the water surface transverse slope in bend apex (WTS-BA), longitudinal velocity, secondary flow, shear stress and turbulent kinetic energy (TKE) under several scenarios, specifically, four types of radius-to-width ratio and seven types of slope coefficient with a constant aspect ratio. The calculated results suggested that the maximums of shear stress and TKE in the bend were observed in the convex bank and the maximal intensities of secondary flow were observed within the range of 60 to 75 degrees for various varieties. As the radius-to-width ratio increased, the maximums of shear stress, TKE and WTS-BA decreased; but increased with increasing slope coefficients. The intensity of secondary flow decreased as slope coefficients increased and the angle of maximum intensity of secondary flow moved to the upstream for the increasing radius-to-width ratios. In addition, a new equation concerning the vertical distribution of longitudinal velocity in trapezoidal cross-sectioned channel was presented.https://www.mdpi.com/2073-4441/10/12/1788trapezoidal cross-sectionU-shaped channelradius-to-width ratioslope coefficienthydraulic characteristics
collection DOAJ
language English
format Article
sources DOAJ
author Ruichang Hu
Jianmin Zhang
spellingShingle Ruichang Hu
Jianmin Zhang
Numerical Analysis on Hydraulic Characteristics of U-shaped Channel of Various Trapezoidal Cross-Sections
Water
trapezoidal cross-section
U-shaped channel
radius-to-width ratio
slope coefficient
hydraulic characteristics
author_facet Ruichang Hu
Jianmin Zhang
author_sort Ruichang Hu
title Numerical Analysis on Hydraulic Characteristics of U-shaped Channel of Various Trapezoidal Cross-Sections
title_short Numerical Analysis on Hydraulic Characteristics of U-shaped Channel of Various Trapezoidal Cross-Sections
title_full Numerical Analysis on Hydraulic Characteristics of U-shaped Channel of Various Trapezoidal Cross-Sections
title_fullStr Numerical Analysis on Hydraulic Characteristics of U-shaped Channel of Various Trapezoidal Cross-Sections
title_full_unstemmed Numerical Analysis on Hydraulic Characteristics of U-shaped Channel of Various Trapezoidal Cross-Sections
title_sort numerical analysis on hydraulic characteristics of u-shaped channel of various trapezoidal cross-sections
publisher MDPI AG
series Water
issn 2073-4441
publishDate 2018-12-01
description Curved channel with trapezoidal cross-section is approximate to the common form in nature fluvial networks and its hydraulic characteristics are considerably complex and variable. Combined with volume of fluid (VOF) method, renormalization group (RNG) k-ε turbulence model was employed to numerically investigate the flow properties in the U-shaped channel with various trapezoidal cross-sections. Analyses were performed from the aspects of the water surface transverse slope in bend apex (WTS-BA), longitudinal velocity, secondary flow, shear stress and turbulent kinetic energy (TKE) under several scenarios, specifically, four types of radius-to-width ratio and seven types of slope coefficient with a constant aspect ratio. The calculated results suggested that the maximums of shear stress and TKE in the bend were observed in the convex bank and the maximal intensities of secondary flow were observed within the range of 60 to 75 degrees for various varieties. As the radius-to-width ratio increased, the maximums of shear stress, TKE and WTS-BA decreased; but increased with increasing slope coefficients. The intensity of secondary flow decreased as slope coefficients increased and the angle of maximum intensity of secondary flow moved to the upstream for the increasing radius-to-width ratios. In addition, a new equation concerning the vertical distribution of longitudinal velocity in trapezoidal cross-sectioned channel was presented.
topic trapezoidal cross-section
U-shaped channel
radius-to-width ratio
slope coefficient
hydraulic characteristics
url https://www.mdpi.com/2073-4441/10/12/1788
work_keys_str_mv AT ruichanghu numericalanalysisonhydrauliccharacteristicsofushapedchannelofvarioustrapezoidalcrosssections
AT jianminzhang numericalanalysisonhydrauliccharacteristicsofushapedchannelofvarioustrapezoidalcrosssections
_version_ 1725549855184519168