Skip to Main Content (Press Enter)

Logo UNIBS
  • ×
  • Home
  • People
  • Organizations
  • Expertise & Skills
  • Outputs
  • Jobs
  • Degrees
  • Courses
  • Third Mission

Expertise & Skills
Logo UNIBS

|

Expertise & Skills

unibs.it
  • ×
  • Home
  • People
  • Organizations
  • Expertise & Skills
  • Outputs
  • Jobs
  • Degrees
  • Courses
  • Third Mission
  1. Outputs

3D CFD analysis of the performance of oblique and composite side weirs in converging channels

Academic Article
Publication Date:
2021
Abstract:
Conventional rectangular side weirs installed along prismatic open-channels may have low efficiency. One practical way to overcome this problem may be to insert the weir in the oblique side of a converging channel. In this paper, the performance of oblique straight side weirs or two-segment single-cranked side weirs inserted in rectangular converging channels are analysed through 3D computational fluid dynamics (CFD) for subcritical steady flow conditions. The numerical simulations were performed through a widely available software package by applying the VOF method to the Reynolds-averaged Navier–Stokes equations and adopting the Reynolds stress model for turbulence closure. The model is validated against experimental data previously obtained by the authors. The results provide insight into the features of the flow field and show the effect of the channel contraction rate on diversion efficiency. As regards the two-segment single-cranked weir, the “concave” arrangement has been verified as being more efficient than the “convex” one.
CRIS type:
1.1 Articolo in rivista
Keywords:
3D CFD analysis; composite weir; converging open-channel; diversion efficiency; oblique straight side weir; two-segment single-cranked side weir
List of contributors:
Maranzoni, A.; Tomirotti, M.
Authors of the University:
TOMIROTTI Massimo
Handle:
https://iris.unibs.it/handle/11379/539755
Published in:
JOURNAL OF HYDRAULIC RESEARCH
Journal
  • Support
  • Privacy
  • Use of cookies
  • Legal notes

Powered by VIVO | Designed by Cineca | 26.7.2.0