Comparative study of experimental and CFD analysis for predicting discharge coefficient of compound broad crested weir

Author:

Kulkarni Ketaki H.1ORCID,Hinge Ganesh A.2

Affiliation:

1. Department of Civil Engineering, MAEER's Maharashtra Institute of Technology, Pune 411038, India

2. Department of Civil Engineering, TSSM's Bhivrabai Sawant College of Engineering and Research, Pune 411041, India

Abstract

Abstract Present study highlights the behavior of the weir crest head and width parameter on the discharge coefficient of a compound broad crested (CBC) weir. Computational fluid dynamics model (CFD) is validated with laboratory experimental investigations. In the discharge analysis through broad crested weirs, the upstream head over the weir crest (h) is crucial, where the result is mainly dependent upon the weir crest length (L) in the transverse direction to flow, water depth from channel bed. Currently, minimal investigations are known for CFD validations on compound broad crested weirs. The hydraulic research for measuring discharge numerically is carried out using FLOW 3D software. The model applies renormalized group (RNG) using the volume of fluid (VOF) method for improved accuracy in free surface simulations. Structured hexagonal meshes of cubic elements define discretized meshing. The comparative analysis of the numerical simulations and experimental observations confirm the performance of the CBC weir for precise measurement of a wide range of discharges. Series of CFD model studies and experimental validation have led to constant range of discharge coefficients for various heads over the weir crest. The correlation coefficient of discharge predictions is 0.999 with mean error of 0.28%.

Publisher

IWA Publishing

Subject

Water Science and Technology

Reference31 articles.

1. Prediction models for discharge estimation in rectangular compound broad-crested weirs;Flow Measurement and Instrumentation,2014

2. Investigation of a sill effect on rectangular side-weir flow by using CFD;Journal of Irrigation and Drainage Engineering,2016

3. Discharge characteristics of weirs of finite crest length;Journal of Hydraulic Engineering,2009

4. New stage discharge relationship for weirs of finite crest length;Journal of Irrigation and Drainage Engineering,2014

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