Estimation of maximum scour depth downstream of an apron under submerged wall jets

Author:

Aamir Mohammad1,Ahmad Zulfequar1

Affiliation:

1. Department of Civil Engineering, Indian Institute of Technology Roorkee, Roorkee 247667, India

Abstract

Abstract An analysis of laboratory experimental data pertaining to local scour downstream of a rigid apron developed under wall jets is presented. The existing equations for the prediction of the maximum scour depth under wall jets are applied to the available data to evaluate their performance and bring forth their limitations. A comparison of measured scour depth with that computed by the existing equations shows that most of the existing empirical equations perform poorly. Artificial neural network (ANN)- and adaptive neuro-fuzzy interference system (ANFIS)-based models are developed using the available data, which provide simple and accurate tools for the estimation of the maximum scour depth. The key parameters that affect the maximum scour depth are densimetric Froude number, apron length, tailwater level, and median sediment size. Results obtained from ANN and ANFIS models are compared with those of empirical and regression equations by means of statistical parameters. The performance of ANN (RMSE = 0.052) and ANFIS (RMSE = 0.066) models is more satisfactory than that of empirical and regression equations.

Publisher

IWA Publishing

Subject

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

Reference69 articles.

1. Review of literature on local scour under plane turbulent wall jets;Physics of Fluids,2016

2. Prediction of local scour depth downstream of an apron under wall jets;Garg;Development of Water Resources in India. Water Science and Technology Library,2017

3. Erosion of loose beds by submerged circular impinging vertical turbulent jets;Journal of Hydraulic Research,1996

4. Effect of sediment gradation on erosion by plane turbulent wall jets;Journal of Hydraulic Engineering,1998

5. Estimation of equilibrium scour depth from submerged impinged jet,1984

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