Development and application of a mathematical model for calculating the discharge of non-standard thin-plate weirs in urban combined sewer overflow systems: a case study

Author:

Tang Ming12ORCID,Wu Yuze1,Xie Qianchen1,Chen Hui1,Xu Wenbin3

Affiliation:

1. a School of Hydraulic & Ecological Engineering, Nanchang Institute of Technology, Nanchang, Jiangxi 330099, China

2. b Jiangxi Key Laboratory of Hydrology-Water Resources and Water Environment, Nanchang, Jiangxi 330099, China

3. c Nanchang Urban Planning and Design Institute, Nanchang, Jiangxi 330038, China

Abstract

Abstract The aim of this study is to address the issue of difficulty in evaluating the combined sewer overflow (CSO) pollution effectively, especially for the monitoring of overflow from non-standard thin-plate weirs (NTPWs). In order to construct a discharge calculation mathematical model (DCMM) of NTPWs in an urban combined sewer overflow system (UCSOS), which can be used to construct a real-time monitoring and early warning system, a physical model constructed firstly for obtaining hydraulic characteristic sets under three flow conditions (free, submerged, pressurized flow). Then, the coefficient function expressions are obtained under three flow conditions through genetic algorithm (GA) fitting, and a DCMM of UCSOS is established subsequently. The results indicate that DCMM exhibits high accuracy, with mean relative error (MRE) at 0.0326, root mean square error (RMSE) at 1.569, and Nash–Sutcliffe efficiency (NSE) coefficient at 0.9387. The DCMM can not only evaluate the discharge capacity under different flow conditions, but also be used to realize reliable and convenient discharge monitoring. Although the DCMM constructed in this case is not universal, the modeling method of combining physical models with GA is an effective new approach to evaluate the discharge capacity of NTPW, which also holds value for application in other cities.

Funder

Nanchang Urban Planning & Design Institute of China

Jiangxi Provincial Department of Water Resources

Publisher

IWA Publishing

Reference22 articles.

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3. Study on the relationship between discharge and upstream head of the submerged flow over sharp-crested weirs;Hadano;Yamaguchi University of Engineering Faculty,2015

4. AN ATTEMPT TO FORMULATE THE RELATIONSHIP BETWEEN DISCHARGE AND UPSTREAM WATER LEVEL OF THE FLOW OVER SHARP-CRESTED WEIRS

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