Dealing with Zero Flows in the Simulation of Water Distribution Networks with Low-Resistance Pipes Using the Global Gradient Algorithm

This paper shows that the zero flow treatment algorithm and the convergence criteria of EPANET 2.2, the latest version of the EPANET 2 open-source software package, may be responsible for convergence to distinctly inaccurate results in the case of networks with low-resistance pipes. As an alternativ...

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Published inWater resources management Vol. 36; no. 5; pp. 1679 - 1691
Main Authors Gorev, Nikolai B., Gorev, Vyacheslav N., Kodzhespirova, Inna F., Shedlovsky, Igor A., Sivakumar, P.
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.03.2022
Springer Nature B.V
Subjects
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ISSN0920-4741
1573-1650
DOI10.1007/s11269-022-03100-9

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Abstract This paper shows that the zero flow treatment algorithm and the convergence criteria of EPANET 2.2, the latest version of the EPANET 2 open-source software package, may be responsible for convergence to distinctly inaccurate results in the case of networks with low-resistance pipes. As an alternative, the paper suggests a zero flow treatment method proposed earlier, which is based on the smallness of the flow rather than the flow derivative of the head loss as in EPANET 2.2. To avoid spurious convergence, the EPANET 2.2 convergence criteria may be complemented with a criterion based on the flow residuals of the energy balance equations. The monotony of the head loss vs. flow relationship allows these residuals to be checked for a specified tolerance without solving the energy balance equations for the flow.
AbstractList This paper shows that the zero flow treatment algorithm and the convergence criteria of EPANET 2.2, the latest version of the EPANET 2 open-source software package, may be responsible for convergence to distinctly inaccurate results in the case of networks with low-resistance pipes. As an alternative, the paper suggests a zero flow treatment method proposed earlier, which is based on the smallness of the flow rather than the flow derivative of the head loss as in EPANET 2.2. To avoid spurious convergence, the EPANET 2.2 convergence criteria may be complemented with a criterion based on the flow residuals of the energy balance equations. The monotony of the head loss vs. flow relationship allows these residuals to be checked for a specified tolerance without solving the energy balance equations for the flow.
Author Shedlovsky, Igor A.
Kodzhespirova, Inna F.
Gorev, Nikolai B.
Gorev, Vyacheslav N.
Sivakumar, P.
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10.1061/(ASCE)WR.1943-5452.0000918
10.1061/(ASCE)CP.1943-5487.0000160
10.1080/1573062X.2014.993997
10.1007/s11269-018-1961-1
10.1061/(ASCE)HY.1943-7900.0000703
10.1007/s11269-014-0677-0
10.1007/s11269-011-9968-x
10.1061/(ASCE)WR.1943-5452.0001220
10.1061/(ASCE)HY.1943-7900.0000694
10.2166/wpt.2021.071
10.1080/1573062X.2020.1864832
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Snippet This paper shows that the zero flow treatment algorithm and the convergence criteria of EPANET 2.2, the latest version of the EPANET 2 open-source software...
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SubjectTerms administrative management
Algorithms
Atmospheric Sciences
Civil Engineering
Computer software
Convergence
Criteria
Earth and Environmental Science
Earth Sciences
Energy
Energy balance
Environment
Flow
Flow control
Geotechnical Engineering & Applied Earth Sciences
Hydrogeology
Hydrology/Water Resources
Mathematical analysis
Monotony
Open source software
Pipes
Public domain
Simulation
Software packages
water
Water distribution
Water engineering
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Title Dealing with Zero Flows in the Simulation of Water Distribution Networks with Low-Resistance Pipes Using the Global Gradient Algorithm
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