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Research articles

Pipe hydraulic resistance correction in WDN analysis

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Pages 39-52 | Received 04 Apr 2008, Accepted 06 Aug 2008, Published online: 07 Apr 2009

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Read on this site (5)

Vasilis Kanakoudis & Konstantinos Gonelas. (2015) Accurate water demand spatial allocation for water networks modelling using a new approach. Urban Water Journal 12:5, pages 362-379.
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Luigi Berardi, Orazio Giustolisi & Ezio Todini. (2010) Accounting for uniformly distributed pipe demand in WDN analysis: enhanced GGA. Urban Water Journal 7:4, pages 243-255.
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Articles from other publishers (38)

Michael K. Kostner, Ariele Zanfei, Jacopo C. Alberizzi, Massimiliano Renzi, Maurizio Righetti & Andrea Menapace. (2023) Micro hydro power generation in water distribution networks through the optimal pumps-as-turbines sizing and control. Applied Energy 351, pages 121802.
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Bahar Adem Beker & Mitthan Lal Kansal. (2023) Complexities of the urban drinking water systems in Ethiopia and possible interventions for sustainability. Environment, Development and Sustainability.
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Mehmet Melih Koşucu & Mehmet Cüneyd Demirel. (2022) Smart pressure management extension for EPANET: source code enhancement with a dynamic pressure reducing valve model. Journal of Hydroinformatics 24:3, pages 642-658.
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Alexandru Constantin Săvulete, Vlad Florin Pîrăianu, Sanda-Carmen Georgescu & Andrei-Mugur Georgescu. (2021) Modelling of a drip irrigation system operation for greenhouses rose cultivation using PDD in EPANET 2.2. IOP Conference Series: Earth and Environmental Science 664:1, pages 012041.
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Abbas Rizvi, Rabee Rustum, Grant Wright, Malini Deepak & Lynne Jack. (2021) Analysis of conservative approach for simulating water supply system in various conditions. Proceedings of the Institution of Civil Engineers - Water Management, pages 1-11.
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A. K. Jaiswal, P. K. Thakur, P. Kumar & S. Kannaujiya. (2021) Geospatial modeling of water supply distribution system: A case study of Dehradun city, India. H2Open Journal 4:1, pages 393-412.
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Bahar Adem Beker & Mitthan Lal Kansal. 2021. Advances in Energy and Environment. Advances in Energy and Environment 151 162 .
Andrea Menapace, Walter Boscheri, Marco Baratieri & Maurizio Righetti. (2020) An efficient numerical scheme for the thermo-hydraulic simulations of thermal grids. International Journal of Heat and Mass Transfer 161, pages 120304.
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Nikolay N. Novitsky, Zoya I. Shalaginova, Aleksandr A. Alekseev, Vyacheslav V. Tokarev, Oksana A. Grebneva, Aleksandr V. Lutsenko, Olga V. Vanteeva, Egor A. Mikhailovsky, Roman Pop, Petr Vorobev & Michael Chertkov. (2020) Smarter Smart District Heating. Proceedings of the IEEE 108:9, pages 1596-1611.
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Ariele Zanfei, Andrea Menapace, Simone Santopietro & Maurizio Righetti. (2020) Calibration Procedure for Water Distribution Systems: Comparison among Hydraulic Models. Water 12:5, pages 1421.
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Oksana Grebneva. (2019) Study of the regimes planning problem for pipeline systems tests. IOP Conference Series: Materials Science and Engineering 667:1, pages 012029.
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Kazeem B. Adedeji, Yskandar Hamam & Adnan M. Abu-Mahfouz. (2019) Impact of Pressure-Driven Demand on Background Leakage Estimation in Water Supply Networks. Water 11:8, pages 1600.
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Andrea Menapace & Diego Avesani. (2019) Global Gradient Algorithm Extension to Distributed Pressure Driven Pipe Demand Model. Water Resources Management 33:5, pages 1717-1736.
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Oksana A. Grebneva. (2019) Study of the measurements placement problem for planning of the optimal experiment. E3S Web of Conferences 102, pages 03006.
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Andrea Menapace, Diego Avesani, Maurizio Righetti, Alberto Bellin & Giuseppe Pisaturo. (2018) Uniformly Distributed Demand EPANET Extension. Water Resources Management 32:6, pages 2165-2180.
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Maryam Abareshi, Seyed Mahmood Hosseini & Ahmad Aftabi Sani. (2017) A simple iterative method for water distribution network analysis. Applied Mathematical Modelling 52, pages 274-287.
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C. J. RaoV. JothiprakashT. I. Eldho. (2017) Design of a Pipe Network Using the Finite-Element Method Coupled with Particle-Swarm Optimization. Journal of Pipeline Systems Engineering and Practice 8:4.
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Kazeem B. Adedeji, Yskandar Hamam, Bolanle T. Abe & Adnan M. Abu-Mahfouz. (2017) Burst leakage-pressure dependency in water piping networks: Its impact on leak openings. Burst leakage-pressure dependency in water piping networks: Its impact on leak openings.
Andr? Jacomel Torii, Rafael Holdorf Lopez & Leandro Fleck Fadel Miguel. (2017) Probability of failure sensitivity analysis using polynomial expansion. Probabilistic Engineering Mechanics 48, pages 76-84.
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Sami Ateş. (2017) Hydraulic modelling of control devices in loop equations of water distribution networks. Flow Measurement and Instrumentation 53, pages 243-260.
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J. D. NaultB. W. Karney. (2016) Improved Rigid Water Column Formulation for Simulating Slow Transients and Controlled Operations. Journal of Hydraulic Engineering 142:9.
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Rajesh GuptaAbhijith Gopinathan Remadevi NairLindell Ormsbee. (2016) Leakage as Pressure-Driven Demand in Design of Water Distribution Networks. Journal of Water Resources Planning and Management 142:6.
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O. GiustolisiL. BerardiD. LaucelliD. SavicZ. Kapelan. (2016) Operational and Tactical Management of Water and Energy Resources in Pressurized Systems: Competition at WDSA 2014. Journal of Water Resources Planning and Management 142:5.
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Sami Ateş. (2016) Hydraulic modelling of closed pipes in loop equations of water distribution networks. Applied Mathematical Modelling 40:2, pages 966-983.
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Suraj A. Vairagade, M. A. H. Abdy Sayyed & Rajesh Gupta. (2015) Node Head Flow Relationships in Skeletonized Water Distribution Networks for Predicting Performance under Deficient Conditions. Node Head Flow Relationships in Skeletonized Water Distribution Networks for Predicting Performance under Deficient Conditions.
R.H. Lopez, A.J. Torii, L.F.F. Miguel & J.E. Souza Cursi. (2015) Overcoming the drawbacks of the FORM using a full characterization method. Structural Safety 54, pages 57-63.
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Congcong Sun, Mark Morley, Dragan Savic, Vicenc¸ Puig, Gabriela Cembrano & Zheng Zhang. (2015) Combining Model Predictive Control with Constraint-satisfaction Formulation for the Operative Pumping Control in Water Networks. Procedia Engineering 119, pages 963-972.
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Daniel Paluszczyszyn, Piotr Skworcow & Bogumil Ulanicki. (2015) A Tool for Practical Simplification of Water Networks Models. Procedia Engineering 119, pages 486-495.
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Angus R. SimpsonSylvan ElhayBradley Alexander. (2014) Forest-Core Partitioning Algorithm for Speeding Up Analysis of Water Distribution Systems. Journal of Water Resources Planning and Management 140:4, pages 435-443.
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O. GiustolisiL. BerardiD. Laucelli. (2014) Modeling Local Water Storages Delivering Customer Demands in WDN Models. Journal of Hydraulic Engineering 140:1, pages 89-104.
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J. Liu & G. Yu. (2014) Analysis of Demand and Leakage Distributing Uniformly Along Pipes. Procedia Engineering 89, pages 603-612.
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O. Giustolisi, L. Berardi, D. Laucelli, D. Savic, T. Walski & B. Brunone. (2014) Battle of Background Leakage Assessment for Water Networks (BBLAWN) at WDSA Conference 2014. Procedia Engineering 89, pages 4-12.
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Daniele Laucelli, Luigi Berardi & Orazio Giustolisi. (2011) Advancements in Water Distribution Network Simulation by Enhanced GGA. Advancements in Water Distribution Network Simulation by Enhanced GGA.
Daniele Laucelli, Luigi Berardi, Orazio Giustolisi, Lydia S. Vamvakeridou-Lyroudia, Zoran Kapelan, Dragan Savic & Giuseppe Barbaroand. (2011) Calibration of Water Distribution System Using Topological Analysis. Calibration of Water Distribution System Using Topological Analysis.
Orazio GiustolisiDaniele Laucelli. (2011) Water Distribution Network Pressure-Driven Analysis Using the Enhanced Global Gradient Algorithm (EGGA). Journal of Water Resources Planning and Management 137:6, pages 498-510.
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Dragan A. Savi?Rob Casey & Zoran Kapelan. 2011. Water Distribution Systems. Water Distribution Systems 23 48 .
O. Giustolisi. (2010) Considering Actual Pipe Connections in Water Distribution Network Analysis. Journal of Hydraulic Engineering 136:11, pages 889-900.
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O. Giustolisi. (2009) Enhanced WDN Analysis: Representation of Actual Pipe Connections. Enhanced WDN Analysis: Representation of Actual Pipe Connections.

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