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Applied Strategy to Characterize the Energy Improvement Using PATs in a Water Supply System

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Applied Strategy to Characterize the Energy Improvement Using PATs in a Water Supply System

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Camilo Rosado, LE.; López Jiménez, PA.; Sánchez-Romero, F.; Conejos Fuertes, P.; Pérez-Sánchez, M. (2020). Applied Strategy to Characterize the Energy Improvement Using PATs in a Water Supply System. Water. 12(6):1-22. https://doi.org/10.3390/w12061818

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Título: Applied Strategy to Characterize the Energy Improvement Using PATs in a Water Supply System
Autor: Camilo Rosado, Luis E. López Jiménez, Petra Amparo Sánchez-Romero, Francisco-Javier Conejos Fuertes, Pilar Pérez-Sánchez, Modesto
Entidad UPV: Universitat Politècnica de València. Departamento de Ingeniería Hidráulica y Medio Ambiente - Departament d'Enginyeria Hidràulica i Medi Ambient
Universitat Politècnica de València. Departamento de Ingeniería Rural y Agroalimentaria - Departament d'Enginyeria Rural i Agroalimentària
Fecha difusión:
Resumen:
[EN] Sustainable development has been an idea raised in recent years. The results are related to the improvement and the use of new technologies to maximize efficiency in water management. However, energy consumption has ...[+]
Palabras clave: PATs , Recovery , Energy , Sustainability , Supply
Derechos de uso: Reconocimiento (by)
Fuente:
Water. (issn: 2073-4441 )
DOI: 10.3390/w12061818
Editorial:
MDPI AG
Versión del editor: https://doi.org/10.3390/w12061818
Agradecimientos:
Authors greatly acknowledge financial support from the "Catedra Aguas de Valencia" in the grant "Analysis of recoverable hydraulic energy using recovery systems in supply systems" for the first author of this contribution.[+]
Tipo: Artículo

References

Biggs, E. M., Bruce, E., Boruff, B., Duncan, J. M. A., Horsley, J., Pauli, N., … Imanari, Y. (2015). Sustainable development and the water–energy–food nexus: A perspective on livelihoods. Environmental Science & Policy, 54, 389-397. doi:10.1016/j.envsci.2015.08.002

Gupta, A. D., & Kulat, K. (2018). Leakage reduction in water distribution system using efficient pressure management techniques. Case study: Nagpur, India. Water Supply, 18(6), 2015-2027. doi:10.2166/ws.2018.023

Creaco, E., & Walski, T. (2017). Economic Analysis of Pressure Control for Leakage and Pipe Burst Reduction. Journal of Water Resources Planning and Management, 143(12), 04017074. doi:10.1061/(asce)wr.1943-5452.0000846 [+]
Biggs, E. M., Bruce, E., Boruff, B., Duncan, J. M. A., Horsley, J., Pauli, N., … Imanari, Y. (2015). Sustainable development and the water–energy–food nexus: A perspective on livelihoods. Environmental Science & Policy, 54, 389-397. doi:10.1016/j.envsci.2015.08.002

Gupta, A. D., & Kulat, K. (2018). Leakage reduction in water distribution system using efficient pressure management techniques. Case study: Nagpur, India. Water Supply, 18(6), 2015-2027. doi:10.2166/ws.2018.023

Creaco, E., & Walski, T. (2017). Economic Analysis of Pressure Control for Leakage and Pipe Burst Reduction. Journal of Water Resources Planning and Management, 143(12), 04017074. doi:10.1061/(asce)wr.1943-5452.0000846

Di Nardo, A., Di Natale, M., Giudicianni, C., Greco, R., & Santonastaso, G. F. (2017). Weighted spectral clustering for water distribution network partitioning. Applied Network Science, 2(1). doi:10.1007/s41109-017-0033-4

Creaco, E., & Haidar, H. (2019). Multiobjective Optimization of Control Valve Installation and DMA Creation for Reducing Leakage in Water Distribution Networks. Journal of Water Resources Planning and Management, 145(10), 04019046. doi:10.1061/(asce)wr.1943-5452.0001114

Santonastaso, G. F., Di Nardo, A., & Creaco, E. (2019). Dual topology for partitioning of water distribution networks considering actual valve locations. Urban Water Journal, 16(7), 469-479. doi:10.1080/1573062x.2019.1669201

Pérez-Sánchez, M., Sánchez-Romero, F. J., López-Jiménez, P. A., & Ramos, H. M. (2018). PATs selection towards sustainability in irrigation networks: Simulated annealing as a water management tool. Renewable Energy, 116, 234-249. doi:10.1016/j.renene.2017.09.060

Fernández García, I., & Mc Nabola, A. (2020). Maximizing Hydropower Generation in Gravity Water Distribution Networks: Determining the Optimal Location and Number of Pumps as Turbines. Journal of Water Resources Planning and Management, 146(1), 04019066. doi:10.1061/(asce)wr.1943-5452.0001152

Creaco, E., Galuppini, G., Campisano, A., Ciaponi, C., & Pezzinga, G. (2020). A Bi-Objective Approach for Optimizing the Installation of PATs in Systems of Transmission Mains. Water, 12(2), 330. doi:10.3390/w12020330

Bonthuys, G. J., van Dijk, M., & Cavazzini, G. (2020). Energy Recovery and Leakage-Reduction Optimization of Water Distribution Systems Using Hydro Turbines. Journal of Water Resources Planning and Management, 146(5), 04020026. doi:10.1061/(asce)wr.1943-5452.0001203

Alberizzi, J. C., Renzi, M., Righetti, M., Pisaturo, G. R., & Rossi, M. (2019). Speed and Pressure Controls of Pumps-as-Turbines Installed in Branch of Water-Distribution Network Subjected to Highly Variable Flow Rates. Energies, 12(24), 4738. doi:10.3390/en12244738

Rossi, M., Nigro, A., Pisaturo, G. R., & Renzi, M. (2019). Technical and economic analysis of Pumps-as-Turbines (PaTs) used in an Italian Water Distribution Network (WDN) for electrical energy production. Energy Procedia, 158, 117-122. doi:10.1016/j.egypro.2019.01.055

Pérez-Sánchez, M., Sánchez-Romero, F., Ramos, H., & López-Jiménez, P. (2016). Modeling Irrigation Networks for the Quantification of Potential Energy Recovering: A Case Study. Water, 8(6), 234. doi:10.3390/w8060234

Ramos, H. M., Zilhao, M., López-Jiménez, P. A., & Pérez-Sánchez, M. (2019). Sustainable water-energy nexus in the optimization of the BBC golf-course using renewable energies. Urban Water Journal, 16(3), 215-224. doi:10.1080/1573062x.2019.1648529

Novara, D., & McNabola, A. (2018). A model for the extrapolation of the characteristic curves of Pumps as Turbines from a datum Best Efficiency Point. Energy Conversion and Management, 174, 1-7. doi:10.1016/j.enconman.2018.07.091

Pérez-Sánchez, M., Sánchez-Romero, F. J., Ramos, H. M., & López-Jiménez, P. A. (2020). Improved Planning of Energy Recovery in Water Systems Using a New Analytic Approach to PAT Performance Curves. Water, 12(2), 468. doi:10.3390/w12020468

Del Teso, R., Gómez, E., Estruch-Juan, E., & Cabrera, E. (2019). Topographic Energy Management in Water Distribution Systems. Water Resources Management, 33(12), 4385-4400. doi:10.1007/s11269-019-02375-9

Stepanoff, A. J. (1957). Radial- und Axialpumpen. doi:10.1007/978-3-662-25101-0

Yang, S.-S., Derakhshan, S., & Kong, F.-Y. (2012). Theoretical, numerical and experimental prediction of pump as turbine performance. Renewable Energy, 48, 507-513. doi:10.1016/j.renene.2012.06.002

Barbarelli, S., Amelio, M., & Florio, G. (2017). Experimental activity at test rig validating correlations to select pumps running as turbines in microhydro plants. Energy Conversion and Management, 149, 781-797. doi:10.1016/j.enconman.2017.03.013

Fernandes, J. F. P., Pérez-Sánchez, M., da Silva, F. F., López-Jiménez, P. A., Ramos, H. M., & Branco, P. J. C. (2019). Optimal energy efficiency of isolated PAT systems by SEIG excitation tuning. Energy Conversion and Management, 183, 391-405. doi:10.1016/j.enconman.2019.01.016

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