Converting a Water Pressurized Network in a Small Town into a Solar Power Water System

The efficient management of water and energy is one challenge for managers of water pressurized systems. In a scheme with high pressure on the environment, solar power appears as an opportunity for nonrenewable energy expenditure reduction and emissions elimination. In Spain, new legislation that el...

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Main Authors: Miguel Ángel Pardo, Héctor Fernández, Antonio Jodar-Abellan
Format: Article
Language:English
Published: MDPI AG 2020-08-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/15/4013
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spelling doaj-645576a529e64f6ca17547b53bd496792020-11-25T01:55:58ZengMDPI AGEnergies1996-10732020-08-01134013401310.3390/en13154013Converting a Water Pressurized Network in a Small Town into a Solar Power Water SystemMiguel Ángel Pardo0Héctor Fernández1Antonio Jodar-Abellan2Department of Civil Engineering, University of Alicante, 03690 Alicante, SpainCiclo Hídrico, Diputación de Alicante, 03690 Alicante, SpainUniversity Institute of Water and Environmental Sciences, University of Alicante, 03690 Alicante, SpainThe efficient management of water and energy is one challenge for managers of water pressurized systems. In a scheme with high pressure on the environment, solar power appears as an opportunity for nonrenewable energy expenditure reduction and emissions elimination. In Spain, new legislation that eliminates old taxes associated with solar energy production, a drop in the cost of solar photovoltaic modules, and higher values of irradiance has converted solar powered water systems into one of the trendiest topics in the water industry. One alternative to store energy (compulsory in standalone photovoltaic systems) when managing pressurized urban water networks is the use of head tanks (tanks accumulate water during the day and release it at night). This work intends to compare the pressurized network running as a standalone system and a hybrid solution that incorporates solar energy supply and electricity grids. The indicator used for finding the best choice is the net present value for the solar power water system lifespan. This study analyzed the possibility of transferring the energy surplus obtained at midday to the electricity grid, a circumstance introduced in the Spanish legislation since April 2019. We developed a real case study in a small town in the Alicante Province, whose findings provide planning policymakers with very useful information in this case and similar case studieshttps://www.mdpi.com/1996-1073/13/15/4013standalone water pressurized networksnet present valuehead tankssurplus energy
collection DOAJ
language English
format Article
sources DOAJ
author Miguel Ángel Pardo
Héctor Fernández
Antonio Jodar-Abellan
spellingShingle Miguel Ángel Pardo
Héctor Fernández
Antonio Jodar-Abellan
Converting a Water Pressurized Network in a Small Town into a Solar Power Water System
Energies
standalone water pressurized networks
net present value
head tanks
surplus energy
author_facet Miguel Ángel Pardo
Héctor Fernández
Antonio Jodar-Abellan
author_sort Miguel Ángel Pardo
title Converting a Water Pressurized Network in a Small Town into a Solar Power Water System
title_short Converting a Water Pressurized Network in a Small Town into a Solar Power Water System
title_full Converting a Water Pressurized Network in a Small Town into a Solar Power Water System
title_fullStr Converting a Water Pressurized Network in a Small Town into a Solar Power Water System
title_full_unstemmed Converting a Water Pressurized Network in a Small Town into a Solar Power Water System
title_sort converting a water pressurized network in a small town into a solar power water system
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2020-08-01
description The efficient management of water and energy is one challenge for managers of water pressurized systems. In a scheme with high pressure on the environment, solar power appears as an opportunity for nonrenewable energy expenditure reduction and emissions elimination. In Spain, new legislation that eliminates old taxes associated with solar energy production, a drop in the cost of solar photovoltaic modules, and higher values of irradiance has converted solar powered water systems into one of the trendiest topics in the water industry. One alternative to store energy (compulsory in standalone photovoltaic systems) when managing pressurized urban water networks is the use of head tanks (tanks accumulate water during the day and release it at night). This work intends to compare the pressurized network running as a standalone system and a hybrid solution that incorporates solar energy supply and electricity grids. The indicator used for finding the best choice is the net present value for the solar power water system lifespan. This study analyzed the possibility of transferring the energy surplus obtained at midday to the electricity grid, a circumstance introduced in the Spanish legislation since April 2019. We developed a real case study in a small town in the Alicante Province, whose findings provide planning policymakers with very useful information in this case and similar case studies
topic standalone water pressurized networks
net present value
head tanks
surplus energy
url https://www.mdpi.com/1996-1073/13/15/4013
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AT hectorfernandez convertingawaterpressurizednetworkinasmalltownintoasolarpowerwatersystem
AT antoniojodarabellan convertingawaterpressurizednetworkinasmalltownintoasolarpowerwatersystem
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