Optimal Arrangements of Renewable Energy Systems for Promoting the Decarbonization of Desalination Plants

Author:

Avila Prats Deivis1ORCID,San Luis Gutiérrez Felipe1,Hernández López Ángela1ORCID,Marichal Plasencia Graciliano Nicolás1

Affiliation:

1. Higher Polytechnic School of Engineering (EPSI), University of La Laguna, 38001 Tenerife, Spain

Abstract

In this research, a renewable energy hybrid system (PV-Wind) is modeled to compare different design options based on their economic and technical features. The energy requirements of a Reversible Osmosis desalination plant located on the island of Tenerife with a water production capacity of up to 20,000 m3/day was considered. The system is connected to the electricity grid. The HOMER software, version 2.75 was used to produce optimum strategies for renewable energy. The assumptions input into the model were: the technical specifications of the devices, electricity demand of the desalination plant, as well as the solar radiation and the wind speed potentials. Numerous arrangements were considered by the software, version 2.75. The optimal results were obtained based on the use of renewable energy. The data used in the study were recorded in Tenerife in the Canary Islands. The experience of this research could be transferred to other Atlantic islands with similar renewable energy sources (specifically the wind) and water scarce conditions.

Publisher

MDPI AG

Reference45 articles.

1. Reboso, J.V. (2024, July 02). Current State of Water Resources in the Canary Islands. MITIMAC Project Report. Available online: https://accedacris.ulpgc.es/bitstream/10553/127051/1/211ULPGC11.pdf.

2. Instituto Tecnológico de Canarias (ITC), (Canary Islands Institute of Technology) (2024, July 02). Desal+ Living Lab Results Report 2017–2022. Available online: https://www.desalinationlab.com/wp-content/uploads/2023/03/Memoria-de-resultados-DESAL-Living-Lab-2017-2022-2.pdf.

3. Azar, A.T., and Kamal, N.A. (2021). Chapter 2—Hybrid renewable energy systems for energy supply to autonomous desalination systems on Isolated Islands. Design, Analysis, and Applications of Renewable Energy Systems, Academic Press.

4. Carbon neutral archipelago-100% renewable energy supply for the Canary Islands;Gils;Appl. Energy,2017

5. Avila, D., Marichal, G.N., Quiza, R., and San Luis, F. (2021). Prediction of Wave Energy Transformation Capability in Isolated Islands by Using the Monte Carlo Method. J. Mar. Sci. Eng., 9.

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