A dimensionless index evaluating the time complementarity between solar and hydraulic energies

The power plants based on renewable sources face various acceptance difficulties mainly due to high initial costs and low overall efficiencies. A way to improve performance of these systems is to utilize more than one type of source of energy chosen to provide some degree of complementarity. An inte...

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Veröffentlicht in:Renewable energy 2008-10, Vol.33 (10), p.2157-2165
Hauptverfasser: Beluco, Alexandre, de Souza, Paulo Kroeff, Krenzinger, Arno
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container_issue 10
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container_title Renewable energy
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creator Beluco, Alexandre
de Souza, Paulo Kroeff
Krenzinger, Arno
description The power plants based on renewable sources face various acceptance difficulties mainly due to high initial costs and low overall efficiencies. A way to improve performance of these systems is to utilize more than one type of source of energy chosen to provide some degree of complementarity. An interesting, albeit improbable, combination is obtained using hydroelectric and photovoltaic energy, taking advantage of the complementarity between these two types of sources coupled to reservoir and/or battery storage. This paper discusses energy complementarity in time and proposes a numerical dimensionless index, evaluating this energy complementarity between two types of energy sources, in the same or in different locations, or between two sources of the same type in different locations. In the end, the results of the application of this index to the solar and water availabilities over the state of Rio Grande do Sul, in southern Brazil, is presented in the form of maps.
doi_str_mv 10.1016/j.renene.2008.01.019
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subjects Applied sciences
Economic data
Electric energy
Energetic complementarity
Energy
Energy economics
Exact sciences and technology
General, economic and professional studies
Hybrid energy systems
Methodology. Modelling
Micro-hydropower
Natural energy
Renewable resources
Solar energy
title A dimensionless index evaluating the time complementarity between solar and hydraulic energies
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