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Complementarity in Time between Hydro, Wind and Solar Energy Resources in the State of Rio Grande do Sul, in Southern Brazil

机译:在巴西南部Rio Grande Do Sul州水电,风和太阳能资源之间的互补性

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This work studies the complementarity between hydro, wind and solar photovoltaic energy in the Brazilian state of Rio Grande do Sul. Brazil is a country highly dependent on hydro energy; however, the existent plants are not being able to cover the energy demand in recent years. In this context, the state of Rio Grande do Sul becomes important because of its potential for wind and solar photovoltaic energy, having complementarity between water, wind and solar photovoltaic schemes when hydroelectric reservoirs are at their lowest levels. This study aims to survey the complementarity of various parts of Rio Grande do Sul by proposing mathematical dimensionless ratios, focusing on intra-annual period to carry out a mapping of the entire state. It also analyses the ability to provide power supply throughout the year, through the stabilization of the energy supply, which depends on an adequate scale for photovoltaic, wind power and hydroelectric harnessing. According to the results obtained, the regions with the best complementarity indexes for deployment of a hybrid system in relation to water and wind power were the Metropolitan Region of Porto Alegre and the Southeast region, and the same regions also presented the best results for the complementarity between hydro and solar photovoltaic. Regarding wind and solar photovoltaic energy, the state’s northeast region presented the best results. Finally, the Northeast region of the state also presented the best results for the three energies together.
机译:这项工作研究了水电,风和太阳能光伏能量之间的互补性,在里约热内林德华州巴西州。巴西是一个高度依赖水力能量的国家;然而,现有的植物近年来无法弥补能源需求。在这种情况下,RIO Grande Do Sul的状态由于其风力和太阳能光伏能量的潜力而变得重要,当水电储层处于最低水平时,在水,风和太阳能光伏方案之间具有互补性。本研究旨在通过提出数学无量纲比率来调查Rio Grande Do Sul的各个部分的互补性,专注于年度内部期间进行整个状态的绘图。它还通过稳定能源供应来分析全年提供电源的能力,这取决于光伏,风电和水电利用的足够规模。根据所得的结果,具有用于部署与水和风力发电的混合系统的最佳互补指标的区域是波尔图阿尔格尔和东南部地区的大都会区,同一地区也为互补性呈现了最佳效果水电和太阳能光伏之间。关于风和太阳能光伏能源,国家的东北地区呈现了最佳效果。最后,国家东北地区也为三个能量呈现在一起的最佳成果。

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