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Optimization and assessment of floating and floating-tracking PV systems integrated in on- and off-grid hybrid energy systems

机译:并网和离网混合能源系统中集成的浮动和浮动跟踪光伏系统的优化和评估

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Considering the targets of Thailand in terms of renewable energy exploitation and decarbonization of the shrimp farming sector, this work evaluates several scenarios for optimal integration of hybrid renewable energy systems into a representative shrimp farm. In particular, floating and floating-tracking PV systems are considered as alternatives for the exploitation of solar energy to meet the shrimp farm electricity demand.By developing a dynamic techno-economic simulation and optimization model, the following renewable energy systems have been evaluated: PV and wind based hybrid energy systems, off-grid and on-grid PV based hybrid energy systems, ground mounted and floating PV based hybrid energy systems, and floating and floating-tracking PV based hybrid energy systems.From a water-energy nexus viewpoint, floating PV systems have shown significant impacts on the reduction of evaporation losses, even if the energy savings for water pumping are moderate due to the low hydraulic head. Nevertheless, the study on the synergies between water for food and power production has highlighted that the integration of floating PV represents a key solution for reducing the environmental impacts of shrimp farming. For the selected location, the results have shown that PV systems represent the best renewable solution to be integrated into a hybrid energy system due to the abundance of solar energy resources as compared to the moderate wind resources. The integration of PV systems in off-grid configurations allows to reach high renewable reliabilities up to 40% by reducing the levelized cost of electricity. Higher renewable reliabilities can only be achieved by integrating energy storage solutions but leading to higher levelized cost of electricity. Although the floating-tracking PV systems show higher investment costs as compared to the reference floating PV systems, both solutions show similar competiveness for reliabilities up to 45% due to the higher electricity production of the floating-tracking PV systems. The higher electricity production from the floating-tracking PV systems leads to a better competitiveness for reliabilities higher than 90% due to lower capacity requirements for the storage systems.
机译:考虑到泰国在虾类养殖领域的可再生能源开发和脱碳方面的目标,这项工作评估了几种将混合可再生能源系统最佳整合到有代表性的虾场中的方案。特别是,浮动和浮动跟踪的光伏系统被认为是开发太阳能来满足虾场电力需求的替代方案。通过开发动态技术经济模拟和优化模型,对以下可再生能源系统进行了评估:基于风能的混合能源系统,基于离网和并网PV的混合能源系统,基于地面安装和浮动PV的混合能源系统以及基于浮动和浮动跟踪PV的混合能源系统。浮动式光伏系统已显示出对减少蒸发损失的重要影响,即使由于水压头低而在抽水方面节省的能源也是适度的。然而,对粮食用水和电力生产之间协同作用的研究强调,浮动光伏发电的整合是减少虾类养殖对环境影响的关键解决方案。对于选定的位置,结果表明,与温和的风能相比,由于太阳能资源丰富,光伏系统代表了集成到混合能源系统中的最佳可再生解决方案。光伏系统在离网配置中的集成可通过降低平均电费成本实现高达40%的高可再生可靠性。更高的可再生可靠性只能通过集成储能解决方案来实现,但会导致更高的电力成本。尽管与参考浮动PV系统相比,浮动跟踪PV系统显示出更高的投资成本,但由于浮动跟踪PV系统的发电量更高,因此两种解决方案均显示出相似的竞争力,可靠性最高可达45%。由于存储系统的容量要求较低,浮动式跟踪光伏系统产生的较高电力产生了更高的竞争力(可靠性高于90%)。

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