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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Integration of hybrid power (wind-photovoltaic-diesel-battery) and seawater reverse osmosis systems for small-scale desalination applications
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Integration of hybrid power (wind-photovoltaic-diesel-battery) and seawater reverse osmosis systems for small-scale desalination applications

机译:用于小型脱盐应用的混合动力(风光 - 柴油机电池)和海水反渗透系统的集成

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摘要

Desalination is a method used to produce water for human consumption and/or industrial use. Seawater treatment systems powered by renewable sources are regarded as sustainable methods for providing drinking water for coastal zones and islands where there is no electrical grid. This study evaluated the operations of seven different (off-grid) power systems (wind-photovoltaic-diesel-battery) used to satisfy the electrical energy demand of a small-scale reverse osmosis system with a capacity of 1 m(3)/h used on Bozcaada Island, Turkey. The hybrid optimisation model for electric renewable (HOMER) software was selected to perform techno-economic analyses of the systems. On the other hand, the reverse osmosis system analysis model (ROSA) was used to determine the energy requirement of the reverse osmosis system examined in this study. The results of this study showed that the electricity cost was $0.308/kWh for the optimal system consisting of wind turbines with a rated power of 10 kW, a 20 kW IN panel, and a diesel generator with a rated power of 8.90 kW, while the water cost was $2.20/m(3). Additionally, the results showed that combining the hybrid power system and reverse osmosis system could be a cost-effective method for remote areas with good wind and solar power potential.
机译:脱盐是一种用于生产用于人类消费和/或工业用途水的方法。由可再生能源提供动力的海水处理系统被视为为沿海地区和没有电网的岛屿提供饮用水的可持续方法。本研究评估了七种不同(离网)电力系统(风光 - 柴油 - 电池)的操作,用于满足小规模反渗透系统的电能需求,容量为1米(3)/ h用于Bozcaada岛,土耳其。选择了电动可再生(HOMER)软件的混合优化模型,以执行系统的技术经济分析。另一方面,反渗透系统分析模型(ROSA)用于确定本研究中检测的反渗透体系的能量需求。该研究的结果表明,电力成本为0.308 /千瓦时,由风力涡轮机组成的风力涡轮机,额定功率为10千瓦,面板为20千瓦,柴油发电机,额定功率为8.90千瓦,而水费为2.20 / m(3)。另外,结果表明,混合动力系统和反渗透系统可以是具有良好风力和太阳能电位的偏远地区的成本效益的方法。

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