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Modeling and optimization of hybrid wind-solar-powered reverse osmosis water desalination system in Saudi Arabia

机译:沙特阿拉伯风光互补混合反渗透海水淡化系统的建模与优化

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摘要

A hybrid wind/solar powered reverse osmosis desalination system has been modeled and simulated. The results of the simulation have been used to optimize the system for the minimum cost per cubic meter of the desalinated water. The performance of the hybrid wind/solar powered RO system has been analyzed under Dhahran, Saudi Arabia, weather data for a typical year. The performance has been evaluated under a constant RO load of 1 kW for 12 h/day and 24 h/day. The simulation results revealed that the optimum system that powers a 1-kW RO system for 12 h/day that yields a minimum levelized cost of energy comprises 2 wind turbines, 40 PVs modules and 6 batteries and the levelized cost of energy of such system is found to be 0.624 $/kW h. On the other hand, for a load of 1-kW for 24 h/day, the optimum system consists of 6 wind turbines, 66 PVs modules and 16 batteries with a minimum levelized cost of energy 0.672 $/kW h. Depending on the salinity of the raw water, the energy consumption for desalination ranges between 8 and 20 kW h/m~3. This means that the cost of using the proposed optimum hybrid wind/solar system for water desalination will range between $3.693/m~3 and $3. 812/m~3 which is less than the range reported in the literature.
机译:混合风/太阳能动力反渗透淡化系统已建模和仿真。仿真结果已用于优化系统,以使每立方米的淡化水成本最低。在沙特阿拉伯的达兰市,根据典型年份的天气数据分析了混合风/太阳能反渗透系统的性能。在1 kW的恒定RO负荷下12 h / day和24 h / day的性能已得到评估。仿真结果表明,为1千瓦反渗透系统供电12小时/天并产生最低平准化能源成本的最佳系统包括2台风力涡轮机,40个PVs模块和6个电池,该系统的平准化能源成本为发现为0.624 $ / kW h。另一方面,对于每天24小时每天1千瓦的负载,最佳系统包括6个风力涡轮机,66个PV组件和16个电池,其最低平均能源成本为0.672 $ / kW h。根据原水的盐度,脱盐的能耗在8至20 kW h / m〜3之间。这意味着使用建议的最佳混合风/太阳能系统进行海水淡化的成本在$ 3.693 / m〜3和$ 3之间。 812 / m〜3,小于文献报道的范围。

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