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首页> 外文期刊>Journal of water reuse and desalination >Size optimization of a hybrid PV/wind/diesel/battery power system for reverse osmosis desalination
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Size optimization of a hybrid PV/wind/diesel/battery power system for reverse osmosis desalination

机译:用于反渗透脱水的混合PV /风/柴油/电池电力系统尺寸优化

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This study was to find the optimal configuration for an independent renewable energy system for reverse osmosis (RO) desalination. The objective was to find the lowest levelized cost of energy (LCOE), with power reliability as the constraint. A genetic algorithm was used to solve the nonlinear integer programming program. A site with brackish groundwater in Arizona, USA was selected. The capacity of the RO system was 18.93 m~3/d (5,000 gal/d), requiring a constant power consumption of 3.95 kW. Two scenarios were considered in terms of diesel generator (DG) allowed running time. The results showed that the optimal configuration was a hybrid photovoltaic/wind/diesel/battery system with 0.56 USD/kWh and the corresponding levelized cost of water 3.84 USD/m~3, when the DG can run in any hour every day. The optimal solution was a hybrid wind/photovoltaic/battery system with 0.69 USD/kWh and 4.48 USD/m~3, when the DG can run between 9 am and 9 pm every day for noise control. Both the two LCOWs were about half of the 7.9 USD/m~3 currently paid by residents that live in the area. Sensitivity analyses showed the LCOE was fairly insensitive to photovoltaic panel tilt angle over a range for both the two configurations.
机译:本研究是为了找到反渗透(RO)脱盐的独立可再生能源系统的最佳配置。目的是找到最低级别的能量(LCoE)成本,具有功率可靠性作为约束。使用遗传算法来解决非线性整数编程程序。选择了美国亚利桑那州的咸水地下水的座位。 RO系统的容量为18.93 m〜3 / d(5,000 GAL / D),需要恒定的功耗为3.95千瓦。在柴油发电机(DG)方面考虑了两种情况允许运行时间。结果表明,最佳配置是一种混合光伏/型柴油/电池/电池系统,0.56美元/千瓦时,水平的水平为3.84美元/ m〜3,当DG每天都可以在任何一小时内运行时。最佳解决方案是混合式风/光伏/电池系统,0.69美元/千瓦时,4.48美元/ m〜3,当DG每天在9点到9点之间,每天噪声控制。两种歌曲都大约有7.9美元/ m〜3的一半,居住在该地区的居民支付。敏感性分析显示LCoE在两种配置的范围内对光伏面板倾斜角度相对不敏感。

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