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Systemic design and energy management of a standalone battery-less PV/Wind driven brackish water reverse osmosis desalination system

机译:独立电池的全身设计和能量管理 - 较少的PV /风驱动咸水反渗透脱水系统

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This work investigates a small-scale reverse osmosis desalination system dedicated for off-grid communities lacking freshwater. This system, constituted of motor-pumps, desalination process and hydraulic network (pipes and valves), is powered by hybrid photovoltaic-wind turbine source. It exploits hydraulic storage in water tanks filled when renewable energy is available instead of electrochemical storage. Such specificity makes the power/freshwater supply a challenging issue for these communities. To maximize freshwater production of this autonomous system, a "systemic design approach" integrating couplings between architecture, sizing, and energy management is proposed. According to the specific system architecture and its component sizing, a specific quasistatic model-based energy management strategy (EMS) is developed. In this regard, the influence of the main component sizing on the system energy efficiency and the EMS performance is analyzed. This study proved the strongly coupling between power/water management and pump sizing. According to the iterative process of the systemic design approach, simulation results showed that the EMS objective is reached by increasing the brackish water storage tank capacity and improving the system energy efficiency. The latter is achieved by choosing the pumps-combination composed of three pumps having the lowest rated powers (0.37 kW/0.37 kW/1.5 kW), but offering higher energy efficiency over other analyzed pumps-combinations.
机译:这项工作调查了专门针对缺乏淡水的离网社区的小规模反渗透脱水系统。该系统由电动泵,脱盐工艺和液压网络(管道和阀门)构成,由混合光伏 - 风力涡轮机源供电。它在可再生能源可用而不是电化学储存时,它利用水箱中的液压储存。这些特殊性使得电力/淡水供给这些社区的具有挑战性的问题。为了最大化这种自主系统的淡水生产,提出了一种“全身设计方法”集成架构,尺寸和能源管理之间的联轴器。根据特定的系统架构及其组件尺寸,开发了一种基于特定的基于Quasistatic模型的能量管理策略(EMS)。在这方面,分析了主要成分尺寸对系统能效和EMS性能的影响。这项研究证明了电力/水管理与泵尺寸之间的强烈耦合。根据全身设计方法的迭代过程,仿真结果表明,通过增加咸水储罐容量并提高系统能效,达到了EMS目标。后者通过选择由具有最低额定功率的三个泵组成的泵组合(0.37kW / 0.37kW / 1.5 kW)来实现,但在其他分析的泵组合中提供更高的能量效率。

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