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首页> 外文期刊>Renewable energy >Design of photovoltaic powered reverse osmosis desalination systems considering membrane fouling caused by intermittent operation
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Design of photovoltaic powered reverse osmosis desalination systems considering membrane fouling caused by intermittent operation

机译:考虑间歇运行引起的膜污染的光伏反渗透淡化系统设计

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Photovoltaic powered reverse osmosis systems are stand-alone water purification systems with the potential to provide a secure drinking water supply to remote off-grid communities. These systems are often operated intermittently with extended shut-down periods to accommodate the variability of renewable energy. This work presents a novel design tool for photovoltaic powered reverse osmosis installations which considers membrane fouling during intermittent operation to ensure more reliable and long-lasting systems. The tool uses a genetic algorithm coupled to a simulation model composed of a physical system model and a cost model to evaluate the system cost. The physical model determines the local energy production. The water system model uses an experimentally validated membrane fouling model to determine the water production. Several case studies (variable location, water production, and reliability) were used to demonstrate the method. In conclusion, the results show that incorporating the fouling model was essential to design reliable and cost-optimal systems. The method showed for smaller daily water demand, the system configuration did not vary with location, indicating they can be mass-produced. The design framework will aid in the configuration of low-cost photovoltaic powered reverse osmosis systems that are reliable throughout the system life. (C) 2018 Published by Elsevier Ltd.
机译:光伏反渗透系统是独立的净水系统,具有为偏远的离网社区提供安全饮用水的潜力。这些系统通常在延长的停机时间下间歇运行,以适应可再生能源的变化。这项工作提出了一种用于光伏反渗透装置的新颖设计工具,该工具考虑了间歇运行过程中的膜污染,以确保系统更可靠,使用寿命更长。该工具将遗传算法与包含物理系统模型和成本模型的仿真模型相结合,以评估系统成本。物理模型决定了当地的能源生产。水系统模型使用经过实验验证的膜污染模型来确定水的产量。几个案例研究(位置可变,产水量和可靠性)用于证明该方法。总之,结果表明,采用结垢模型对于设计可靠且成本最优的系统至关重要。该方法显示出每日需水量较小,系统配置并未随位置而变化,表明它们可以大量生产。该设计框架将有助于配置低成本的光伏供电的反渗透系统,该系统在整个系统生命周期中都是可靠的。 (C)2018由Elsevier Ltd.发布

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