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Performance assessment of a wind driven membrane desalination unit in Saudi Arabia

机译:沙特阿拉伯风驱动膜淡化装置的性能评估

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Situated in a mostly desert area, the kingdom of Saudi Arabia (KSA) ?faces? the continuous challenge of satisfyingwater needs of its growing population and industry.Currently, more than half of water demandsof the kingdom are satisfied by sea or brackish water desalination plants. But even with the country being an oil producer, desalination is an energy intensive industrymaking the investment in this field a costly process.Thermal desalination plants are also large pollutants. Therefore cheaper and cleaner alternative sources of power are required to provide lower cost desalination solutions. Wind power is an attractive option to be integrated with desalination technologies. This paper investigates the potential utilization of wind energy to drive a reverse osmosis (RO) desalination unit to produce fresh water from brackish water in the Saudi Arabian gulf region.? The analysis proved the capability of existing wind power to operate RO desalination units within acceptable performance standards. For a two stages process with an energy recovery device, 60% recovery rate can be achieved and the energy consumption can be kept within 0.5~2 kWh/m 3 based on the local available wind power. An acceptable RO operation can also be sustained in the presence of mild fluctuationsin wind power.
机译:沙特阿拉伯王国(KSA)地处沙漠地区,面目全非?满足其不断增长的人口和工业用水需求的持续挑战。目前,该国一半以上的用水需求是通过海水或咸淡水淡化厂来满足的。但是,即使该国是石油生产国,海水淡化也是一个能源密集型产业,这使得在该领域的投资成为昂贵的过程。热海水淡化厂也是大量污染物。因此,需要更便宜和更清洁的替代电源来提供低成本的脱盐解决方案。风电是与海水淡化技术集成的有吸引力的选择。本文研究了利用风能驱动反渗透淡化装置从沙特阿拉伯海湾地区的微咸水中生产淡水的潜力。分析证明了现有风能在可接受的性能标准内运行反渗透淡化装置的能力。对于具有能量回收装置的两阶段工艺,基于当地的可用风能,可实现60%的回收率,并且能耗可保持在0.5〜2 kWh / m 3之内。在风力轻微波动的情况下,也可以维持可接受的反渗透运行。

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