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Combined effects of evaporation and cavitation on the performance of a renewable energy powered natural vacuum desalination unit in Bahrain

机译:蒸发和空化对巴林可再生能源供电的自然真空脱盐装置性能的综合影响

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The renewable energy powered natural vacuum desalination unit (NVDU) presents a promising alternative technique for seawater desalination and wastewater treatment, with low energy consumption, simple technology, and resulting clean environment. The problem of the low daily productivity of the NVDU motivated researchers to investigate various means of improving its productivity and thermal efficiency in order to reduce the production cost of freshwater. This study investigates experimentally the performance of the NVDU under the combined effects of evaporation and cavitation on freshwater production rate. The NVDU consists of an inverse U-shaped pipe, with one side acting as the evaporator and the other side as the condenser. The experiments were conducted under three different sets of conditions. The first had ambient conditions on both sides, the second used a water-ring vacuum pump to create a buoyancy effect, and the third was similar to the second set of conditions, but with cooling of the condensation side. The results show that the last case increased the freshwater production rate by approximately 70 times compared to the first case, while in the second case, the production rate was roughly 13 times better than in the first. These results could be attributed to the combined effects of evaporation and cavitation. This attribution is supported by the visualization of bubble motions.
机译:可再生能源驱动的自然真空脱盐装置(NVDU)提供了一种有前途的替代技术,可用于海水淡化和废水处理,具有能耗低,技术简单以及清洁的环境。 NVDU日生产率低的问题促使研究人员研究各种提高其生产率和热效率的方法,以降低淡水的生产成本。这项研究实验性地研究了蒸发和空化对淡水生产率的综合影响下NVDU的性能。 NVDU由倒U形管组成,一侧用作蒸发器,另一侧用作冷凝器。实验是在三组不同的条件下进行的。第一个在两侧都有环境条件,第二个使用水环真空泵产生浮力效果,第三个与第二组条件相似,但冷凝侧冷却。结果表明,与第一种情况相比,最后一种情况将淡水生产率提高了约70倍,而在第二种情况下,其生产率比第一种情况提高了约13倍。这些结果可以归因于蒸发和空化的综合作用。气泡运动的可视化支持这种归因。

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