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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Effect of different carrier gases on productivity enhancement of a novel multi-effect vertical concentric tubular solar brackish water desalination device
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Effect of different carrier gases on productivity enhancement of a novel multi-effect vertical concentric tubular solar brackish water desalination device

机译:不同载气对新型多效垂直同心管太阳咸水脱盐装置生产率增强的影响

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AbstractA novel multi-effect vertical concentric tubular solar brackish water desalination device is introduced in present study. The device consists of four closely spaced concentric pipes, in which the feed water gets preheated by hot brine water to guarantee the evaporation efficiency. An experimental investigation and analytical analysis were carried out to signify the effect of carrier gas-water vapor mixture on productivity enhancement of the device. Different carrier gases were used in the performance evaluation: carbon dioxide, helium, nitrogen, oxygen, air and argon. The water yield and the top/bottom temperature values of condensation surface of the device with different carrier gases were tested. In addition, the present investigation is presented an approach to predict the theory yield based on the internal heat and mass transfer mechanism. The experimental results indicate that, when the heating temperature is 80?°C and the carrier gas is helium, the water productivity rate can reach to 1.19?kg/h. It is increased by 30.76% than the carrier gas of air. The numerical results had been calculated and a consistent agreement with the experimental results had been obtained of different operation temperatures. TheDvunder different heating temperature were obtained according to the experimental results.Highlights?A novel multi-effect vertical tubular solar desalination device is described.?The prediction expression of the water production rate is given.?Different carrier gases are used to enhance the yield of the device.?The obtained maximum yield of the helium was about 1.19?kg/h.]]>
机译:<![cdata [ 抽象 在本研究中介绍了一种新型多效垂直同心管太阳能吹水装置。该装置由四个紧密间隔的同心管组成,其中进料水通过热盐水预热,以保证蒸发效率。进行了实验研究和分析分析,以表示载气蒸气混合物对装置生产率增强的影响。在性能评价中使用不同的载气:二氧化碳,氦气,氮气,氧气,空气和氩气。测试了具有不同载气的装置的冷凝表面的水产量和顶/底温度值。此外,提出了本研究的方法来预测基于内部热量和传质机制的理论产量。实验结果表明,当加热温度为80Ω·℃并且载气是氦气时,水生产率率可以达到1.19 kg / h。它比空气的载气增加了30.76%。已经计算了数值结果,并与实验结果一致的一致性得到了不同的操作温度。 d v 根据不同的加热温度下获得实验结果。 突出显示 < CE:列表ID =“l0005”> 一部小说描述多效垂直管状太阳脱盐装置。 < CE:PARA ID =“P0010”View =“全部”>给出了水生产率的预测表达。 不同的载气是u SED以增强设备的产量。 获得的氦的最大产量约为1.19?kg / h。 ]]>

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