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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >The Seawater Greenhouse in the United Arab Emirates:thermal modelling and evaluation of design options
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The Seawater Greenhouse in the United Arab Emirates:thermal modelling and evaluation of design options

机译:阿拉伯联合酋长国的海水温室:热建模和设计方案评估

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摘要

The Seawater Greenhouse combines a solar desalination system with an environment for cultivating crops in which transpiration is minimised.Results from the prototype greenhouse in the United Arab Emirates(UAE)are used to calibrate a computational fluid dynamic(CFD)model.With the UAE design taken as a baseline,the model is used to evaluate three proposed options for improving performance.These differ with respect to how the plants are shaded and how air flows through the greenhouse.In the baseline design,a semi-opaque plastic sheet is used to provide shade.The first option uses a similar sheet;however the air flows in a C-shaped path,travelling in opposite directions above and below the sheet.The second option uses a perforated sheet through which air is drawn.In the third option,an array of plastic pipes carrying seawater provides shade.The warmed seawater from the pipes is fed into the back evaporator to boost fresh water production.We present results for freshwater production,evapotranspiration and temperatures inside the greenhouse,covering a range of ventilation airflows.The first option gives only marginal improvements in freshwater production and cooling.In contrast,the second option significantly increases water production.Air temperature in the greenhouse increases,whereas the mean radiant temperature decreases.The third option gives the greatest increase in water production in addition to slightly lower air temperature in the greenhouse and significantly lower mean radiant temperature.Evapotranspiration varied little over all the cases studied.The reasons for these findings and their implications for the design of the system are discussed.
机译:海水温室结合了太阳能淡化系统和可最大程度减少蒸腾作用的农作物种植环境。阿拉伯联合酋长国(UAE)原型温室的结果用于校准计算流体动力学(CFD)模型。该模型以基线为基准,用于评估三种改善性能的建议方案。这在植物的遮荫方式和空气如何通过温室方面有所不同。在基线设计中,使用半透明的塑料板提供阴影。第一个选项使用相似的纸张;但是空气以C形路径流动,在纸张的上方和下方以相反的方向行进;第二个选项使用穿孔的纸张吸取空气。在第三个选项中,一系列装有海水的塑料管提供了遮荫。管中加热的海水被送入后蒸发器,以提高淡水产量。我们介绍了淡水生产,蒸发器的结果温室内的吸气和温度,覆盖了一系列的通风气流。第一种选择仅在淡水生产和冷却方面提供了少量改进。相反,第二种选择显着增加了水的生产。温室中的空气温度升高,而平均辐射温度升高除温室气体温度略低和平均辐射温度明显降低外,第三种方法最大程度地增加了水的生产量。在所有研究的案例中,蒸发蒸腾变化不大。这些发现的原因及其对设计的影响该系统进行了讨论。

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