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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Numerican analysis of an integrated desalination unit using humidification-dehumidification and subsurface condensation processes
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Numerican analysis of an integrated desalination unit using humidification-dehumidification and subsurface condensation processes

机译:利用加湿除湿和地下冷凝工艺数值分析综合脱盐装置

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摘要

In the present study a solar water desalination system with humidification-dehumidification (HD) cycle is designed, integrating a solar still (as a solar humidifier) and a new subsurface condensation mechanism. Mass and energy balances are written for both solar humidifier and subsurface condenser in thermodynamic analysis of the system. Obtained nonlinear equations are analyzed numerically to explore the impact of the cycles parameters on fresh water production. The results of the analysis indicate that the rate of water production can reach above 264.86 (kg/day) and the produced water, passing through the pores on the tubes, can be used to irrigate plant roots or collected as drinking water. According to this design and numerical simulation, it is demonstrated that the new subsurface condensation can be a promising strategy for subsurface irrigation method; and the new mechanism allows farmers to use saline water for agricultural purposes by utilizing solar energy, particularly in arid areas.
机译:在本研究中,设计了具有加湿除湿(HD)循环的太阳能水海水淡化系统,整合着太阳能(作为太阳加湿器)和新的地下冷凝机构。在系统热力学分析中,为Solar Humidifier和地下电容器编写了质量和能量余额。在数值上分析获得的非线性方程以探讨循环参数对淡水生产的影响。分析结果表明,水产率可达264.86(千克/天)和生产的水,通过管上的毛孔,可用于灌溉植物根或收集为饮用水。根据这种设计和数值模拟,证明新的地下冷凝可以是地下灌溉方法的有希望的策略;而新机制使农民通过利用太阳能,特别是在干旱地区来使用农业用水盐水。

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