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An innovative psychometric solar-powered water desalination system

机译:一种创新的心理测量太阳能水海水淡化系统

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摘要

Important advances have been made in solar water desalination technology but their wide application is restricted by relatively high capital and running costs. Until recently, solar concentrator collectors had usually been employed to distill water in compact desalination systems. Currently, it is possible to replace these collectors by the more efficient evacuated tube collectors, which are now widely available on the market at lower prices. This paper describes the results of experimental and theoretical investigations of the operation of a novel small-scale solar water desalination technology using the psychometric humidification and dehumidification process coupled with a heat pipe evacuated tube solar collector with an aperture area of ~1.73 m2. Solar radiation during spring in the Middle East was simulated by an array of halogen floodlights. A synthetic brackish water solution was used for the tests and its total dissolved solids (TDSs) and electrical conductivity were measured. A mathematical model was developed to describe the system's operation. A computer program was written to solve the system of governing equations to perform the theoretical calculations of the humidification and dehumidification processes. The experimental and theoretical values for the total daily distillate output were found to be closely correlated. The test results demonstrate that, at temperatures of 55-60°C, the system produces ~5-6 kg/h of clean water with a high desalination efficiency. Following the experimental calibration of the mathematical model, it was demonstrated that the performance of the system could be improved to produce a considerably higher amount of fresh water.
机译:太阳能海水淡化技术已取得重要进展,但其广泛应用受到相对较高的资金和运行成本的限制。直到最近,通常使用太阳能集中器收集器在紧凑的脱盐系统中蒸馏水。当前,可以用效率更高的真空管集热器代替这些集热器,现在市场上已经可以以较低的价格广泛使用它们。本文介绍了使用心理测湿加湿过程结合孔径为〜1.73 m2的热管真空管太阳能集热器的新型小规模太阳能淡化技术运行的实验和理论研究结果。通过一系列卤素泛光灯模拟了中东春季的太阳辐射。测试使用合成微咸水溶液,并测量其总溶解固体(TDS)和电导率。开发了一个数学模型来描述系统的操作。编写了一个计算机程序来求解控制方程式系统,以执行加湿和除湿过程的理论计算。发现每日总馏出物的实验值和理论值紧密相关。测试结果表明,在55-60°C的温度下,该系统可产生〜5-6 kg / h的净水,并且具有很高的脱盐效率。在对数学模型进行实验校准之后,证明了可以改善系统的性能以产生大量的淡水。

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