首页> 外文会议>2nd international conference on energy sustainability 2008 >EXPERIMENTAL AND THEORETICAL INVESTIGATIONS OF PERFORMANCE OF MULTI-STAGE SOLAR STILL WATER DESALINATION UNIT COUPLED WITH AN EVACUATED TUBE SOLAR COLLECTOR
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EXPERIMENTAL AND THEORETICAL INVESTIGATIONS OF PERFORMANCE OF MULTI-STAGE SOLAR STILL WATER DESALINATION UNIT COUPLED WITH AN EVACUATED TUBE SOLAR COLLECTOR

机译:真空管式太阳能集热器与多级太阳能蒸馏水脱盐装置性能的实验和理论研究

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At present scarcity of potable and drinking water is a pressing issue in certain parts of the Middle East region. Important advances have been made in desalination technologies but relatively high capital and running costs restrict their wide application even in cases when solar energy is used. Flat-plate solar collectors mainly have been employed in the past to distill water in compact desalination systems. Currently, it is possible to replace the above collectors by more advanced evacuated tube ones, which are available on the market at a similar price.rnThis paper describes results of experimental and theoretical investigations of the operation of a solar still desalination system coupled with a heat pipe evacuated tube collector with the aperture area of about 1.7 m~2.rnA multi-stage solar still water desalination system was designed to recover latent heat from evaporation and condensation processes in four stages. The variation in the solar radiation (insolation) during a typical mid-summer day in the Middle East region was simulated using an array of 110 halogen flood lights covering the area of the solar collector. The synthetic brackish lab water solution was used for experiments and its total dissolved solids (TDS), electrical conductivity and pH were measured prior to and after the distillation process. The system's operation was numerically simulated using a mathematical model based on the system ofrnordinary differential equations describing mass and energy conservation in each stage of the system.rnThe experimental and theoretical values for the total daily distillate output were found to be in good agreement. The results of tests demonstrate that the system produces about 6.5 kg of clean water per day and have the distillation efficiency equal to 76%. However, the overall efficiency of the laboratory test rig at this stage of investigations was found to be low at the level of 26% and this is due to excessive heat losses in the system. The analysis of the distilled water shows that its quality is within the World Health Organization guidelines. Further research is being performed to improve the performance of the installation.
机译:当前,饮用水和饮用水的短缺是中东地区某些地区的紧迫问题。脱盐技术已经取得了重要的进步,但是相对较高的资金和运行成本限制了它们的广泛应用,即使在使用太阳能的情况下。过去,平板太阳能收集器主要用于紧凑型脱盐系统中的蒸馏水。目前,可以用市场上价格相近的更先进的真空管收集器代替上述收集器。本文介绍了结合热量的太阳能蒸馏器脱盐系统的运行的实验和理论研究结果。孔径为1.7 m〜2.rn的管道抽空集热器,设计了多级太阳能静水淡化系统,可从四个阶段的蒸发和冷凝过程中回收潜热。使用覆盖太阳能集热器区域的110个卤素泛光灯阵列,模拟了中东地区典型的仲夏白天太阳辐射的变化(日照)。使用合成的微咸实验室水溶液进行实验,并在蒸馏过程之前和之后测量其总溶解固体(TDS),电导率和pH。该系统的运行使用数学模型进行了数值模拟,该数学模型基于描述系统各个阶段的质量和能量守恒的常规微分方程系统。发现每日总馏出物的实验值与理论值吻合良好。测试结果表明,该系统每天可产生约6.5千克的纯净水,并且蒸馏效率等于76%。但是,在此阶段的研究中,试验台的总体效率较低,仅为26%,这是由于系统中的热量过多损失所致。对蒸馏水的分析表明,蒸馏水的质量在世界卫生组织的准则之内。正在进行进一步的研究以提高安装性能。

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