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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Thermal modeling based on solar fraction and experimental study of the annual and seasonal performance of a single slope passive solar still:The effect of water depths
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Thermal modeling based on solar fraction and experimental study of the annual and seasonal performance of a single slope passive solar still:The effect of water depths

机译:基于太阳分数的热模型和单斜被动太阳静止年年和季节性能的实验研究:水深的影响

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摘要

This paper reports on the annual as well as seasonal performance analysis for different water depths in a single slope passive solar still of cover inclination of 30°.The experiments were conducted through out the year from June 2004 to May 2005 on six clear days of every month for 24 hours a day,for six different water depths.This experimental set up has been installed at the HT Delhi,New Delhi,India the latitude of which is 28.35'N.The lower depth has been found giving the highest annual yield.Increasing the water depth decreases the yield of the still up to depths of about 0.1 m but at greater depths than this the yield becomes almost constant.The developed thermal model has validated the hourly yield for various water depths in summer and winter.The various modes of internal energy transfer within still have been evaluated and compared relatively for different depths and seasons.The dominance of evaporative fraction within 32-37°C has been noticed depending on the water depth under consideration.The concept of solar fraction and hourly values of solar azimuth and altitude angles has been used in thermal modeling to predict different parameters.The experimental value of yield of different water depth has been compared with the theoretical values obtained by thermal modeling and found in agreement.The effect of various parameters like ambient air velocities,basin absorptivity have been found and compared for the different water depths in still.The above results reported in detail within this paper have been found in accordance to the results obtained by earlier researchers.
机译:本文报告了覆盖度为30°的单个坡度被动太阳蒸馏器中不同水深的年度和季节性性能分析。该实验在2004年6月至2005年5月的整个一年中进行,每年每6个晴天这项试验装置已安装在印度新德里的HT德里,其纬度为28.35'N,每天24小时,每天有六个不同的水深。该较低的水深提供了最高的年产量。增加水深会降低仍然达到约0.1 m的深度的产量,但在更大的深度处,产量几乎是恒定的。开发的热模型已经验证了夏季和冬季各种水深的小时产量。仍然评估并比较了不同深度和季节内的内部能量传递。根据水的深度,已经注意到在32-37°C内蒸发分数占优势。热模型中使用了太阳分数和太阳方位角以及高度角的小时值的概念来预测不同的参数。将不同水深的产量的实验值与热模型获得的理论值进行了比较,发现已经发现了各种参数的影响,如环境空气速度,流域吸收率,并针对静止的不同水深进行了比较。本文中详细报道的上述结果是根据早期研究人员的结果得出的。

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