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Parametric study of an active and passive solar distillation system: Energy and exergy analysis

机译:主动和被动太阳能蒸馏系统的参数研究:能量和火用分析

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This paper presents the parametric study of passive and active solar stills integrated with a flat plate collector based on the computer based thermal models. These models are developed based on mass and energy balance equations. The effect of inner and outer glass cover temperatures on the performance of the solar stills is studied which lacks in the present literature. Hence, this paper aims to compare the daily yield values from the thermal models based on both assumptions, (a) inner and outer glass cover temperatures are equal (T_(gi) =T_(go)) and (b) inner and outer glass cover temperatures are not equal (T_(gi) ≠T_(go). In this paper, the comparison is made between active and passive solar stills based on the hourly yield values for the two assumptions. The thermal performance of the active solar still is affected by design parameters like water depth, thickness of glass cover, insulation thickness, condensing cover material, type of solar collector, number of collectors, and also affected by a change in climatic parameters like ambient air temperature, solar intensity and wind velocity. The effect of design parameters and wind velocity on the daily yield of both passive and active solar stills is presented in this paper. The results of the thermal model of the active solar still integrated with a flat plate collector show that the daily yield values are 3.08 L and 2.85 L for the two conditions T_(gi) =T_(go) and T_(gi) ≠T_(go) respectively. Similarly, in the case of the passive solar still, the daily yield values are 1.14 L and 1.09 L for T_(gi) =T_(go) and T_(gi) ≠T_(go)respectively. The effect of the number of collectors and water depth on exergy and thermal efficiency of the active solar still is also obtained and presented. At the end, the comparison is made between the types of solar collectors and their effect on daily yield of the active solar still.
机译:本文基于计算机热模型,对与平板集热器集成在一起的被动式和主动式太阳能蒸馏器进行了参数研究。这些模型是根据质量和能量平衡方程开发的。研究了内部和外部玻璃盖温度对太阳剧照的性能的影响,这在当前文献中是缺乏的。因此,本文旨在根据两个假设比较热模型的日产量值,(a)内外玻璃盖温度相等(T_(gi)= T_(go)),(b)内外玻璃盖温度盖层温度不相等(T_(gi)≠T_(go)。本文基于两个假设的小时产量值,对主动和被动太阳能蒸馏器进行了比较。受设计参数(例如水深,玻璃盖的厚度,隔热层厚度,冷凝盖材料,太阳能集热器的类型,集热器的数量)的影响,还受气候参数(例如环境空气温度,太阳强度和风速)变化的影响。给出了设计参数和风速对被动式和主动式太阳能蒸馏器日产量的影响,对与平板集热器集成的主动式太阳能蒸馏器的热模型结果表明,日产量va对于两个条件T_(gi)= T_(go)和T_(gi)≠T_(go),lues分别为3.08 L和2.85L。类似地,在被动式太阳能蒸馏器的情况下,T_(gi)= T_(go)和T_(gi)≠T_(go)的日产量分别为1.14 L和1.09L。还获得并介绍了集热器数量和水深对活性太阳能釜的火用和热效率的影响。最后,比较了太阳能收集器的类型及其对活性太阳能蒸馏器日产量的影响。

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