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Mass and heat transfer model of Tubular Solar Still

机译:管状太阳釜的传热模型

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摘要

In this paper, a new mass and heat transfer model of a Tubular Solar Still (TSS) was proposed incorporating various mass and heat transfer coefficients taking account of the humid air properties inside the still. The heat balance of the humid air and the mass balance of the water vapor in the humid air were formulized for the first time. As a result, the proposed model enabled to calculate the diurnal variations of the temperature, water vapor density and relative humidity of the humid air, and to predict the hourly condensation flux besides the temperatures of the water, cover and trough, and the hourly evaporation flux. The validity of the proposed model was verified using the field experimental results carried out in Fukui, Japan and Muscat, Oman in 2008. The diurnal variations of the calculated temperatures and water vapor densities had a good agreement with the observed ones. Furthermore, the proposed model can predict the daily and hourly production flux precisely.
机译:在本文中,提出了一种新的管状太阳蒸馏器(TSS)的质量和传热模型,该模型考虑了蒸馏器内部的湿空气特性,并考虑了各种质量和传热系数。湿空气的热平衡和湿空气中水蒸气的质量平衡是第一次形成。结果,所提出的模型能够计算温度,水蒸气密度和湿空气的相对湿度的日变化,并预测除水,覆盖物和水槽的温度以及每小时蒸发量以外的每小时冷凝通量。通量。 2008年在日本福井和阿曼马斯喀特进行的野外实验结果验证了所提模型的有效性。计算温度和水汽密度的日变化与观测值具有良好的一致性。此外,所提出的模型可以精确地预测日产量和小时产量。

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