圆柱形抛物型太阳能蒸馏器传热分析与建模

Q1 Engineering
A. Echchikhi, K. Gueraoui, El Houssaine El Rhaleb, N. Zeggwagh, Adil Bounouar, H. Benbih, I. Aberdane
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引用次数: 0

摘要

抛物线柱形蒸馏器是一种新型的脱盐技术。它专门用于干旱和沙漠气候。这个原型由一个泵、一个反射表面、一个温室管和一个冷凝室组成。这种简单性使它能够被小型社区所使用。在这项工作中,该原型的运行和产量被建模为三种不同太阳能(1800W/m2、1600W/m2和1400W/m2)的函数。已经创建了一个数字代码,可以理解蒸馏器的工作方式及其在不同天气条件下的行为。实现了一个综合传热数学模型,该模型包含了该蒸馏器几个部件之间发生的不同传热的能量平衡。该方程组将通过数值方法(有限差分)求解,并通过信息学工具(Fortran)编程。使用此代码,可以控制每个蒸馏器组件的输入参数。结果表明,水馏分的产率可达到20l/d。这个数量与太阳能和水泵提供的水量有关。与不超过5l/h的太阳能温室蒸馏器等现有技术相比,20l/h的脱盐水量证明了该技术的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heat Transfer Analysis and Modeling of a Cylindrical Parabolic Solar Distiller
The parabolic cylindrical distiller is a new technique for desalinate salt water. It is dedicated to the use in the arid and desert climate. This prototype is composed by a pump, a reflective surface, a green house tube, and a condensation room. This simplicity has allowed it to be used by the small communities. In this work, the operation and the yield of this prototype are modeled as function of a three different solar power (1800 W/m2, 1600 W/m2and 1400 W/m2). A numerical code that has allowed understanding in which way the distiller work and its behavior under different weather conditions has been created. A comprehensive heat transfer mathematical model containing an energy balance for the different heat transfer happened between the several components of this distiller is implemented. This equation system will be solved by the numerical method (finite difference) and programmed by informatics tools (Fortran). With this code, it is possible to control the enters parameters of each distiller component. The results obtained show that the productivity of water distillate can attained until 20l/d. This quantity is linked to the solar power and the debit of water given by the pump. This quantity of desalted water 20l / h proves the effectiveness of this technique compared to current techniques such as solar greenhouse distiller, which does not exceed 5 l/h.
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来源期刊
CiteScore
2.90
自引率
0.00%
发文量
24
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