地中海气候下盐度梯度太阳池的瞬态行为

IF 2.1 4区 工程技术 Q3 ENERGY & FUELS Journal of Solar Energy Engineering-transactions of The Asme Pub Date : 2023-01-30 DOI:10.1115/1.4056788
Yassmine Rghif, A. Sayer, Hameed B. Mahood
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引用次数: 3

摘要

本文旨在研究地中海气候条件下盐度梯度太阳池的瞬态特性。为此,建立了一个二维数值模型,该模型考虑了不同咸水层对太阳辐射的吸收、自由表面的风效应、热损失以及上下对流区双扩散对流的发展。利用有限体积法和SIMPLE算法求解了连续、动量、热能和扩散等控制方程。通过将计算结果与文献研究所得的数值和实验结果进行比较,验证了在Fortran95中建立的数值模型的有效性。结果表明,所建立的数值模型能够较准确地预测sgsp的瞬态行为。应用该模型,分析了地中海气候条件下的温度、盐浓度、蓄能和蓄能效率的变化。结果表明,下对流区(LCZ)温度从15℃上升到95℃左右,而上对流区(UCZ)温度随环境空气温度呈正弦变化。低盐区盐浓度从250kg/m3下降到248kg/m3左右,中高盐区盐浓度从50kg/m3上升到52kg/m3左右。存储的热能约为135MJ,效率约为38%,这证实了SGSP作为显热存储热能的能力。
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Transient behavior of a salinity gradient solar pond under Mediterranean climate
This paper aims to investigate the transient behavior of a salinity gradient solar pond(SGSP) under Mediterranean climate. For this propose, a 2D numerical model is developed in which the absorption of solar radiation by different layers of saline water, the wind effect at free surface, the heat losses and the development of the double-diffusive convection in the lower and upper convective zones are considered. The governing equations of continuity, momentum, thermal energy and diffusion are solved using the finite volume method with SIMPLE algorithm. The validity of the numerical model developed in Fortran95 is achieved through the comparisons of the results computed with the available numerical and experimental results obtained by literature studies. Results show that the developed numerical model can predict transient behavior of the SGSPs with a good accuracy. As an application of this model, temperature, salt concentration, energy stored and storage efficiency variations of a proposed SGSP are analyzed under Mediterranean climate. The results show that the lower convective zone(LCZ) temperature increases from 15 °C to around 95 °C whereas the temperature of the upper convective zone(UCZ) varies sinusoidally depending on that of the ambient air. Furthermore, the salt concentration of the LCZ decreases from 250kg/m3 to around 248kg/m3 while that of the UCZ increases from50 kg/m3 to about 52kg/m3. Additionally, the thermal energy stored is around 135MJ with an efficiency of about 38% which confirms the capacity of the SGSP to store thermal energy as sensible heat.
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来源期刊
CiteScore
5.00
自引率
26.10%
发文量
98
审稿时长
6.0 months
期刊介绍: The Journal of Solar Energy Engineering - Including Wind Energy and Building Energy Conservation - publishes research papers that contain original work of permanent interest in all areas of solar energy and energy conservation, as well as discussions of policy and regulatory issues that affect renewable energy technologies and their implementation. Papers that do not include original work, but nonetheless present quality analysis or incremental improvements to past work may be published as Technical Briefs. Review papers are accepted but should be discussed with the Editor prior to submission. The Journal also publishes a section called Solar Scenery that features photographs or graphical displays of significant new installations or research facilities.
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