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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Transient performance of a stepped solar still with built-in latent heat thermal energy storage
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Transient performance of a stepped solar still with built-in latent heat thermal energy storage

机译:内置潜热热能储存器的阶梯式太阳能蒸馏器的瞬态性能

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The transient performance of a stepped solar still with built-in latent heat thermal energy storage was studied.The still was designed for heating and humidification of agriculture greenhouses(GH)in remote areas.The solar still consists of five stepped basins with an inclined glass cover and is insulated on the bottom.The basin was placed on a slab filled with a layer of paraffin wax(phase change material,PCM)that acts as a latent heat thermal energy storage system(LHTESS).Air from GH enters the still from the bottom,flows between the basins and glass cover where it is heated and humidified,and then flows back into the GH.The still performance parameters investigated were analyzed,and the results compared with the case of a still without the LHTESS.The results showed that the still with LHTESS has an efficiency of 57%,and the total daily yield is about 4.6 L/m~2.The still temperature as well as outlet air temperature and GH heat load are more uniform compared to the sinusoidal trends for the still without LHTESS.It was found that the relative humidity of circulating air increased along the still and always leaves at saturation conditions.The results indicated that decreasing the air flow rate has an insignificant influence on the still yield,while the GH heat load experiences a decrease.For a selected design and operational parameters,the still was able to provide heat for the GH for 24 h/d.This finding is important since heat could be provided to the GH at night and when it is most needed.
机译:研究了内置潜热蓄能的阶梯式太阳能蒸馏器的瞬态性能,该蒸馏器设计用于偏远地区农业温室的加热和加湿,太阳能蒸馏器由五个带倾斜玻璃的阶梯式盆组成盆地被放在一个平板上,平板上装有一层石蜡(相变材料,PCM),用作潜热储热系统(LHTESS).GH的空气从底部,在盆和玻璃盖之间流过并加热并加湿,然后流回GH。分析了所研究的静态参数,并将结果与​​没有LHTESS的情况进行了比较。结果表明LHTESS蒸馏器的效率为57%,日总产量约为4.6 L / m〜2。与正弦趋势相比,蒸馏器的温度,出口空气温度和GH热负荷更加均匀。结果表明,循环空气的相对湿度沿静止状态增加,并始终在饱和状态下离开。结果表明,降低空气流量对静止产量无明显影响,而GH热负荷对于选定的设计和操作参数,仍然能够为GH提供24 h / d的热量。这一发现很重要,因为可以在夜间和最需要的时候向GH提供热量。

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