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Experimental study of temperature stratification in an integrated collector-storage solar water heater with two horizontal tanks

机译:具有两个卧式储水箱的集热-储水一体化太阳能热水器的温度分层实验研究

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The effect of tank-interconnection geometry on temperature stratification in an integrated collector-storage solar water (ICSSW) heater with two horizontal cylindrical tanks has been studied. The tanks were parallel to each other, and separated horizontally and vertically, with the lower tank fitted directly below a glass cover, and half of the upper tank insulated. In addition, a truncated parabolic concentrator was fitted below the tanks, with its focal line along the axis of the upper tank. The heater was tested outdoors with the two tanks connected in parallel (P), and S1- and S2-series configurations, with and without hot water draw-off. Water temperature was monitored during solar collection and hot water draw-offs. For the heat charging process, it was found that only the lower tank exhibited temperature stratification in the P- and S1-tank modes of operation. There was satisfactory temperature stratification in both tanks in the S2-tank configuration. For the hot water draining process, the P-tank configuration exhibited some degree of stratification in both tanks. A significant loss of stratification was observed in the lower tank, with the upper tank exhibiting practical stratification, when the system was operated in the S1-tank mode. The S2-tank interconnection maintained a satisfactory degree of temperature stratification in both tanks. So, the S2-tank mode of operation was most effective in promoting practical temperature stratification in both tanks during solar collection and hot water draw-offs. Other results are presented and discussed in this paper.
机译:研究了具有两个水平圆柱形储罐的集成集热储藏式太阳能热水器(ICSSW)的储罐互连几何形状对温度分层的影响。储罐彼此平行,水平和垂直分开,下部储罐直接安装在玻璃盖下面,上部储罐的一半隔热。另外,在储罐下方安装了一个截头抛物线集中器,其焦线沿上储罐的轴线。该加热器在室外进行了测试,两个水箱并联(P),分别为S1和S2系列,有无热水排放。在收集太阳能和抽取热水期间监控水温。对于热填充过程,发现只有下部储罐在P和S1储罐运行模式下表现出温度分层。在S2储罐配置中,两个储罐均具有令人满意的温度分层。对于热水排放过程,P型储罐配置在两个水箱中均显示出一定程度的分层。当系统以S1-tank模式运行时,在下部储罐中观察到了明显的分层损失,而上部储罐则表现出实际的分层。 S2储罐互连在两个储罐中均保持令人满意的温度分层度。因此,在太阳能收集和热水抽取过程中,S2储罐操作模式最有效地促进了两个储罐中的实际温度分层。本文还介绍和讨论了其他结果。

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