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Thermal response of a series- and parallel-connected solar energy storage to multi-day charge sequences

机译:串联和并联连接的太阳能存储器对多日充电序列的热响应

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The thermal response of a multi-tank thermal storage was studied under variable charge conditions. Tests were conducted on an experimental apparatus that simulated the thermal charging of the storage system by a solar collector over predetermined (prescribed) daylong periods. The storage was assembled from three standard 270 L hot-water storage tanks each charged through coupled, side-arm, natural convection heat exchangers which were connected in either a series- or parallel-flow configuration. Both energy storage rates and tank temperature profiles were experimentally measured during charge periods representative of two consecutive clear days or combinations of a clear and overcast day. During this time, no draw-offs were conducted. Of particular interest was the effect of rising and falling charge-loop temperatures and collector-loop flow rate on storage tank stratification levels. Results of this study show that the series-connected thermal storage reached high levels of temperature stratification in the storage tanks during periods of rising charge temperatures and also limited destratification during periods of falling charge temperature. This feature is a consequence of the series-connected configuration that allowed sequential stratification to occur in the component tanks and energy to be distributed according to temperature level. This effect was not observed in the parallel charge configuration. A further aspect of the study investigated the effect of increasing charge-loop flow rate on the temperature distribution within the series-connected storage and showed that, at high flow rates, the temperature distributions were found to be similar to those obtained during parallel charging. A disadvantage of both the high-flow series-connected and parallel-connected multi-tank storage is that falling charge-loop temperatures, which normally occur in the afternoon, tend to mix and destratify the storage tanks.
机译:在可变装料条件下研究了多罐蓄热器的热响应。在实验设备上进行了测试,该设备模拟了太阳能收集器在预定的(规定的)整日内对存储系统的热充电。储水箱由三个标准的270 L热水储水箱组装而成,每个储水箱均通过连接的侧臂自然对流换热器进行填充,这些换热器以串联或并联流动的方式连接。在代表两个连续晴天或晴天与阴天的组合的充电期间,通过实验测量了储能速率和储罐温度曲线。在此期间,没有进行提款。特别令人感兴趣的是进料回路温度和收集器回路流速的上升和下降对储罐分层的影响。这项研究的结果表明,在装料温度升高期间,串联式蓄热器在储罐中达到了很高的温度分层,在装料温度下降期间也达到了有限的分层。此功能是串联配置的结果,该配置允许在组件储罐中进行顺序分层,并根据温度水平分配能量。在并联充电配置中未观察到此效应。研究的另一方面研究了增加充电回路流量对串联存储内温度分布的影响,结果表明,在高流量下,发现温度分布与并联充电时的温度分布相似。高流量串联连接和并联连接的多罐存储的一个缺点是,通常在下午发生的电荷回路温度下降,容易使储罐混合并使其分层。

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