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Experiments on novel solar heating and cooling system

机译:新型太阳能供热制冷系统的实验

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摘要

Solar heating and nocturnal radiant cooling techniques are united to produce a novel solar heating and cooling system. The radiant panel with both heating and cooling functions can be used as structural materials for the building envelope, which realizes true building integrated utilization of solar energy. Based on the natural circulation principle, the operation status can be changed automatically between the heating cycle and the cooling cycle. System performances under different climate conditions using different covers on the radiant panel are studied. The results show that the novel solar heating and cooling system has good performance of heating and cooling. For the no cover system, the daily average heat collecting efficiency is 52% with the maximum efficiency of 73%, while at night, the cooling capacity is about 47 W/m~2 on a sunny day. On a cloudy day, the daily average heat collecting efficiency is 47% with the maximum of 84%, while the cooling capacity is about 33 W/m~2. As a polycarbonate (PC) panel or polyethylene film are used as covers, the maximum heat collecting efficiencies are 75% and 72% and the daily average heat collecting efficiencies are 61% and 58%, while the cooling capacities are 50 W/m~2 and 36 W/ m~2, respectively.
机译:太阳能加热和夜间辐射冷却技术相结合,产生了一种新颖的太阳能加热和冷却系统。具有加热和冷却功能的辐射板可以用作建筑围护结构的材料,实现真正的建筑太阳能综合利用。根据自然循环原理,可以在加热循环和冷却循环之间自动更改运行状态。研究了在不同气候条件下使用辐射面板上不同盖板的系统性能。结果表明,新型太阳能供热制冷系统具有良好的供热和制冷性能。对于无罩系统,日平均集热效率为52%,最大效率为73%,而在夜间,晴天的制冷量约为47 W / m〜2。在阴天,日平均集热效率为47%,最大为84%,而制冷量约为33 W / m〜2。当以聚碳酸酯(PC)面板或聚乙烯薄膜作为覆盖物时,最大集热效率分别为75%和72%,日平均集热效率分别为61%和58%,而制冷量为50 W / m〜分别为2和36 W / m〜2。

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