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Experimental verification of state space model and thermal performance analysis for active solar walls

机译:主动式太阳能墙的状态空间模型和热性能分析的实验验证

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摘要

Building-integrated solar thermal system is a new tendency in the building sector. An active solar wall is studied in this paper, which integrates flat plate solar thermal collector and building wall. The performance of an active solar wall is predicted by the state space model and measured by experimental testing respectively. The calculated results by state space model agree well with the measured data from experimental testing, which indicates that state space model is valid. Thermal analysis for a particular solar wall is conducted in clear and cloudy days either in summer or winter respectively by state space model under Shanghai meteorological conditions and compared with the separate wall. The results indicate that: (1) Integration has a little effect on the useful heat gains by solar collector. In clear summer days, the useful heat gains are less than the separate solar collector by about 2-3%; In clear winter days, the useful heat gain is greater than the separate solar collector by about 5-8%; (2) Integration has great effect on the heat flow through walls. In clear summer, heat flow into the room through solar wall is significantly reduced by 55-63% than the separate wall. It is favorable to reduce cooling load. In winter, heat loss through solar wall is heavily reduced by about 80-88% than the separate wall. It is favorable to reduce the space heating load in winter. (C) 2016 Elsevier Ltd. All rights reserved.
机译:建筑一体化的太阳能热系统是建筑领域的新趋势。本文研究了一种将平板太阳能集热器与建筑墙体相结合的主动式太阳能墙体。主动式太阳能墙的性能由状态空间模型预测,并分别通过实验测试进行测量。状态空间模型的计算结果与实验测试的数据吻合良好,表明状态空间模型是有效的。在上海气象条件下,通过状态空间模型分别在夏季和冬季的晴天和阴天分别对特定太阳能墙进行热分析,并与单独的墙进行比较。结果表明:(1)集成对太阳能集热器有用的热吸收影响很小。在晴朗的夏日,有用的热量增加比单独的太阳能集热器少约2-3%。在晴朗的冬季,有用的热量增加比单独的太阳能集热器大约5-8%; (2)集成对通过壁的热流有很大影响。在晴朗的夏天,通过太阳能墙流入房间的热量比单独的墙明显减少了55-63%。减少冷却负荷是有利的。在冬季,通过太阳能墙的热损失比单独的墙大得多,减少了约80-88%。有利于减少冬季的空间供暖负荷。 (C)2016 Elsevier Ltd.保留所有权利。

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