An active solar water wall for passive solar greenhouse heating

文献类型: 外文期刊

第一作者: Xu, Weiwei

作者: Xu, Weiwei;Xu, Weiwei;Ma, Chengwei;Guo, Huiqing;Ma, Chengwei

作者机构:

关键词: Solar energy; Chinese solar greenhouse; Solar water wall; Solar heating system; Hollow polycarbonate sheet

期刊名称:APPLIED ENERGY ( 影响因子:11.446; 五年影响因子:11.268 )

ISSN: 0306-2619

年卷期: 2022 年 308 卷

页码:

收录情况: SCI

摘要: A high thermal capacity north wall is essential for nighttime heating of Chinese solar greenhouses. However, thermal storage ability of the north wall using regular building materials is limited because of their slow heat conduction restricting heat transfer from wall surface to the depth. This study added an active solar water wall constructed of hollow polycarbonate sheets to the north wall, supplemented by an underground water storage tank, to increase nighttime temperature. To evaluate water wall's thermal effect, a field test was conducted, as well as a theoretical verification. Its performance was evaluated in terms of solar heat collection and release capability, nighttime temperature increase and thermal performance in adverse weather. During the 22 coldest days of winter in Beijing, daily averages of collected heat and heat release rate on the basis of floor area were 0.83 MJ m(-2) and 22.6 W m(-2), respectively. Average heat-collecting efficiency reached 85.8%, and 80.4% of the collected heat was released for greenhouse heating. Compared to the scenario without the water wall, minimum nighttime air temperature increased by 3.3 ? on average. In particular, nighttime temperature maintained above 6.9 ? that was 4.1 ? higher than that in the control greenhouse during three consecutive overcast days. Retrofitting the water wall into Chinese solar greenhouses can make warm-season crop production feasible throughout winter by eliminating supplemental heating. Besides, the water wall-based system can be a self-contained solar heating system, also suitable for traditional greenhouses. Thermal analysis and economic eval-uation show considerable practical application prospects.

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