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Effects of orientation and structure on solar radiation interception in Chinese solar greenhouse

机译:方向与结构对中国太阳能温室太阳辐射拦截的影响

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摘要

In order to further improve the utilization of solar energy in Chinese Solar Greenhouse (CSG), this paper systematically studied the effects of orientation and structure on solar radiation interception in CSG. A solar radiation model has been developed based on the previous research, which taking solar motion law, meteorological data, and optical properties of materials into consideration. The established model was used to optimize the orientation and structure of CSG. The analysis of structure considered two major structural parameters, which are the ridge height and the horizontal projection of the rear roof. Moreover, the widely used Liao-Shen type Chinese solar greenhouse (CSG-LS) has been taken as the prototype in the present research, and the measured data of the typical clear day was used for the model validation. The results showed that the ridge height has a remarkable influence on the solar energy captured by CSG-LS. Compared with the optimization of a single factor, the comprehensive optimization of orientation and structure can increase the solar radiation interception of the rear wall by 3.95%. Considering the limiting factor of heat storage-release capacity and the shading effect on the greenhouse structure, the optimal lighting construction of the CSG-LS (with a span of 9.0 m) was specified as 7~9° from south to west of azimuth angle, 4.5~4.7 m ridge height, and 1.4~1.6 m horizontal projection of the rear roof at 42°N latitude. The proposed solar radiation model can provide scientific guidance for the CSG-LS construction in different areas.
机译:为了进一步提高中国太阳能温室(CSG)的太阳能利用,本文系统地研究了方向和结构对CSG中太阳辐射拦截的影响。已经基于以前的研究开发了太阳辐射模型,以考虑到太阳能行动法,气象数据和材料的光学性质。建立的模型用于优化CSG的方向和结构。结构分析被认为是两个主要结构参数,这是后屋顶的脊高度和水平突起。此外,广泛应用的辽沉型中国太阳能温室(CSG-LS)被视为本研究中的原型,并且典型晴天的测量数据用于模型验证。结果表明,脊高度对CSG-LS捕获的太阳能具有显着影响。与单一因素的优化相比,方向和结构的综合优化可以将后壁的太阳辐射拦截增加3.95%。考虑到热存储释放容量的限制因素和对温室结构的遮蔽效果,CSG-LS的最佳照明结构(跨度为9.0米),从方位角到西向西为7〜9° ,4.5〜4.7米的脊高,后屋顶的水平投影为42°N纬度。所提出的太阳辐射模型可以为不同领域的CSG-LS建设提供科学指导。

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