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Investigation of the thermal performance of a solar absorber and nocturnal radiator (SAANR) hybrid panel for summer and winter seasons

机译:夏季和冬季太阳能吸收器和夜间散热器(SAANR)混合板的热性能调查

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摘要

Transient analysis and performance prediction of a solar absorber and nocturnal radiator (SAANR) hybrid panel for water heating and cooling in the summer and winter seasons of Gaborone, Botswana is presented. Transient heat transfer models were developed for the panel and the models were then transformed into explicit finite difference forms for numerical analysis using MATLAB. The SAANR panel added up to 7 kWh diurnal heating energy in winter and removed up to 0.5 kWh at night through radiation cooling in summer. The resulting numerical solutions of the model were validated by comparison with experimental results and they showed excellent strength of association with a correlation coefficient of 0.832 and fairly acceptable goodness of fit at an R-squared value of 69%. Sensitivity analysis carried out showed the model to react linearly to panel area changes. From the results, it is concluded that the hybrid panel is robust enough to perform in both the summer and winter seasons of Gaborone, and areas with similar climatic conditions. This implies that the system can be used simultaneously for space cooling and domestic water heating in both summer and winter. This technology can therefore be used instead of electric water heaters and air-conditioners and thus save energy.
机译:博茨瓦纳夏季和冬季季节的太阳能吸收器和夜间散热器(SAANR)杂交面板的瞬态分析和性能预测(SAANR)杂交板。开发用于面板的瞬态传热模型,然后将模型转化为使用MATLAB的数值分析的显式有限差异形式。 Saanr Coare在冬季增加了7千瓦时的昼夜加热能量,通过夏季通过辐射冷却将高达0.5千瓦时移除。通过与实验结果进行比较验证了模型的所得数值溶液,并且它们表现出优异的关联强度与0.832的相关系数,并且相当可接受的贴合性,在R形值为69%。进行的敏感性分析显示模型以线性地对面板区域的变化反应。从结果中,结论是,混合板材足以在歌曲隆的夏季和冬季的季节以及具有相似气候条件的地区进行。这意味着该系统可以同时使用夏季和冬季的空间冷却和国内水供暖。因此,可以使用该技术代替电热水器和空调,从而节省能量。

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