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Numerical study and experimental validation of a combined diurnal solar heating and nocturnal radiative cooling collector

机译:昼夜太阳能加热和夜间辐射冷却收集器的数值研究与实验验证

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摘要

Neither solar collectors nor nocturnal radiative cooling units could work all day. A novel combined diurnal solar heating and nocturnal radiative cooling (SH-RC) collector was proposed and investigated in this study. The collector can obtain heat at daytime and gather cooling energy at nighttime, therefore offering multi-functionality and enhancing its time utilization ratio. A spatial distributed parameter mathematic model that considers the spectral radiant distribution was established to evaluate the performance of the collector. Besides, the precipitable water vapor amount was introduced to predict the spectral emissivity of atmosphere. Experiments were conducted to validate results obtained from the numerical simulation. The root-mean-square deviations between the experimental and simulation results are only 4.59% for thermal efficiency and 4.90% for cooling power. Based on the validated models, the thermal performance of the collector was investigated under different insulation thicknesses, wind velocities, ambient and inlet temperatures, water flow rates, precipitable water vapor amounts and solar irradiance. Annual performances of four Chinese cities were also conducted. The annual heat gains of the SH-RC collector in Beijing, Hefei, Fuzhou and Urumqi are 3328.76, 2423.53, 2543.31 and 3313.46 MJ/m(2), respectively. The annual net radiative cooling gains of the collector in the four cities are 862.44, 831.54, 741.63 and 775.34 MJ/m(2), respectively.
机译:太阳能收集器和夜间辐射冷却装置都不能整天工作。提出了一种新型的昼夜太阳能加热和夜间辐射冷却(SH-RC)收集器,并在本研究中研究。收集器可以在白天获得热量,并在夜间收集冷却能量,从而提供多功能,提高其时间利用率。建立了考虑光谱辐射分布的空间分布式参数数学模型,以评估收集器的性能。此外,引入了可降水的水蒸气量以预测大气的光谱发射率。进行实验以验证从数值模拟获得的结果。实验和仿真结果之间的根平均方形偏差仅为热效率的4.59%,冷却功率仅为4.90%。基于验证的模型,在不同的绝缘厚度,风速,环境和入口温度,水流速率,可降水水蒸气量和太阳辐照度下研究了收集器的热性能。还进行了四个中国城市的年度表现。北京,合肥,福州和乌鲁木齐的SH-RC收集器的年收入分别为3328.76,2423.53,2543.31和3313.46 mj / m(2)。四个城市收集器的年净辐射冷却增益分别为862.44,831.54,741.63和775.34 mj / m(2)。

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