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Collection Characteristics of Composite Solar Collector with Volume Heat Trap and Surface Heat Trap

机译:具有体积热阱和表面热阱的复合太阳能集热器的收集特性

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References(6) Cited-By(1) A composite solar collector, in which the working fluid layer was divided into two layers by an opaque trapping surface, was considered. In the composite collector, thermal collection in the upper fluid layer is by a volume heat trap and that in lower fluid layer is by a surface heat trap. The collection characteristics of the collector were examined theoretically and experimentally.In the upper fluid layer of the composite collector natural convection was more suppressed and the temperature gradient was larger than in the volume heat trap collector. Also, in outdoor performance the mean temperature of the composite collector was higher than that of the volume heat trap collector. As solar radiation decreased, however, the difference between the two collectors became small because of thermal accumulation in the insulating layer.Under the present experimental conditions, the collection efficiency was high when the trapping surface was set near the middle of the fluid layer. As the temperature level became high or as the convective heat transfer coefficient became large, the optimum position of the trapping surface shifted to a deeper position. It was found that the optimum position of the trapping surface depended on the thermal conditions.
机译:参考文献(6)Cyted-By(1)考虑了一种复合太阳能集热器,其中工作流体层被不透明的捕获表面分为两层。在复合材料收集器中,上部流体层中的热量收集是通过体热收集器,下部流体层中的热量收集是通过表面热收集器。从理论上和实验上对集热器的集热特性进行了研究。在复合集热器的上层流体层中,自然对流比体积集热器更受抑制,温度梯度更大。同样,在室外性能中,复合集热器的平均温度高于体热集热器的平均温度。然而,随着太阳辐射的减少,由于绝缘层中的热积累,两个集热器之间的差异变小。在当前的实验条件下,当将捕获表面设置在流体层的中间附近时,集热效率很高。随着温度升高或对流传热系数增大,捕集表面的最佳位置移至更深的位置。发现捕获表面的最佳位置取决于热条件。

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