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Study on effect of glazing on performance and heat dynamics of asphalt solar collectors: An experimental study

机译:玻璃对沥青太阳能集热器性能和热动力学效果的研究 - 实验研究

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摘要

Exposure to solar irradiation for an extended period during a day causes asphalt pavements can reach to a considerable temperature. Consequently, they can be converted into an affordable solar collector by harvesting thermal energy. In recent years much effort and time have been devoted to improving the thermal performance of solar collectors. To this aim, the glazing strategy is a promising technique. The glass covers results in the reduction of heat loss and protecting the asphalt surface (absorber surface) from the outside environment. Little attention has been given to the glazing strategy in improving the performance of ASCs. The chief aim of the current investigation is a comparative assessment of the performance and heat dynamics of unglazed asphalt solar collectors with glazed asphalt solar collectors under field conditions. The evaluation was carried out using an experimental test-setup composed of an asphalt solar collector with a surface area of 1.2 m(2) and a pipe network length of 12 m. Various sensors were utilized to monitor and measure the key parameters such as ambient conditions and working fluid temperature during the experimental runs. The experimental results prove that the glazing strategy is an effective method to improve the performance of ASCs. The constructed glazed ASC increases hot water temperature, meanly around 5 degrees C, and pavement temperature, meanly around 20 degrees C, while represents an improvement in the performance, near 10%, compared with the unglazed one.
机译:在一天中暴露于太阳照射,导致沥青路面可以达到相当大的温度。因此,它们可以通过收获热能转换成经济适用的太阳能收集器。近年来,很多努力和时间都致力于提高太阳能收集器的热性能。为此目的,玻璃策略是一个有希望的技术。玻璃盖导致远离外部环境的热量损失和保护沥青表面(吸收器表面)的降低。在提高ASC的性能方面,已经对玻璃策略提出了很少的关注。目前调查的主要目标是对现场条件下玻璃沥青太阳能集热器的釉面沥青太阳能集热器的性能和热动力学进行比较评估。使用由沥青太阳能收集器组成的实验试验装置进行评价,该表面积为1.2米(2)和12米的管道网络长度。在实验运行期间,利用各种传感器监测和测量诸如环境条件的关键参数和工作流体温度。实验结果证明了玻璃策略是提高ASCS性能的有效方法。构造的玻璃ASC均在5摄氏度约为5摄氏度和路面温度,均约在20摄氏度约为20摄氏度,而与未氮化的相比,近10%的性能提高。

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