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Heat gain reduction by means of thermoelectric roof solar collector

机译:通过热电屋顶太阳能集热器减少热量获取

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摘要

This paper presents a numerical investigation on attic heat gain reduction by using thermoelectric modules integrated in a conventional roof solar collector (RSC). This system, called thermoelectric roof solar collector (TE-RSC), is composed of a transparent glass, air gap, a copper plate, thermoelectric modules (TE) and rectangular fin heat sink. Due to the incident solar radiation, a temperature difference is created between the hot and cold sides of TE modules that generates a direct current. This current is used to drive a ventilating fan for cooling the TE-RSC and enhancing attic ventilation that reduces ceiling heat gain. The system performance was simulated using TRNSYS program with new TE and DC fan components developed by our team and compared to a common house. Simulation results using real house configuration showed that a TE-RSC unit of 0.0525 m~2 surface area can generate about 9W under 972W/m~2 global solar radiation and 35℃ ambient temperature. The induced air change varied between 20 and 40 and the corresponding ceiling heat transfer rate reduction is about 3-5 W/m~2. The annual electrical energy saving was about 362 kWh. Finally, economical calculations indicated that the payback period of the TE-RSC is 4.36 years and the internal rate of return is 22.05%.
机译:本文提出了通过使用集成在常规屋顶太阳能收集器(RSC)中的热电模块来减少阁楼热量获取的数值研究。该系统称为热电屋顶太阳能集热器(TE-RSC),由透明玻璃,气隙,铜板,热电模块(TE)和矩形翅片散热器组成。由于入射的太阳辐射,TE模块的热侧和冷侧之间会产生温差,从而产生直流电。该电流用于驱动通风风扇,以冷却TE-RSC并增强阁楼通风,从而降低天花板热量的获取。使用TRNSYS程序模拟了系统性能,该程序带有我们团队开发的,与普通房屋相比较的新型TE和DC风扇组件。真实房屋结构的仿真结果表明,在972W / m〜2的全球太阳辐射和35℃的环境温度下,表面积为0.0525 m〜2的TE-RSC装置可产生约9W的功率。诱导的空气变化在20至40之间变化,相应的天花板传热速率降低约为3-5 W / m〜2。每年节省电能约362千瓦时。最后,经济计算表明,TE-RSC的投资回收期为4.36年,内部收益率为22.05%。

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