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Performance of ventilated double-sided pv facade compared with conventional clear glass facade

机译:与传统的透明玻璃幕墙相比,通风双面光伏幕墙的性能

摘要

The outdoor performance of a naturally ventilated double-sided PV facade was evaluated through field monitoring from a small scale test rig. The comparison of its thermal performance with that of a conventional clear glass facade with shield was made through the field measurement. The measured data show that the maximum indoor air temperature for conventional facade is close to 34 degrees C, while 29 degrees C only for PV facades under same summer weather conditions. This indicates that heat gain to building in summer could be substantially reduced and additional electrical power could also be generated from such facade as a byproduct. In addition, the temperature influence on thin-film solar cells was tested. The effect of temperature on the conversion efficiency of thin-film amorphous silicon solar cell is found small. It is observed that a reduction of 15.6 degrees C in module temperature of the thin-film solar cell only leads to a decrease of 0.29% in conversion efficiency. However, the ventilation cooling of PV reduce the possibility of potential overheating problems when PV is integrated into building as an external facade, especially in extreme hot weather conditions. In addition, the internal heat gain could be considerably reduced compared with conventional clear glass facade with shield in summer. A better thermal comfort of indoor occupants thus could be anticipated in the present proposed facade system.
机译:通过小型试验台的现场监测,评估了自然通风的双面PV外墙的室外性能。通过现场测量,将其热性能与传统的带护罩的透明玻璃幕墙进行了比较。实测数据表明,传统外墙的最高室内空气温度接近34摄氏度,而仅PV外墙在相同的夏季天气条件下为29摄氏度。这表明,夏季建筑物的热量获取将大大减少,并且作为副产品的立面也会产生额外的电力。另外,测试了温度对薄膜太阳能电池的影响。发现温度对薄膜非晶硅太阳能电池的转换效率的影响很小。观察到薄膜太阳能电池的模块温度降低15.6℃仅导致转换效率降低0.29%。但是,当PV作为外部立面集成到建筑物中时,PV的通风冷却降低了潜在的过热问题的可能性,尤其是在极端炎热的天气条件下。此外,与夏季带有屏蔽罩的传统透明玻璃幕墙相比,内部热量的获取可能会大大减少。因此,在当前提出的立面系统中可以预期室内居住者的更好的热舒适性。

著录项

  • 作者

    Han J; Lu L; Peng J; Yang H;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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