...
首页> 外文期刊>Applied Energy >Daylighting and overall energy performance of a novel semi-transparent photovoltaic vacuum glazing in different climate zones
【24h】

Daylighting and overall energy performance of a novel semi-transparent photovoltaic vacuum glazing in different climate zones

机译:不同气候区新型半透明光伏真空玻璃的灯光和整体能源性能

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Amorphous silicon-based semi-transparent photovoltaic windows can produce renewable electricity and offer a certain amount of natural daylight for occupants. However, it has a deficiency as the absorbed solar energy would be partially transferred into additional cooling demand in summer. In this respect, a novel semi-trans-parent photovoltaic vacuum glazing is proposed to improve energy performance. The selection of appropriate glazing of an energy-efficient building should take into consideration the specific climate conditions. The day-lighting behaviour of the glazing will also affect the daylighting performance as well as the lighting consumption. In this paper, the thermal performance, daylighting performance and overall energy performance of the proposed vacuum PV glazing in different climate regions have been investigated. A daylighting model was conducted by DAYSIM to evaluate the annual daylighting performance. It was found that the vacuum PV glazing can balance daylighting availability and visual comfort by providing sufficient daylight in the anterior half of the room and reducing daylight glare to the minimum level. The energy simulation by EnergyPlus demonstrated that the vacuum PV glazing has the energy-saving potential up to 43.4%, 66.0%, 48.8%, and 35.0% in Harbin, Beijing, Wuhan and Hong Kong, respectively. However, the applications of the vacuum glazing lead to additional cooling consumption in the moderate climate zone, such as Kunming. The results advanced the understanding on the applicability and limitation of the vacuum PV glazing in different climate backgrounds. Furthermore, the reversed and the reversible vacuum PV glazing were proposed to enhance the adaptability. The results suggest that the reversible vacuum PV glazing can act energy response in a more efficient way and fully utilize the energy-saving potential of the integration of the PV glazing and the vacuum glazing.
机译:非晶硅的半透明光伏窗窗可以生产可再生电力,为乘客提供一定数量的自然日光。然而,由于吸收的太阳能在夏季将部分转移到额外的冷却需求中,它具有缺陷。在这方面,提出了一种新型半反式母体光伏真空玻璃,以提高能量性能。选择适当的节能建筑玻璃窗应考虑到具体的气候条件。玻璃窗的日光行为也会影响仿闪光性能以及照明消耗。本文研究了不同气候区中所提出的真空PV玻璃的热性能,日光性能和整体能量性能。日光模型是由天地进行的,以评估年度日光性能。发现真空光伏玻璃可以通过在房间的前半部分提供足够的日光并将日光眩光降低到最小水平来平衡风光的可用性和视觉舒适度。 EnergyPlus的能量仿真表明,真空光伏玻璃的节能潜力分别具有43.4%,哈尔滨,北京,武汉及香港的43.4%,66.0%,48.8%和35.0%。然而,真空玻璃的应用导致中等气候区的额外冷却消耗,例如昆明。结果提高了对不同气候背景中真空光伏玻璃的适用性和限制的认识。此外,提出了逆转和可逆的真空光伏玻璃增强适应性。结果表明,可逆的真空光伏玻璃可以以更有效的方式采用能量响应,并充分利用PV玻璃窗和真空玻璃的集成节能潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号