首页> 外文会议>International Conference on Sustainability in Energy and Buildings >Simulating thermoehromic and heat mirror glazing systems in hot and cold climates
【24h】

Simulating thermoehromic and heat mirror glazing systems in hot and cold climates

机译:在炎热和寒冷气候中模拟热振动和热镜玻璃窗系统

获取原文

摘要

This paper investigates the potential energy requirements for heating and cooling when using a thermoehromic glazing system on a highly glazed tall office building and comparisons are made with the respective performance of two heat mirror units and a clear triple glazed window. The assessment is done with the ESP-r whole building integrated simulation program in order to account for the dynamic optical properties of thermoehromic glass in integrated simulations. The glazing systems are assessed for hot, cold and significantly varying between hot and cold climates. Annual heating and cooling energy requirements were quantified and short-period simulations were also run to assess the effect of the glazing systems on indoor temperatures. It was found that thermoehromic glazing could significantly reduce cooling loads in hot climates and where cooling could be a significant building energy load (by approximately 30% in comparison with the other glazing systems). On the other hand, thermoehromic glass could have a negative impact in cold climates where the use of heat mirror glazing systems could offer the highest energy savings even when compared with the triple glazed window. In seasonally varying climates and for highly glazed office buildings in which simultaneous high internal and solar heat gains are likely to occur, the use of thermoehromic glass is an appropriate technique for saving energy and improving thermal comfort.
机译:本文研究了在高度玻璃高层办公楼上使用热潮热玻璃系统时加热和冷却的潜在能源要求,并采用两种热镜单元的各自性能和清晰三层玻璃窗进行比较。通过ESP-R整体构建综合仿真程序进行评估,以便考虑集成模拟中热渊玻璃的动态光学性质。玻璃系统被评估为热,冷,在热和寒冷气候之间显着变化。量化和冷却能量要求是量化的,并且还运行短时间模拟,以评估玻璃系统对室内温度的影响。结果发现,热渊玻璃可以显着降低热气候中的冷却载荷,而冷却可能是显着的建筑能量负荷(与其他玻璃系统相比,约30%)。另一方面,温度玻璃可能在寒冷气候中产生负面影响,即使与三层玻璃窗相比,使用热镜玻璃窗系统的使用也可以提供最高节能。在季节性不同的气候和高度玻璃的办公建筑中,可能发生同时高内部和太阳能热量的建筑物,使用温度玻璃是一种适当的技术,可节省能量和提高热舒适性。

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