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Thermal performance analysis of an electrochromic vacuum glazing with low emittance coatings

机译:低辐射涂层电致变色真空玻璃的热性能分析

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摘要

Thermal performance of an electrochromic (EC) vacuum glazing (VG) was modelled under ASTM standard winter conditions. The EC VG comprised three 0.5 m by 0.5 m glass panes with a 0.12 mm wide evacuated space between two 4 mm thick panes sealed contiguously by a 6 mm wide indium based edge seal with either one or two low-emittance (low-e) coatings supported by a 0.32 mm diameter square pillar grid spaced at 25 mm. The third glass pane on which the 0.1 mm thick EC layer was deposited was sealed to the evacuated glass unit. The whole unit was rebated by 10 mm within a solid wood frame. The low-e coating absorbed 10% of solar energy incident on it. With the EC VG installed with the EC component facing the outdoor environment, for an incident solar radiation of 300 W m~(-2), simulations demonstrated that when the EC layer is opaque for winter conditions, the temperature of the inside glass pane is higher than the indoor air temperature, due to solar radiation absorbed by the low-e coatings and the EC layer, the EC VG is a heat source with heat transferred from the glazing to the interior environment. When the emittance was lower to 0.02, the outdoor and indoor glass pane temperatures of the glazing with single and two low-e coatings are very close to each other. For an insolation of 1000 W m~(-2), the outdoor glass pane temperature exceeds the indoor glass pane temperature, consequentially the outdoor glass pane transfers heat to the indoor glass pane.
机译:在ASTM标准冬季条件下模拟了电致变色(EC)真空玻璃(VG)的热性能。 EC VG包括三块0.5 m x 0.5 m的玻璃板,两块4 mm厚的玻璃板之间有0.12 mm宽的抽真空空间,这些玻璃板由6 mm宽的铟基边缘密封条连续密封,并带有一个或两个低辐射(low-e)涂层由直径为0.32毫米,间隔25毫米的方柱支撑。将其上沉积有0.1毫米厚EC层的第三块玻璃板密封到真空玻璃单元上。整个单元在实木框架内减少了10毫米。低辐射涂层吸收了入射在其上的太阳能的10%。将EC VG安装在面向室外环境的EC组件的情况下,对于300 W m〜(-2)的入射太阳辐射,仿真表明,当EC层在冬季不透明时,内部玻璃板的温度为由于由低辐射涂层和EC层吸收的太阳辐射高于室内空气温度,因此EC VG是一种热源,其热量从玻璃窗传递到室内环境。当发射率降低到0.02时,具有单层和两层低辐射涂层的玻璃的室外和室内玻璃板温度非常接近。对于日照1000 W m〜(-2),室外玻璃板的温度超过室内玻璃板的温度,因此室外玻璃板将热量传递到室内玻璃板。

著录项

  • 来源
    《Solar Energy》 |2010年第4期|p.516-525|共10页
  • 作者单位

    Centre for Sustainable Technologies, School of the Built Environment, University of Ulster, Newtownabbey, BT37 0QB N. Ireland, UK;

    Centre for Sustainable Technologies, School of the Built Environment, University of Ulster, Newtownabbey, BT37 0QB N. Ireland, UK;

    Centre for Sustainable Technologies, School of the Built Environment, University of Ulster, Newtownabbey, BT37 0QB N. Ireland, UK;

    Centre for Research in Renewable Energy Science and Technology, University of Loughborough, UK;

    Dublin Energy Lab, Dublin Institute of Technology, Aungier Street, Dublin 2, Ireland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electrochromic vacuum glazing; low-e coating; thermal performance; emittance; insolation;

    机译:电致变色真空玻璃低辐射涂层热性能发射率暴晒;

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