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Predicted thermal performance of triple vacuum glazing

机译:三层真空玻璃的预测热性能

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摘要

The simulated triple vacuum glazing (TVG) consists of three 4 mm thick glass panes with two vacuum gaps, with each internal glass surface coated with a low-emittance coating with an emittance of 0.03. The two vacuum gaps are sealed by an indium based sealant and separated by a stainless steel pillar array with a height of 0.12 mm and a pillar diameter of 0.3 mm spaced at 25 mm. The thermal transmission at the centre-of-glazing area of the TVG was predicted to be 0.26 W m~(-2) K~(-1). The simulation results show that although the thermal conductivity of solder glass (1 W m~(-2) K~(-1) and indium (83.7 W m~(-2) K~(-1) are very different, the difference in thermal transmission of TVGs resulting from the use of an indium and a solder glass edge seal was 0.01 W m~(-2) K~(-1). This is because the edge seal is so thin (0.12 mm), consequently there is a negligible temperature drop across it irrespective of the material that the seal is made from relative to the total temperature difference across the glazing. The results also show that there is a relatively large increase in the overall thermal conductance of glazings without a frame when the width of the indium edge seal is increased. Increasing the rebate depth in a solid wood frame decreased the heat transmission of the TVG. The overall heat transmission of the simulated 0.5 m by 0.5 m TVG was 32.6% greater than that of the 1 m by 1 m TVG, since heat conduction through the edge seal of the small glazing has a larger contribution to the total glazing heat transfer than that of the larger glazing system.
机译:模拟的三层真空玻璃窗(TVG)由三个具有两个真空间隙的4 mm厚的玻璃板组成,每个玻璃内部表面都涂有低辐射涂层,其发射率为0.03。两个真空间隙由铟基密封剂密封,并由高度为0.12毫米,直径为0.3毫米,间距为25毫米的不锈钢支柱阵列隔开。预计TVG玻璃中心区域的热传递为0.26 W m〜(-2)K〜(-1)。仿真结果表明,尽管焊料玻璃(1 W m〜(-2)K〜(-1)和铟(83.7 W m〜(-2)K〜(-1))的导热率存在很大差异,使用铟和焊料玻璃边缘密封所产生的TVG的热传导系数为0.01 W m〜(-2)K〜(-1),这是因为边缘密封很薄(0.12 mm),因此相对于整个玻璃上的总温差,密封材料的温度降是可以忽略的,结果还表明,当没有框架的情况下,没有框架的玻璃的整体导热率有较大的增加。铟边密封条的宽度增加;增加实木框架中的回扣深度会降低TVG的热传递;模拟的0.5 m×0.5 m TVG的总热传递比1 m×0.5 m的TVG的总热传递高32.6%。 TVG 1 m,因为通过小玻璃窗边缘密封的热传导较大与较大的玻璃系统相比,对玻璃总传热的贡献更大。

著录项

  • 来源
    《Solar Energy》 |2010年第12期|p.2132-2139|共8页
  • 作者单位

    School of the Built Environment, University of Ulster, BT37 OQB, Newtownabbey, N. Ireland, UK;

    School of the Built Environment, University of Ulster, BT37 OQB, Newtownabbey, N. Ireland, UK;

    School of the Built Environment, University of Ulster, BT37 OQB, Newtownabbey, N. Ireland, UK;

  • 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

    triple vacuum glazing (TVG); double vacuum glazing; thermal performance; finite volume model; analytic model;

    机译:三重真空玻璃(TVG);双真空玻璃热性能有限体积模型分析模型;
  • 入库时间 2022-08-18 00:26:24

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