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首页> 外文期刊>Building research & information >Exploring membrane-assisted radiant cooling for designing comfortable naturally ventilated spaces in the tropics
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Exploring membrane-assisted radiant cooling for designing comfortable naturally ventilated spaces in the tropics

机译:探索膜辅助辐射冷却,用于在热带地区设计舒适的自然通风空间

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摘要

This research proposes the use of membrane-assisted radiant panels to improve the thermal comfort of naturally ventilated spaces in hot and humid climates. These radiant panels are capable of conditioning naturally ventilated spaces, which is impractical with conventional mechanical cooling systems. For conventional systems, a permeable envelope will result in energy wastage from conditioned air escaping or condensation occurring on the radiant surfaces. In our system, there is no air-conditioning and we avoid condensation by separating the radiant surfaces from humid air using a membrane transparent to thermal radiation. The membrane-assisted radiant panels are an unutilized technology for architects to design comfortable naturally ventilated spaces. We propose a cooling system based on the technology and discuss the architectural implications, particularly the permeability of the building envelope and requirements for mechanical spaces, of employing this system in a case study that is a naturally ventilated classroom. Our system is compared to conventional cooling systems. Although our system requires a ceiling space reconfiguration, it does not require duct works and envelope retrofits. The comparative case study shows a potential 52% reduction in cooling energy demand from initial estimation. Considering the trade-offs, our system can be a good alternative for retrofit projects.
机译:该研究提出了使用膜辅助辐射面板,以改善热和潮湿气候中天然通风空间的热舒适度。这些辐射面板能够调节天然通风的空间,与传统的机械冷却系统是不切实际的。对于传统系统,可渗透的包络将导致能量浪费从在辐射表面上发生的调节空气逸出或冷凝。在我们的系统中,没有空调,并且通过使用透明的热辐射透明地将辐射表面与湿气空气分离来避免冷凝。膜辅助辐射面板是用于设计舒适的自然通风空间的建筑师的未自由化技术。我们提出了一种基于技术的冷却系统,并讨论建筑意义,特别是建筑物包络和机械空间要求的渗透性,以在一个天然通风的教室中采用该系统。我们的系统与传统的冷却系统进行了比较。虽然我们的系统需要吊顶空间重新配置,但它不需要管道工作和包络改造。比较案例研究表明,从初始估计降低了冷却能量需求的潜在52%。考虑到权衡,我们的系统可以是改造项目的良好替代方案。

著录项

  • 来源
    《Building research & information》 |2021年第6期|483-495|共13页
  • 作者单位

    Princeton Univ Andlinger Ctr Energy & Environm Princeton NJ 08544 USA;

    Princeton Univ Sch Architecture Princeton NJ 08544 USA|Swiss Fed Inst Technol Singapore ETH Ctr Singapore Singapore;

    Princeton Univ Andlinger Ctr Energy & Environm Princeton NJ 08544 USA|Princeton Univ Sch Architecture Princeton NJ 08544 USA;

    Berkeley Educ Alliance Res Singapore Singapore Singapore|Univ Calif Berkeley Ctr Built Environm Berkeley CA 94720 USA;

    Univ British Columbia Sch Architecture & Landscape Architecture Vancouver BC Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mixed-mode; thermal comfort; prototypes; performance-based buildings;

    机译:混合模式;热舒适;原型;基于绩效的建筑物;

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