首页> 外文期刊>Solar Energy >Application of phase change materials, thermal insulation, and external shading for thermal comfort improvement and cooling energy demand reduction in an office building under different coastal tropical climates
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Application of phase change materials, thermal insulation, and external shading for thermal comfort improvement and cooling energy demand reduction in an office building under different coastal tropical climates

机译:相变材料,隔热和外部遮阳用于在不同沿海热带气候下的办公楼中的热舒适改善和冷却能量需求减少

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摘要

Architectural techniques have evolved over the century. Presently, climatic conditions require architecture that is more adaptable to the environment. Coastal regions have been recognised to be the most vulnerable to the effects of climate change. Thus far, limited research has offered some strategies to mitigate the solar effect on thermal comfort and energy demand in coastal tropical regions. To address this problem, this study was conducted with the aim of evaluating, analysing, comparing, and discussing the impacts of passive strategies on thermal comfort and energy consumption (as well as the introduction of photovoltaic panels) in coastal tropical climate regions. All simulations were conducted for a period of one year using the Design Builder software. The results demonstrate that phase change materials (PCMs) have a significant effect on thermal comfort and energy consumption in an office under different coastal tropical climates. The combination of PCMs with thermal insulation has the ability to increase the comfort rate by up to 3% while decreasing the cooling energy consumption by approximately 12% in three studied climate zones. In a naturally ventilated building, the most significant increase in the comfort rate is observed with the introduction of PCMs in combination with thermal insulation, whereas thermal insulation, along with external shading, results in the most significant reduction in the cooling energy consumption of an air-conditioned office building (approximately 19%) in three studied climates. Furthermore, the introduction of photovoltaic panels enables us to generate 43-79% of the total energy consumption of the studied office building.
机译:建筑技术在本世纪中发展了。目前,气候条件需要更适应环境的架构。沿海地区被认可是最容易受气候变化影响的群体。到目前为止,有限的研究提供了一些策略,以减轻沿海热带地区热舒适和能源需求的太阳能影响。为了解决这一问题,该研究是以评估,分析,比较和讨论被动策略对沿海热带气候区的热舒适和能耗(以及光伏板引入)的影响的影响。所有模拟都使用设计构建器软件进行了一年的一年。结果表明,相变材料(PCM)对不同沿海热带气候下的办公室的热舒适和能耗产生了显着影响。 PCMS与保温的组合能够将舒适度提高3%,同时将冷却能耗降低,在三个研究的气候区中大约12%。在天然通风的建筑物中,通过引入PCM与隔热材料的推出,观察到舒适率最显着的增加,而绝热和外部遮荫导致空气冷却能耗的最显着降低在三个研究的气候中,监管办公楼(约19%)。此外,光伏面板的引入使我们能够产生所学习的办公楼总能耗的43-79%。

著录项

  • 来源
    《Solar Energy》 |2020年第9期|458-470|共13页
  • 作者单位

    Beneficiary AXA Res Fund Postdoctoral Grant Res Leaders Fellowships AXA SA 25 Ave F-75008 Paris France|Univ Liege ArGEnCo Local Environm Management & Anal LEMA Allee Decouverte 9 Quartier Polytech 1 B-4000 Liege Belgium|Univ Sydney Indoor Environm Qual Lab Sch Architecture Design & Planning Sydney NSW 2006 Australia;

    Univ Antsiranana Polytech Higher Sch Dept Civil Engn Antsiranana Madagascar;

    Univ Liege ArGEnCo Local Environm Management & Anal LEMA Allee Decouverte 9 Quartier Polytech 1 B-4000 Liege Belgium|Natl Fund Sci Res FRS FNRS Rue Egmont 5 B-1000 Brussels Belgium;

    Univ Fianarantsoa Dept Comp Sci Fianarantsoa Madagascar;

    Univ Antsiranana Polytech Higher Sch Appl Thermal Lab Antsiranana Madagascar;

    Polytech Higher Sch Antananarivo Dept Elect Engn Antananarivo Madagascar;

    Beneficiary AXA Res Fund Postdoctoral Grant Res Leaders Fellowships AXA SA 25 Ave F-75008 Paris France;

    Univ Liege ArGEnCo Local Environm Management & Anal LEMA Allee Decouverte 9 Quartier Polytech 1 B-4000 Liege Belgium;

  • 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

    Phase change material; Passive strategy; Thermal comfort; Energy simulation; Office thermal performance;

    机译:相变材料;被动策略;热舒适;能量仿真;办公室热性能;

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