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Coupled heat transfer analysis and experiments to evaluate the radiative cooling potential of concrete and green roofs for buildings

机译:耦合传热分析和实验,以评估混凝土和绿色屋顶的辐射冷却潜力

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摘要

Improving building energy efficiency is one of the most important challenges towards the mitigation of climate change concerns. Buildings use significant amount of energy for cooling loads. Development of new night-time and day-time radiative cooling modalities by roofs is essential for reducing the energy consumption during the summer months. If a surface is desired to be kept cool while exposed to the sun, it should have (ⅰ) the maximum reflection of solar energy at visible wavelength range, and (ⅱ) the maximum radiative emission from the surface at atmospheric radiation bands (8-13 μm wavelength range). In this study, reinforced concrete panels and three different types of plant-covered roof layers were investigated for their potential use for passive cooling applications, including moss, cactus and green leaves. Fourier transform infrared spectroscopy (FTIR) measurements were conducted to determine the absorbance of different samples at infrared wavelengths. In addition, reverse heat leak method was used to determine the effective conductivity values (R-values). The power of cooling parameter of each sample was determined first, and after that a coupled radiation and conduction heat transfer analysis was carried out to evaluate their insulation potential. It was demonstrated that moss is a better candidate to be used as a radiative cooling material, and it is a better insulator than the other tested materials.
机译:提高建筑能源效率是减轻气候变化问题的最重要挑战之一。建筑物使用大量的能量来冷却负荷。屋顶的新夜间和日间辐射冷却方式的开发对于降低夏季的能源消耗至关重要。如果希望在暴露于太阳时保持凉爽的表面,它应该具有(Ⅰ)太阳能在可见波长范围内的最大反射,并且(Ⅱ)从大气辐射带的表面上最大辐射发射(8- 13μm波长范围)。在这项研究中,研究了钢筋混凝土板和三种不同类型的植物覆盖的屋顶层,以潜在使用用于被动冷却应用,包括苔藓,仙人掌和绿叶。进行傅里叶变换红外光谱(FTIR)测量以确定红外波长下不同样品的吸光度。此外,使用反热泄漏方法来确定有效的电导率值(R值)。首先确定每个样品的冷却参数的功率,之后进行耦合辐射和传导传热分析以评估它们的绝缘电位。据证明,苔藓是用作辐射冷却材料的更好的候选者,并且是比其他测试材料更好的绝缘体。

著录项

  • 来源
    《Heat and mass transfer》 |2020年第8期|2605-2617|共13页
  • 作者单位

    Center for Energy Environment and Economy (CEEE) Ozyegin University 34794 Istanbul Cekmekoy Turkey;

    Southern Illinois University Edwardsville Edwardsville IL USA;

    Center for Energy Environment and Economy (CEEE) Ozyegin University 34794 Istanbul Cekmekoy Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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