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Numerical estimation of time lags and decrement factors for wall complexes including Multilayer Thermal Insulation, in two different climatic zones

机译:在两个不同气候带的包括多层隔热在内的墙体的时滞和减量因子的数值估计

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摘要

In the current contribution, time lags and decrement factors for a building wall including different Multilayer Thermal Insulation (MTI) configurations have been calculated numerically. For this investigation purpose, a numerical model which can take care of composite walls was developed. The combined conduction, radiation and convection heat transfer equation was solved explicitly via a control volume discretization. In order to investigate the thermal behavior of a wall under certain outdoor climates, meteorological data that served as boundary conditions were applied to the outer surface of this wall. The outdoor air temperatures were averaged over a number of years after been obtained from hourly measurements in both locations under study. Regarding the solar radiation, it was calculated using a clear-sky model during the summer period. The influence of geographic coordinates' location on the insulating performance of MTI applications was investigated while the wall configurations were supposed to be located in two different climatic zones. The selection of a particular wall configuration involved not only the outdoor climate, but also the whole building characteristics, orientation, etc. The results of the present study are useful for further development in order to conceive and design the optimum MTI configuration, adjusted in specific geographic coordinates and orientations.
机译:在目前的贡献中,已对包含不同多层隔热(MTI)配置的建筑墙体的时滞和减量因子进行了数值计算。为了该研究目的,开发了一种能够处理复合墙的数值模型。通过控制体积离散化明确地解决了传导,辐射和对流组合传热方程。为了调查在某些室外气候下墙壁的热行为,将气象数据作为边界条件应用于该墙壁的外表面。从研究中的两个位置的每小时测量值获取室外空气温度后,将其平均数年。关于太阳辐射,在夏季使用晴空模型进行计算。在假定墙体配置位于两个不同的气候区域时,研究了地理坐标位置对MTI应用的隔热性能的影响。特定墙面配置的选择不仅涉及室外气候,还涉及整个建筑的特征,方向等。本研究的结果对于进一步开发有用,以便构思和设计最佳MTI配置,并根据具体情况进行调整地理坐标和方向。

著录项

  • 来源
    《Applied Energy》 |2012年第2012期|p.480-491|共12页
  • 作者单位

    Universite de Lyon, Lyon F-69003, ENTPE, FRE 3237, Building and Civil Engineering Department, Building Sciences Laboratory, 3 rue Maurice Audin, F-69120, Vaulx-en-Velin Cedex, France;

    Universite de Lyon, Lyon F-69003, ENTPE, FRE 3237, Building and Civil Engineering Department, Building Sciences Laboratory, 3 rue Maurice Audin, F-69120, Vaulx-en-Velin Cedex, France;

    Universite de Lyon, Lyon F-69003, ENTPE, FRE 3237, Building and Civil Engineering Department, Building Sciences Laboratory, 3 rue Maurice Audin, F-69120, Vaulx-en-Velin Cedex, France;

    National Kapodistrian University of Athens, Physics Department, Croup Building Environmental Research, Panepistimioupolis, Building Physics 5, 15784 Athens, Zografou, Greece;

  • 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
  • 关键词

    multilayer thermal insulation; bioclimatic design; passive solar design; energy saving; energy efficient buildings; thermal inertia;

    机译:多层隔热生物气候设计;被动式太阳能设计;节能;节能建筑;热惯性;

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