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Experimental validation of coupled heat, air and moisture transfer modeling in multilayer building components

机译:多层建筑构件中热,空气和湿气耦合传递模型的实验验证

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摘要

The present paper lies to study the coupled heat, air and moisture transfer in multi-layer building materials. Concerning the modeling part, the interest is to predict the hygrothermal behavior, by developing a macroscopic model that incorporates simultaneously the diffusive, con-vective and conductive effects on the building elements. Heat transfer is considered in the strongly coupled situation where the mass and heat flux are temperature, vapor pressure and total pressure dependents. The model input parameters are evaluated experimentally through the development of various experimental prototypes in the laboratory. Thereafter, an experimental setup has been established in order to evaluate the hygrothermal process of several multilayer walls configurations. The experimental procedure consists to follow the temperature and relative humidity evolutions within the samples thickness, submitted to controlled and fixed boundary conditions. This procedure points out diverging conclusion between different testing materials combinations (e.g. red-brick and polystyrene). In fact, the hygrothermal behavior of the tested configurations is completely dependent on both materials selection and their thermophysical properties. Finally, comparison between numerical and experimental results showed good agreement with acceptable errors margins with an average of 3%.
机译:本文旨在研究多层建筑材料中热,空气和湿气的耦合传递。关于建模部分,感兴趣的是通过开发宏观模型来预测湿热行为,该模型同时包含对建筑元素的扩散,对流和传导效应。在质量和热通量取决于温度,蒸气压和总压的情况下,在强耦合情况下考虑传热。通过在实验室中开发各种实验原型,对模型输入参数进行实验评估。此后,建立了一个实验装置,以评估几种多层壁结构的湿热过程。实验程序包括跟踪样品厚度内温度和相对湿度的变化,并使其处于受控和固​​定的边界条件下。该程序指出了不同测试材料组合(例如红砖和聚苯乙烯)之间的不同结论。实际上,测试配置的湿热行为完全取决于材料的选择及其热物理性质。最后,数值和实验结果之间的比较显示出良好的一致性,可接受的误差范围平均为3%。

著录项

  • 来源
    《Heat and mass transfer》 |2016年第10期|2257-2269|共13页
  • 作者单位

    LaSIE, UMR 7356 CNRS University of La Rochelle, Avenue Michel Crepeau, 17042 La Rochelle cedexl, France;

    LMT-Cachan/ENS Cachan/CNRS/Universite Paris Saclay, 61 Avenue du President Wilson, 94230 Cachan, France;

    LaSIE, UMR 7356 CNRS University of La Rochelle, Avenue Michel Crepeau, 17042 La Rochelle cedexl, France;

    LaSIE, UMR 7356 CNRS University of La Rochelle, Avenue Michel Crepeau, 17042 La Rochelle cedexl, France;

    LaSIE, UMR 7356 CNRS University of La Rochelle, Avenue Michel Crepeau, 17042 La Rochelle cedexl, France;

  • 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

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