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A cylindrical self-consistent modelling of vegetal wools thermal conductivity

机译:植物羊毛导热系数的圆柱自洽模型

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摘要

In recent years, the fight against climate change has come to the fore. In this scope, the use of vegetal wools, which can store carbon dioxide, is particularly relevant for developing greenbuilding solutions. Moreover, considering their high porosity levels, the thermal performances of these materials can compete with conventional insulators ones. These performances are related to the microscale vegetal fibres specificities that are used in the wool manufacturing process. So, a self-consistent modelling approach is developed in order to model the vegetal wools thermal properties as a function of their microscale parameters. To do that, a simplifying assumption assimilates the fibres to a representative elementary volume based on a biphasic (including solid and fluid phases) cylindrical inclusion. This model has been validated in the specific case of a flow perpendicular to the fibres by comparison with experimental characterisations performed on four materials in real hygrothermal conditions and with data from literature. Thanks to a parametric analysis, it is finally shown that for high porosity values (> 95%), vegetal wools thermal properties present interesting values regardless of the solid phase thermal conductivity. (C) 2019 Elsevier Ltd. All rights reserved.
机译:近年来,应对气候变化的斗争日益突出。在此范围内,可以存储二氧化碳的植物毛的使用与开发绿色建筑解决方案特别相关。而且,考虑到它们的高孔隙率水平,这些材料的热性能可以与传统的绝缘子竞争。这些性能与羊毛生产过程中使用的微型植物纤维的特异性有关。因此,开发了一种自洽的建模方法,以便根据其微观参数对植物羊毛的热特性进行建模。为此,一个简化的假设将纤维同化为基于双相(包括固相和液相)圆柱形夹杂物的代表性基本体积。通过与在实际湿热条件下对四种材料进行的实验表征以及来自文献的数据进行比较,已在垂直于纤维的垂直流动的特定情况下验证了该模型。通过参数分析,最终表明,对于高孔隙率值(> 95%),植物羊毛的热性能显示出令人感兴趣的值,而与固相热导率无关。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Construction and Building Materials 》 |2020年第30期| 117123.1-117123.10| 共10页
  • 作者

  • 作者单位

    Cerema Ifsttar UMRAE Lab Strasbourg 11 Rue Jean Mentelin F-67035 Strasbourg France|Cerema BPE Team Lab Strasbourg 11 Rue Jean Mentelin F-67035 Strasbourg France|Univ Lyon ENTPE LTDS CNRS UMR 5513 3 Rue Maurice Audin F-69518 Vaulx En Velin France;

    Cerema Ifsttar UMRAE Lab Strasbourg 11 Rue Jean Mentelin F-67035 Strasbourg France;

    Univ Lyon ENTPE LTDS CNRS UMR 5513 3 Rue Maurice Audin F-69518 Vaulx En Velin France;

    Cerema BPE Team Lab Strasbourg 11 Rue Jean Mentelin F-67035 Strasbourg 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

    Vegetal wools; Thermal conductivity; Self-consistent method; Thermal performances;

    机译:植物羊毛;导热系数;自洽的方法;热性能;

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