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Hygrothermal evaluation of hemp concrete at wall and room scales: Impact of hysteresis and temperature dependency of sorption curves

机译:HEMP混凝土在墙壁和房间尺度上的湿热评估:吸附曲线滞后和温度依赖性的影响

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摘要

In the context of global warming associated with the excess of energy consumption, energy saving and environmental sustainability in buildings have become significant issues at both national and European levels. Therefore, the adoption of energy-efficiency measures in new and renovated dwellings will increase the demand for thermal insulation, which is crucial to improve the housing comfort by reducing the heat loss through the building envelope. Over the past two decades, several bio-based materials have been used in building thermal insulation, such as hemp concrete. Promoting the use of hemp concrete in new constructions and restoration of existing buildings first requires a validation of its hygrothermal behavior at both wall and building scales. For this, several models dealing with various physical aspects of hemp concrete were developed to understand their impact on the prediction of changes in temperature and relative humidity. These physical phenomena include hemp concrete hygroscopic hysteresis and thermal dependency of sorption curves. The preliminary results show that hysteresis has a significant influence on the numerical prediction in the short-term, while temperature dependency has less influence at the wall scale. The next part of this article is devoted to the study of these phenomena at the room scale by monitoring the internal conditions and energy consumption of a virtual hemp concrete office. The results highlight the fact that hysteresis and thermal dependency have low impact on indoor conditions, which could probably be related to the other parameters at the room scale.
机译:在与超额能耗相关的全球变暖的背景下,建筑物中的节能和环境可持续性已成为国家和欧洲水平的重要问题。因此,在新的和经过翻新的住宅中采用能效措施将增加对热绝缘的需求,这是通过降低通过建筑包络的热量损失来改善壳体舒适性至关重要。在过去的二十年中,在建造隔热材料中使用了几种基于生物的材料,例如大麻混凝土。促进在新建筑中使用HEMP混凝土并恢复现有建筑物首先需要验证其在墙壁和建筑物尺度上的湿热行为。为此,开发了处理大麻混凝土各种物理方面的若干模型,以了解它们对对温度和相对湿度变化的预测的影响。这些物理现象包括HEMP混凝土吸湿滞后和吸附曲线的热依赖性。初步结果表明,滞后对短期数值预测具有显着影响,而温度依赖性对墙尺度的影响较小。本文的下一部分通过监测虚拟HEMP混凝土办公室的内部条件和能耗,致力于在房间规模上研究这些现象。结果突出了滞后和热依赖性对室内条件影响低的事实,这可能与房间规模的其他参数有关。

著录项

  • 来源
    《Journal of building physics》 |2020年第3期|183-224|共42页
  • 作者单位

    Research Group of Engineering Sciences GRESPI SFR Condorcet FR CNRS 3417 University of Reims-Champagne-Ardenne Reims France;

    Research Group of Engineering Sciences GRESPI SFR Condorcet FR CNRS 3417 University of Reims-Champagne-Ardenne Reims France;

    Research Group of Engineering Sciences GRESPI SFR Condorcet FR CNRS 3417 University of Reims-Champagne-Ardenne Reims France Department of Mechanical Engineering The International University of Beirut (BIU) Beirut Lebanon;

    Faculty of Engineering Section Ⅱ Lebanese University Roumieh Lebanon;

    Research Group of Engineering Sciences GRESPI SFR Condorcet FR CNRS 3417 University of Reims-Champagne-Ardenne Reims France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hemp concrete; numerical validation; hysteresis; temperature dependency; wall scale; room scale; SPARK;

    机译:大麻混凝土;数值验证;滞后;温度依赖;墙鳞;房间规模;火花;

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