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Impact of combined moisture buffering capacity of a hemp concrete building envelope and interior objects on the hygrothermal performance in a room

机译:大麻混凝土建筑围护结构和室内物体的组合湿气缓冲能力对房间湿热性能的影响

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摘要

In this article, a hygrothermal building model, taking into account the building envelope, indoor heat and moisture sources, indoor environment and moisture buffering capacity of interior objects, is presented and validated with the test cases found in the literature. The model is used to study the impact of hemp concrete and the moisture buffer capacity of the interior elements on the prediction of the hygrothermal comfort in the building. The numerical results show that the use of hemp concrete in buildings can ensure good hygrothermal comfort. Besides, taking into account the effect of moisture buffering of indoor objects increases the building performance. Our results also suggest that neglecting moisture transfer through the envelope increases significantly the predicted percentage of dissatisfied indices and reduces the acceptability of indoor air quality during the occupied period. This study also confirmed that the combined relative humidity-sensitive ventilation system and moisture buffering capacity of building envelope and of interior objects is a very efficient way to reduce the heating energy consumption.
机译:本文提出了一种湿热建筑模型,该模型考虑了建筑围护结构,室内热和湿气源,室内环境以及室内物体的湿气缓冲能力,并通过文献中的测试案例进行了验证。该模型用于研究大麻混凝土和内部元素的水分缓冲能力对建筑物湿热舒适性的预测。数值结果表明,在建筑物中使用大麻混凝土可以确保良好的湿热舒适性。此外,考虑到室内物体的水分缓冲效果,可以提高建筑性能。我们的结果还表明,忽略水分通过包膜的传递会大大增加不满意指标的预测百分比,并降低占用期间室内空气质量的可接受性。这项研究还证实,将相对湿度敏感的通风系统与建筑物围护结构和内部物体的湿气缓冲能力相结合是减少供暖能耗的非常有效的方法。

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