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Prediction of Moisture Distribution in Closed Ribbed Panel for Roof

机译:屋顶封闭肋板水分分布的预测

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Nowadays one of the possibilities to improve energy efficiency is the use of building elements with low air permeability, for example, sandwich panels with steel sheeting. However, these panels have one important disadvantage - a relatively small load-bearing capacity. This can be prevented by reinforcing the panel with antiseptized birch plywood ribs. For wood-based materials prediction of hygrothermal performance is important to avoid rot. Currently the methodology of ISO 13788:2012 is widely used assuming that moisture flux passes through the building envelope of any material. This assumption is not completely accurate with regard to a closed structure where no penetration of ambient humidity is possible. Therefore, in order to predict the distribution of moisture in such structure with the surfaces exposed to different temperatures and to assess the hazards of rot for plywood ribs, a methodology for closed building envelope is presented. To provide insight into expected results according to both methodologies, estimation for individual case with constant environmental conditions is given. According to the methodology for the closed building envelope no free water will occur. Therefore, it is believable that also no rot will be observed. This is contrary to the assessment according to the methodology of ISO 13788:2012, which predicts condensation.
机译:如今,提高能源效率的可能性之一是使用具有低透气性的建筑元件,例如具有钢板的夹层板。然而,这些面板具有一个重要的缺点 - 承重能力相对较小。通过用防化桦木胶合肋来防止这一点可以防止。对于木材的材料预测湿热性能对于避免腐烂是重要的。目前,ISO 13788:2012的方法是广泛使用的,假设水分通量穿过任何材料的建筑物包络。对于封闭结构,该假设并不完全准确,其中不可能渗透环境湿度。因此,为了预测这种结构中水分的分布,具有暴露于不同温度的表面,并评估胶合板肋骨的腐烂,提出了一种封闭建筑包络的方法。根据两种方法提供洞察预期的结果,给出了持续环境条件的单个案例的估计。根据封闭式建筑包络的方法,不会发生自由水。因此,可信它也不会观察到腐烂。这与根据ISO 13788:2012的方法的评估相反,预测凝结。

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