抹灰对黎巴嫩沿海地区历史砂岩热湿特性的影响

IF 0.1 0 ARCHITECTURE
Hoda Zeayter, Ibtihal Y. El-Bastawissi, H. Mohsen
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引用次数: 0

摘要

在黎巴嫩建筑遗产的保护实践中,一种不同寻常的趋势是,保护砂岩免受风化因素影响的外部石膏层正在因美观原因而被移除。这些建筑位于沿海地区,夏季气候炎热潮湿,冬季气候温和寒冷。本文讨论了历史砂岩承重墙的外部和内部抹灰的重要性,通过一个计算工具,强调抹灰在历史石头的湿热行为中的作用,目的是验证祖先在覆盖其建筑物的围护结构以避免这些天然石头退化的做法。本文采用的方法是比较定量研究,使用名为Wufi Pro的湿热模拟建模工具,这是德国斯图加特弗劳恩霍夫建筑物理研究所(IBP)开发的用于评估建筑围护结构湿度条件的标准程序。结果是通过组成建筑围护结构的高孔隙率砂岩组件的热量和水分通量的值。这些值代表了石头的湿热性能,它们在两种情况下进行比较,一种没有抹灰,而另一种有传统抹灰的内层和外层。对结果的分析是指导一个结论,有利于两种情况之一,考虑到通过抹灰的手段避免的间隙凝结威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE IMPACT OF PLASTERING ON THE HYGROTHERMAL BEHAVIOUR OF HISTORICAL SANDSTONE LOCATED IN THE COASTAL REGION OF LEBANON
In an unusual trend in the conservation practice of built heritage in Lebanon, the external plaster layer, which protects the sandstone from weathering factors, is being removed for aesthetic reasons. These buildings are in a coastal region, hot humid climate in the summer and moderate cold weather in the winter. This paper discusses the importance of external and internal plastering of the historical sandstone bearing wall, by the mean of a computational tool that underlines the role of the plastering in the hygrothermal behaviour of the historical stone, in the aim to validate the practice of the ancestors in covering the envelope of their buildings to avoid the degradation of these natural stones. The methodology adopted in this paper is a comparative quantitative study, using a hygrothermal simulation modelling tool, named Wufi Pro, which is a standard program for evaluating moisture conditions in building envelopes developed by the Fraunhofer Institute for Building Physics (IBP) Stuttgart, Germany. The results are in the form of values for the heat and moisture fluxes through the high porosity sandstone assembly that composes the building envelope. These values represent the hygrothermal behaviour of the stone, and they are compared between two cases, one without plastering while the second has the inner and outer layers of traditional plaster. The analysis of the results is guiding to a conclusion that favours one of the two cases, taking into consideration the interstitial condensation threat avoided by the means of plastering.
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