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Airtightness of the window-wall interface in masonry brick walls

机译:砌体砖墙中的窗墙界面的气密性

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摘要

In recent decades there has been an increased focus on enhanced thermal resistance of building components and as a consequence, the relative importance of airtightness on the overall energy losses of buildings has increased significantly. The construction industry requires practical information on the airtightness of individual construction elements and building envelope interfaces. A literature review on the airtightness of window-wall interfaces has shown that no experimental data are available for masonry construction. This paper offers an investigative study on the airtightness of window-wall interfaces of masonry walls, for 13 different installation methods. The results show that the selected solutions cover a wide range of airtightness levels, from 0m³/h.m up to 31m³/h.m at 50 Pa. The experiments have permitted determining that a very good performance can be obtained by using polyurethane foam and caulking, airtight membranes, polyurethane foam and plywood framing, and plaster and caulking. On the contrary, mineral fibre insulation, a partial fill with polyurethane foam and plaster without caulking should be avoided when good airtightness is required. Furthermore, a comprehensive methodology for error calculation is offered, based on error propagation of partially correlated parameters, including the effect of measurement errors, extraneous air leakage and conversion to standard boundary conditions.
机译:在最近的几十年中,人们越来越关注提高建筑构件的耐热性,因此,气密性对建筑物整体能量损失的相对重要性已大大增加。建筑行业需要有关单个建筑元素和建筑物围护结构接口的气密性的实用信息。关于窗-墙界面的气密性的文献综述表明,没有可用于砌体结构的实验数据。本文针对13种不同的安装方法,对砌体墙的窗墙界面的气密性进行了调查研究。结果表明,所选的解决方案在50 Pa的压力范围内可覆盖0m³/ hm至31m³/ hm的宽范围内的气密性。实验允许确定使用聚氨酯泡沫和填缝的气密膜可获得非常好的性能。 ,聚氨酯泡沫和胶合板框架以及石膏和嵌缝。相反,当需要良好的气密性时,应避免矿物纤维绝缘,用聚氨酯泡沫和石膏部分填充而不填缝。此外,基于部分相关参数的误差传播,提供了一种用于误差计算的综合方法,包括测量误差,外部空气泄漏和转换为标准边界条件的影响。

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