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Influence of Moisture Dry-out on Hygrothermal Performance of Prefabricated Modular Renovation Elements

机译:水分干燥对预制模块化改造元素的湿热性能的影响

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Renovation with prefabricated modular panels is.one way to achieve high energy efficiency and quality both in production and installation processes. The 5-storey building, which is being fully renovated in Tallinn, Estonia, will be insulated with prefabricated modular renovation elements. The hygrothermal performance of the envelope was evaluated with calibrated dynamic hygrothermal simulations and with a mould index model, where calculation results were in good agreement with measured data and are therefore reliable for further research. The calculations were made to evaluate the hygrothermal risks in the building envelope and after the prefabricated modular elements were installed. The focus was on studying concrete wall's dry-out capability and the use of vapor barrier. The initial moisture content of the concrete wall and a right choice of air&vapor barrier layer has considerable impact on the entire envelope performance. As a result of this study, we claim that the risk of mould growth in this structure can be minimized, when the initial moisture content (IMC) of the existing concrete large panel element is w≤55 kg/m~3 and PE-foil as air&vapor barrier is used or when IMC is w≤75kg/m~3 and the oriented strand board (OSB) as vapor control layer or when IMC is w<≤ 10 kg/m~3 and smart vapor retarder (0.2 m
机译:使用预制模块化面板进行翻新。在生产和安装过程中实现高能量效率和质量的方法。这座5层高的建筑,在爱沙尼亚塔林经过全面装修,将与预制的模块化改造元素隔热。通过校准的动态湿热仿真和模具指数模型评估信封的湿热性能,计算结果与测量数据吻合良好,因此对进一步研究是可靠的。进行计算以评估建筑物包膜中的湿热风险,并在安装预制的模块化元件之后。重点是在研究混凝土墙的干出功能和蒸汽屏障的使用。混凝土墙的初始含水量和空气和蒸汽阻挡层的正确选择对整个包络性能具有相当大的影响。由于本研究,我们声称,当现有混凝土大面板元件的初始水分含量(IMC)为W≤55kg/ m〜3和PE-FOL时,可以最小化该结构中模具生长的风险。当使用空气和蒸汽屏障时或当IMC为W≤75kg/ m〜3时,以蒸汽控制层为定向的股线(OSB),或者当IMC为W <≤10kg/ m〜3和智能气相滞后时(0.2 m

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