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Laboratory study on hygrothermal behavior of three external thermal insulation systems

机译:三种外保温系统湿热行为的实验室研究

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This work focuses on the hygrothermal behavior of three external thermal insulation systems: one ETICS including EPS insulation and two ventilated cladding systems including either mineral or biobased insulation. These systems were applied on a rendered hollow concrete wall and tested simultaneously between two climatic chambers. Thermocouples, humidity sensors and heat flux sensors allow investigating the hygrothermal behavior of the retrofitted wall at different stages: just after the application of insulations systems, during safe and critical use. The measured data are compared to numerical results obtained by solving a heat and moisture transfer model.Results highlight the key role of adhesive on ETICS, which provides a significant moisture source during the application and forms an additional moisture transfer resistance within the wall. Results on ventilated cladding systems show that using biobased insulation may delay and even prevent the risk of interstitial condensation. The comparison between numerical and experimental results is satisfying for temperature and heat flow density, but underline the sensitivity of relative humidity to the sorption capacity of hygroscopic building materials. In addition, the systems design has a great influence on the condensation risks. (C) 2020 Elsevier B.V. All rights reserved.
机译:这项工作侧重于三个外部隔热系统的湿热行为:一个ETIC,包括EPS绝缘层和两个通风包层系统,包括矿物或生物保存绝缘。这些系统施加在呈现的中空混凝土壁上并在两个气候腔室之间同时进行测试。热电偶,湿度传感器和热通量传感器允许调查不同阶段改造的壁的湿热行为:在安全和批判期间在绝缘系统的应用之后。将测量的数据与通过求解热量和湿度转移模型获得的数值结果进行比较。结果突出了粘合剂对EtiCS的关键作用,其在施加期间提供了显着的水分源,并在墙壁内形成额外的防潮性。通风包层系统的结果表明,使用生物化绝缘可能会延迟甚至阻止间质凝结的风险。数值和实验结果之间的比较符合温度和热流密度,而是强调相对湿度与吸湿建筑材料吸附能力的敏感性。此外,系统设计对凝结风险有很大影响。 (c)2020 Elsevier B.v.保留所有权利。

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