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Hygrothermal characterization of a fictitious homogenized porous material to describe multiphase heat and moisture transport in massive historic walls

机译:虚拟均质多孔材料的湿热表征描述大量历史墙体的多相热和水分运输

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The hygrothermal analysis of historical building envelopes is an important part of renovation concepts for existing buildings. Using dynamic hygrothermal simulation is an effective approach to predict moisture-related damage, such as the risk of mold infestation or susceptibility to frost damage. However, modeling a historic wall of brick/stone and mortar joints with a detailed two- or three-dimensional model is complex and time-consuming. Old masonry is often simplified into a one-dimensional stone/brick layer in hygrothermal simulations, whereby mortar joints are neglected. In a previous work, we identified cases where this method led to unacceptable simplifications. This study presents a method to replace a complex historical masonry (our reference), which consists of different material components with a fictitious homogenized porous material. The aim is to optimize the material properties of the homogenized material so that the behavior of the reference model is well approximated for the most important applications. The method is applied and validated on nine combination of three mortars with five different stones and bricks. Finally, the satisfactory behavior of the homogenized material under dynamic conditions is verified for the praxis example of an internally insulated wall in different climatic conditions by comparing it with its two-dimensional reference model. The improvements in using the developed method with respect to the one-dimensional stone/brick layer approach are considerable especially for hygrometric parameter and are more pronounced the more different the hygrothermal properties of the materials in the reference model are. (C) 2020 The Authors. Published by Elsevier Ltd.
机译:历史建筑信封的湿热分析是现有建筑物改造概念的重要组成部分。使用动态湿热仿真是一种有效的方法来预测与水分相关的损伤,例如模塑侵扰或对霜冻损伤的易感性的风险。然而,使用详细的两维模型建模砖/石头和砂浆关节的历史墙壁是复杂且耗时的。旧砌体通常被简化为湿热模拟中的一维石/砖层,其中灰浆接头被忽略了。在以前的工作中,我们确定了这种方法导致了不可接受的简化的情况。本研究提出了一种替代复杂的历史砌体(我们的参考)的方法,该方法由具有虚拟均质的多孔材料的不同材料成分组成。目的是优化均质材料的材料特性,使得参考模型的行为非常近似为最重要的应用。该方法应用于三个砂浆的九个组合,有五个不同的石头和砖块。最后,通过将其与其二维参考模型进行比较,验证了在不同气候条件下的内绝缘壁的Praxis实例的均质化材料在动态条件下的令人满意的行为。使用开发方法相对于一维石/砖层方法的改进非常特别适用于湿法参数,并且更明显的是参考模型中材料的湿热性质越多。 (c)2020作者。 elsevier有限公司出版

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