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INDOOR AIR HUMIDITY VARIATIONS AND ITS EFFECTS ON THE MOISTURE PERFORMANCE OF BUILDING ENVELOPE

机译:室内空气湿度变化及其对建筑信封湿气性能的影响

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With the current enhancements moisture engineering analysis of building envelope structures becomes a critical design element. Building envelopes design is often modeled using advanced hygrothermal models and customized for particular interior and exterior environmental loads. This is always conducted by assuming interior environmental conditions that are decoupled by the contributions of the envelope itself. This paper presents the results of whole building hygrothermal simulations, its effects on the indoor air conditions and on the building envelope. The hygrothermal performance of two different rooms with the same thermal and moisture loads is presented. The results show that materials with hygroscopic capacity have the ability to improve the performance of building envelope structures even to such level that condensation and mold growth conditions are eliminated. A state of the art hygrothermal modeling analysis is used to quantitatively assess the performance of both hygroscopic capacity and indoor inhabitant moisture generation.
机译:随着电流增强,建筑包络结构的水分工程分析成为一个关键的设计元素。建筑信封设计通常使用先进的湿热型号进行建模,并为特定的内部和外部环境负载定制。这始终通过假设由信封本身的贡献解耦的内部环境条件进行。本文介绍了整个建筑湿热模拟的结果,它对室内空气条件和建筑信封的影响。提出了两个不同的热量和水分载荷的两个不同房间的湿热性能。结果表明,具有吸湿能力的材料具有改善构建包膜结构的性能,即使在消除凝结和模具生长条件的水平上也是如此。用于定量评估吸湿能力和室内居民水分产生的性能的现有技术的湿热模拟分析。

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