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COMPUTATIONAL SIMULATION OF HYGROTHERMAL PERFORMANCE OF PLASTERS WITH ENHANCED MOISTURE ACCUMULATION CAPABILITY

机译:增强水分累积能力储氢湿热性能的计算模拟

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Series of computational simulations are performed within this paper in order to investigate the hygrothermal response of several plasters with enhanced accumulation properties. The newly developed plasters are modified from the reference sample by adding various amounts of super absorbent polymers. Then, the basic physical, thermal and hygric properties are determined in the laboratory conditions and subsequently used as an input parameter in the computational simulations. The simulation output showed that even a thin layer of exterior and interior plaster may significantly affect the hygrothermal performance of the entire building envelope due to increased moisture and thermal buffering of the surface layers. Differences in relative humidity distribution across the studied construction were generally up to 10 % between individual plasters, differences of temperature distribution were mostly negligible, except for the cases when sudden changes of surface temperature were observed. Then, the thermal buffering was evident and the differences of temperature in surface layers were up to 4 °C among studied plasters.
机译:在本文中进行了一系列计算模拟,以研究几种具有增强的累积性能的液体摩擦响应。通过加入各种量的超级吸收性聚合物,从参考样品中修饰新开发的膏药。然后,在实验室条件下确定基本物理,热和湿润特性,随后用作计算模拟中的输入参数。模拟输出显示,即使是外部和内部石膏的薄层也可能显着影响整个建筑物的湿热性能,因为表面层的水分和热缓冲增加。在所研究的结构上相对湿度分布的差异通常在各个腐烂器之间的10%高达10%,除了观察到表面温度突然变化的情况外,温度分布的差异主要是可忽略的。然后,认为热缓冲是明显的,并且研​​究在研究层中的温度差异高达4°C。

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