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Hygrothermal properties analysis of cross-laminated timber wall with internal and external insulation systems

机译:内外绝缘系统交叉层压木材壁的湿热特性分析

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Environmental energy is being studied actively around the world due to the effects of climate change, global warming, and energy policies. Energy policies are being reinforced to reduce building energy consumption. Therefore, environmental-friendly and sustainable building materials have been used to reduce energy consumption. The cross-laminated timber (CLT) wall is an environmental-friendly material that stacks layers at right angles, and bonds them together to form large solid panels. However, there is no standard for CLT structure walls in Korea. This study focuses on analyzing the hygrothermal properties of the CLT wall by showing the water content of the CLT wall, mold growth risk of CLT by WUFI simulation, and energy load by DesignBuilder using the climatic conditions of Seoul, Korea. CLT walls Ext_EPS, Ext_FG, and Ext_EPSFG based on an external insulation system, and walls Int_EPS, Int_FG, and Int_EPSFG based on an internal insulation system, were prepared for simulation analysis. The total water content (TWC) of Wall Ext_EPSFG was measured to be 8.67 kg/m2, which was the lowest TWC. This indicates that the TWC of the external insulation system wall is lower than that of the internal insulation system wall. Furthermore, the water content (WC) of structure based on the external insulation system is lower than that based on the internal insulation system. This indicates that the WC of Wall Ext_FG, measured to be a maximum 8.69% of WC, is lower than Wall Int_EPS, measured to be a maximum 10.45% of WC. According to the risk of mold growth, this indicates that all of the CLT wall layers have low mould growth risk, and the maximum mould index of walls Ext_FG and Int_EPSFG was measured to be 0.019. As a result of the hygrothermal analysis in this paper, CLT walls based on an external insulation system are more suitable than the internal insulation system. Therefore, this study analyzed the energy consumption of CLT walls based on the external insulation system, which was found to be lower than the energy consumption of the internal insulation system walls. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于气候变化,全球变暖和能源政策的影响,世界各地正在全世界研究环境能源。正在加强能源政策以降低建筑能源消耗。因此,已使用环境友好型和可持续的建筑材料来降低能耗。交叉层压木材(CLT)壁是一种环保材料,其成直角堆叠层,并将它们粘合在一起以形成大的固体板。但是,韩国的CLT结构墙没有标准。本研究侧重于通过展示CLT壁的水含量,WUFI模拟的CLT壁的水含量,使用韩国的气候条件来分析CLT壁的含水量,CLT的霉菌生长风险,以及设计性能。基于外部绝缘系统的CLT墙壁ext_eps,ext_fg和ext_epsfg基于基于内部绝缘系统的墙壁INT_EPS,INT_FG和INT_EPSFG,用于模拟分析。壁ext_epsfg的总水含量(TWC)测量为8.67kg / m2,是TWC最低。这表明外部绝缘系统壁的TWC低于内部绝缘系统壁的TWC。此外,基于外部绝缘系统的结构的水含量(WC)低于基于内部绝缘系统的结构。这表明墙壁ext_fg的WC测量为最多8.69%的WC,低于壁INT_EPS,测量为WC的最多10.45%。根据霉菌的风险,这表明所有CLT壁层具有低模液风险,并且壁ext_fg和int_psfg的最大模具指数测量为0.019。由于本文的湿热分析,基于外部绝缘系统的CLT壁比内部绝缘系统更适合。因此,本研究分析了基于外部绝缘系统的CLT壁的能量消耗,这被发现低于内部绝缘系统壁的能量消耗。 (c)2019 Elsevier Ltd.保留所有权利。

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