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Heat and Mass Coupled Transfer Combined with Freezing Process in Building Exterior Envelope

机译:热量和质量耦合转移结合建筑外壳的冷冻过程

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In severe cold area, the exterior layers of envelope usually experience seasonal freezing /thawing due to cold climate in winter. However, it can lead to severe problems especially in the newly-completed building. In order to analyze the drying of envelope on building initial use, the heat and moisture coupled transfer of building envelope in severe cold area Harbin, China was simulated with the modeling method developed. The modeled result was analyzed. It is concluded that the drying rate of the newly-completed building envelope is significantly high in the first year, especially in the first few months. Insulation performance of the wall in the first winter is most serious due to the high initial moisture and freezing ice content in insulation layer. For the simulated envelope, the freezing of the moisture content especially that in insulation layer had notable effect on heat transfer coefficient (thermal resistance), and the maximum of heat transfer coefficient of the modeled envelope in the first year winter is about 7% higher than that in the tenth year, which is taken as final hygral state.
机译:在严重的寒冷地区,外部包络通常会在冬季冷气候时经历季节性冷冻/解冻。然而,它可能导致严重的问题,特别是在新的建筑物中。为了分析建筑初始使用的包围的干燥,通过开发的建模方法模拟了哈尔滨严重寒冷地区建筑信封的热水和水分耦合转移。分析了建模结果。结论是,新建建筑信封的干燥速度在第一年明显高,特别是在最初几个月。由于绝缘层中的高初始湿气和冷冻冰含量,第一冬季中墙体的绝缘性能最严重。对于模拟的封套,含水量的冷冻尤其是在绝缘层中对传热系数(热阻)的显着影响,并且第一年冬季建模包络的传热系数的最大值约为7%在第十年,这是作为最终的人民州。

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