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COMPUTER SIMULATION OF THERMAL IMPACT OF AIR INFILTRATION THROUGH MULTILAYERED EXTERIOR WALLS

机译:通过多层外墙进行空气渗滤热影响的计算机模拟

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Convective air circulation occurring through wall layers is frequently observed in building envelopes. Significant thermal coupling can take place between the incoming cold/warm air and the wall structure, thereby modifying the thermal performances of the envelope. This paper presents an unsteady threedimensional numerical heat and air transfer model, which was developed to characterize the air leakage effect on the thermal performance of a complete multilayered exterior wall. The modeling for coupling between heat transfer and air infiltration is compared with the commercial software FEMLAB. The results show the substantial impact of air infiltration on the thermal performance of the wall system. Overall heat losses (by conduction and due to the infiltrated air) are evaluated depending on the airflow rates and the air leakage routes. For an airflow rate of 0.001 kg/s, the heat recovery factor varies between 7 % and 15% depending on the air flow path. The reduction of heating load at different scenarios and airflow rates reaches 8%.
机译:通过壁层发生的对流空气循环经常在建筑包络中观察到。在进入的冷/暖空气和墙壁结构之间可以发生显着的热耦合,从而改变包膜的热性能。本文介绍了一个不稳定的三维数值热量和空气转移模型,开发了对漏气效应对完整多层外墙的热性能的表征。与商业软件Femlab进行比较了用于传热与空气渗透之间的耦合的建模。结果表明,空气渗透对墙壁系统的热性能的显着影响。根据气流速率和空气泄漏途径,评估总热损失(通过传导和渗透的空气)。对于0.001kg / s的气流速率,根据空气流动路径,热回收率随着7%和15%而变化。不同场景和气流速率下的加热负荷的减少达到8%。

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