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Numerical investigation on thermal performance and correlations of double skin facade with buoyancy-driven airflow

机译:浮力驱动的双层幕墙热性能及其相关性的数值研究

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This paper briefly reviews the primary parameters for a double skin facade (DSF) design. The research presents an integrated and iterative modeling process for analyzing the thermal performance of DSF cavities with buoyancy-driven airflow by using a building energy simulation program (BESP) along with a computational fluid dynamics (CFD) package. A typical DSF cavity model has been established and simulated. The model and the modeling process have been calibrated and validated against the experimental data. The validated model was used to develop correlations that can be implemented in a BESP, allowing users to take advantage of the accuracy gained from CFD simulations without the required computation time. Correlations were developed for airflow rate through cavity, average and peak cavity air temperature, cavity air pressure, and interior convection coefficient. The correlations are valuable for "back of the envelope" calculation and for examining accuracy of zonal-model-based energy and airflow simulation programs.
机译:本文简要回顾了双层外墙(DSF)设计的主要参数。该研究提出了一种集成的迭代建模过程,该过程通过使用建筑能量模拟程序(BESP)和计算流体动力学(CFD)软件包来分析具有浮力驱动气流的DSF腔的热性能。建立并模拟了典型的DSF腔模型。已根据实验数据对模型和建模过程进行了校准和验证。经过验证的模型用于开发可以在BESP中实现的相关性,从而使用户可以利用CFD模拟获得的精度,而无需花费计算时间。建立了通过腔的气流速率,腔的平均和峰值空气温度,腔的空气压力以及内部对流系数的相关性。相关性对于“封底”计算以及检查基于区域模型的能量和气流模拟程序的准确性非常有用。

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