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Evaluation of Sub-Zonal Airflow Models for the Prediction of Local Interior Boundary Conditions - Natural and Forced Convection Cases

机译:评估局部内部边界条件的分区气流模型的评估-自然和强迫对流情况

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摘要

Currently, researchers are striving to advance the possibilities to calculate the integrated phenomena of heat, air and moisture flows in buildings, with specific focus on the interactions between the building zones and building components. This paper presents an investigation of the capability and applicability of the sub-zonal airflow model to predict the local indoor environmental conditions, as well as the local surface transfer coefficients near building components. Two test cases were analyzed for, respectively, natural and forced convection in a room. The simulation results predicted from the sub-zonal airflow models are compared to experimental data and numerical computational fluid dynamics (CFD) results. The study shows that sub-zonal models combined with an appropriate surface transfer coefficient model are able to give reliable predictions of the local indoor environmental conditions and surface transfer coefficients near the building component for the analyzed cases. The relatively short computation time and flexibility of the sub-zonal model makes the application attractive for transient simulation of heat, air and moisture transport in buildings. However, the availability of appropriate reference conditions, for example experimental or numerical results, is a prerequisite for the development of a reliable sub-zonal model.
机译:当前,研究人员正在努力提高计算建筑物中热量,空气和湿气流动的综合现象的可能性,特别是关注建筑物区域与建筑物构件之间的相互作用。本文研究了分区气流模型预测局部室内环境条件以及建筑物组件附近局部表面传递系数的能力和适用性。对两个测试用例分别分析了房间中的自然对流和强制对流。从分区气流模型预测的模拟结果与实验数据和数值计算流体动力学(CFD)结果进行了比较。研究表明,分区模型与适当的表面传递系数模型相结合,能够为分析案例提供对当地室内环境条件和建筑物组件附近表面传递系数的可靠预测。次区域模型的相对较短的计算时间和灵活性使该应用程序对建筑物中热,空气和湿气传输的瞬态模拟具有吸引力。但是,适当的参考条件(例如实验或数值结果)的可用性是开发可靠的分区模型的先决条件。

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