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A computational method for calculating heat transfer and airflow through a dual-airflow window

机译:一种通过双风窗计算传热和气流的计算方法

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摘要

An airflow window has great potential for conserving energy and improving indoor air quality in residential buildings. Existing airflow windows use a single airflow path, and their energy performance can be studied using several computational models. A dual-airflow window with triple glazing can conserve more energy than a single-airflow window, because the former works like a cross-counterflow heat exchanger. However, no suitable computer programs can be used to evaluate the energy performance of the dual-airflow window. This paper proposes a four-step computational method that uses both computational fluid dynamics (CFD) and coded radiation calculations to determine airflow and heat transfer through the window. Experimental tests on a full-scale dual-airflow window system were used to obtain various indoor and outdoor air and window surface temperatures for validating the computer method. The agreement between the computed and measured temperatures is very good.
机译:通风窗具有节约能源和改善住宅建筑室内空气质量的巨大潜力。现有的气流窗仅使用一条气流路径,并且可以使用多种计算模型来研究其能量性能。具有三层玻璃的双气流窗比单气流窗可以节省更多的能量,因为前者的工作原理类似于横流换热器。但是,没有合适的计算机程序可用于评估双风窗的能量性能。本文提出了一种四步计算方法,该方法同时使用计算流体动力学(CFD)和编码辐射计算来确定通过窗口的气流和热传递。在全尺寸双风窗系统上进行的实验测试用于获得各种室内和室外空气以及窗表面温度,以验证计算机方法的有效性。计算温度和测量温度之间的一致性非常好。

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