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The influence of radiation heat transfer on the prediction of air flows in rooms under natural ventilation

机译:辐射换热对自然通风条件下房间空气流动预测的影响

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Scale experiments that use water of different salinities to represent air at different temperatures are a common tool used to investigate room air ventilation. However, it has been shown that these experiments cannot replicate the effects of radiation heat transfer in a room. This paper illustrates the importance of accounting for radiative effects when modeling airflow, especially regarding the air temperature profile. Computational fluid dynamics simulations were performed of flow in heated rooms with and without radiation. It was found that when radiation was ignored the temperature of the air surrounding the occupants was significantly lower, by 2-4 degrees C, than when including its effects. In addition, the surface temperature of the heat sources was consistently higher (up to 17 degrees C) when ignoring radiation. Finally, air velocity in the space was higher in simulations that included radiation. These differences have an important impact on the predicted thermal comfort of the occupants, since neglecting radiative heat transfer would result in an inaccurate estimation of operative temperature. We conclude that water scale models do not provide an accurate description of flow behavior in a space, so desired thermal and flow conditions might not be achieved in buildings designed or assessed using water scale models. For these reasons, theoretical models or computer simulations that omit radiation will also give misleading predictions of room temperature distribution. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用不同盐度的水代表不同温度下的空气的规模实验是用于研究室内空气流通的常用工具。但是,已经表明,这些实验无法复制房间中辐射传热的影响。本文说明了在对气流建模时考虑辐射效应的重要性,尤其是在空气温度曲线方面。在有辐射和无辐射的情况下,对加热室内的流动进行了计算流体动力学模拟。发现当忽略辐射时,与包括其影响时相比,乘员周围的空气温度显着降低了2-4摄氏度。此外,忽略辐射时,热源的表面温度始终较高(最高17摄氏度)。最后,在包含辐射的模拟中,空间中的空气速度更高。这些差异对乘员的预计热舒适度具有重要影响,因为忽略辐射热传递会导致对工作温度的不准确估计。我们得出的结论是,水位模型无法提供对空间中流动行为的准确描述,因此在使用水位模型设计或评估的建筑物中可能无法实现所需的热量和流量条件。由于这些原因,省略辐射的理论模型或计算机模拟也将给出有关室温分布的误导性预测。 (C)2016 Elsevier B.V.保留所有权利。

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