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Determining thermal stratification in rooms with high supply momentum

机译:确定高供应动量房间中的热分层

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Computational Fluid Dynamics simulations of a typical occupied office were performed to study the effects of ventilation parameters (supply momentum and heat gain intensity) and inlet geometry (height and area of the supply) on the temperature profile of the air in the space. A knowledge of this profile is critical to ensure that the occupants are comfortable according to commonly used standards. Different room configurations were characterized in terms of their Archimedes number, which compares the effects of buoyancy and supply momentum, and dimensionless geometric variables. A high Archimedes space was found to be divided into a warm region of uniform temperature above the occupants and a zone where the temperature increases approximately linearly with height. In a low Archimedes space the air is mixed by the supply jet in the lower part of the room, especially near the outlet, resulting in this area having uniform temperature. However, the supply jet was found to be less efficient at mixing the air near the ceiling, resulting in higher temperatures in this zone than with higher Archimedes numbers. For a given Archimedes number, as the supply area increased, the air temperature was found to decrease in the lower part of the room but to increase near the ceiling. A high inlet increased the vertical mixing in the room. Correlations were proposed to establish the temperature profile within 5% of the temperature rise of the room. The inputs of the correlations are readily available in multi-zone software, facilitating their integration in this kind of software. The proposed correlations will allow the user of the multi-zone software to evaluate comfort conditions more accurately, while maintaining the high speed, simplicity and design flexibility of the multi-zone models. (C) 2016 Elsevier Ltd.
机译:进行了一个典型占用办公室的计算流体动力学模拟,以研究通风参数(供应动量和热量获取强度)和入口几何形状(供应的高度和面积)对空间中空气温度分布的影响。了解这一特征对于确保乘员根据常用标准感到舒适至关重要。根据阿基米德数来表征不同的房间配置,该数比较浮力和供应动量以及无量纲几何变量的影响。发现阿基米德的高空间被划分为乘员上方温度均匀的温暖区域和温度随高度近似线性增加的区域。在较低的阿基米德空间中,空气通过供气喷嘴在房间下部(尤其是在出口附近)混合,从而使该区域的温度均匀。但是,发现供应射流在混合天花板附近的空气时效率较低,导致该区域的温度高于阿基米德数。对于给定的阿基米德数,随着送风面积的增加,发现房间下部的空气温度下降,但靠近天花板的温度上升。高进气口增加了房间内的垂直混合。提出了相关性以将温度曲线建立在房间温度上升的5%之内。相关性的输入在多区域软件中很容易获得,从而促进了它们在这种软件中的集成。所提出的相关性将允许多区域软件的用户更准确地评估舒适度条件,同时保持多区域模型的高速,简单和设计灵活性。 (C)2016爱思唯尔有限公司

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