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Study on thermal stratification of an enclosure containing two interacting turbulent buoyant plumes of equal strength

机译:包含两个强度相等的相互作用湍流浮羽的围护结构的热分层研究

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The emptying-filling box model with two interacting turbulent buoyant plumes of equal strength is investigated in this paper using theoretical analysis and numerical simulation. Theoretical models are deduced and validated to quantitatively predict the thermal stratification height of an enclosure containing two interacting buoyant plume sources with different separations between the two plumes. The variation in the thermal stratification height with the separation between the two plumes is validated by numerical simulation. A threshold for the separation between two plumes is defined to determine whether the two buoyant plumes in the enclosure are interacting or independent, which is also confirmed by numerical simulation. Simultaneous equations containing height difference between the top and bottom openings of the enclosure and effective area of the top and bottom openings of the enclosure are proposed to predict the threshold. These results can be used as a reference on natural ventilation design for buildings with interacting heat sources to make use of the effect of indoor thermal plumes and create a suitable indoor environment.
机译:通过理论分析和数值模拟,研究了具有相等强度的两个相互作用的湍流浮羽的倒空填充箱模型。推导并验证了理论模型,以定量预测包含两个相互作用的浮羽源的封闭空间的热分层高度,两个浮羽之间的间距不同。通过数值模拟验证了热分层高度随两个羽流之间的距离的变化。定义了两个羽流之间的分离阈值,以确定围护中的两个浮力羽是相互作用的还是独立的,这也可以通过数值模拟来确认。提出了包含该外壳的顶部和底部开口之间的高度差以及该外壳的顶部和底部开口的有效面积的联立方程来预测阈值。这些结果可以用作具有相互作用热源的建筑物的自然通风设计的参考,以利用室内热羽流的作用并创建合适的室内环境。

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