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首页> 外文期刊>HVAC&R research >Contribution to the Study of Multicellular Flows Inside Two-Dimensional Rectangular and Pinched Insulated Glazing Cavities
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Contribution to the Study of Multicellular Flows Inside Two-Dimensional Rectangular and Pinched Insulated Glazing Cavities

机译:对二维矩形和挤压绝缘玻璃腔体内多细胞流动的研究的贡献

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This paper describes the results of an investigation aimed at examining secondary cells in two-dimensional high aspect ratio cavities, such as those encountered in insulated glazing units (IGU). Numerically, the governing transient equations are solved using a co-located equal order control-volume finite element (CVFEM) approach. Velocity fields are obtained experimentally using a particle image velocimetry (PIV) system. Results for a rectangular cavity with an aspect ratio of 40 and Ra - 9524 are presented first. The secondary cell structure present for such conditions is well captured experimentally and compares favorably with corresponding numerical results. Experimentally, the results show that the secondary cells are in movement toward the bottom of the cavity. Flow structure in two different two-dimensional pinched cavities with an aspect ratio of 20 and Ra = 41606 and 28879 is also examined numerically. The main flow in such cavities is impeded by the restriction at the center, which tends to lower the overall Nusselt number by approximately 28% and 35% when the center plate deflections are 0.5 and 0.75 cm, respectively. Finally, for a center plate deflection of 0.75 cm, it is shown that the number of secondary cells is time dependent.
机译:本文介绍了旨在检查二维高深宽比腔中的二次电池的研究结果,例如在绝缘玻璃窗(IGU)中遇到的那些。在数值上,控制瞬态方程使用同位的等阶控制体积有限元(CVFEM)方法求解。速度场是使用粒子图像测速(PIV)系统通过实验获得的。首先给出纵横比为40和Ra-9524的矩形腔的结果。在这种条件下存在的二次电池结构在实验上得到了很好的捕获,并与相应的数值结果进行了比较。实验上,结果表明,次生细胞正在向空腔底部移动。还用数值方法检查了纵横比为20且Ra = 41606和28879的两个不同的二维收缩腔中的流动结构。此类腔体中的主流受到中心位置的限制,当中心板的挠度分别为0.5和0.75 cm时,总努塞尔数趋于降低约28%和35%。最后,对于0.75cm的中心板挠度,表明二次电池的数量与时间有关。

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