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Laminar natural convection in an air-filled square cavity with partitions on the top wall

机译:在充满空气的方腔中的层流自然对流,顶壁上有隔板

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The laminar natural convection in an air-filled square cavity with a partition on the top wall was experimentally investigated. Temperature measurements and flow visualizations were performed for cases with heated and cooled vertical walls (corresponding to a global Grashof number Gr_H of approximately 1.3 × 10~8) and non-dimensional top wall temperatures 0_T of 0.56 (insulated) to 2.3. Experiments were performed with an aluminum partition with non-dimensional height H_P/H of 0.0625 and 0.125 attached to the top wall at x/H = 0.1,0.2, 0.4 and 0.6. The blockage effect and/or the thermal effect of the partition resulted in changes to the temperature and flow fields, but were mainly limited to the vicinity of the partition. The partition on the heated top wall resulted in a recirculating flow between the partition and the heated vertical wall. For a given partition height, the structure of this recirculating flow was dependent on the partition location and 0_T. A thermal boundary layer developed along the rear surface of the partition due to the thermal effect of the partition. The ambient temperature outside the boundary layer and Nu near the corner region was affected by the partition height due to the change in the recirculating flow and due to the thermal effect on the rear surface of the partition.
机译:实验研究了顶壁上有隔板的充气方腔内的层流自然对流。对加热和冷却的垂直壁(对应于全球Grashof数Gr_H约为1.3×10〜8)和无量纲顶壁温度0_T为0.56(绝缘)至2.3的情况进行温度测量和流动可视化。在铝隔板上进行了试验,该铝隔板在x / H = 0.1、0.2、0.4和0.6的情况下以0.0625和0.125的非尺寸高度H_P / H连接到顶壁。隔板的阻塞效应和/或热效应导致温度和流场的变化,但主要限于隔板附近。加热的顶壁上的隔板导致隔板和加热的垂直壁之间的再循环流。对于给定的分隔高度,该再循环流的结构取决于分隔位置和0_T。由于隔板的热效应,沿隔板的后表面形成了热边界层。边界层外部和拐角区域附近的Nu周围的环境温度受隔板高度的影响,这归因于再循环流量的变化以及对隔板背面的热效应。

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