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Flow pattern evolution in natural convection cooling from an array of discrete heat sources in a rectangular cavity at various orientations

机译:自然对流冷却中矩形腔中不同方向的一系列离散热源的流型演变

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摘要

Experimental data are presented for laminar natural convection cooling of water in a rectangular cavity with a 3×3 array of heaters on one wall, and the cavity at various inclined angles. Generally, heaters in the same row have close temperatures, due to weak velocity in the horizontal direction. Numerical simulations in 2-D and 3-D are also reported, showing flow and temperature pattern evolution at different inclined angles. In particular, the case of horizontal cavity heated from below reveals flow fields of the toroidal, bimodal or Rayleigh-Benard convection type, depending on the Rayleigh number, and this is also the most desirable orientation for heat transfer. When the enclosure is inclined toward the horizontal orientation (heated from below), the flow and temperature fields become complex and distorted.
机译:给出了一个实验数据,该实验是在矩形腔中的水进行层流自然对流冷却的情况下,矩形腔的一面壁上装有3×3的加热器阵列,并且该腔以不同的倾斜角度。通常,由于水平方向上的速度较弱,因此同一行中的加热器温度接近。还报告了2-D和3-D的数值模拟,显示了在不同倾斜角度下的流量和温度模式演变。特别地,从下面加热水平腔的情况揭示了环形,双峰或瑞利-贝纳德对流类型的流场,这取决于瑞利数,这也是传热的最理想方向。当外壳向水平方向倾斜(从下方加热)时,流场和温度场变得复杂且扭曲。

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