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Numerical study of natural convection heat transfer in a horizontal channel provided with rectangular blocks releasing uniform heat flux and mounted on its lower wall

机译:水平通道自然对流换热的数值研究

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Two-dimensional laminar steady natural convection in a horizontal channel with the upper wall maintained cold at a constant temperature and the lower one provided with rectangular heating blocks, periodically distributed, has been studied numerically. The blocks are connected with adiabatic segments and their surfaces are assumed to release a uniform heat flux. The study is performed using air as the working fluid (Pr = 0.72). The spacing between the blocks is maintained constant (C=l'/H' = 0.5) while the Rayleigh number and the relative height of the blocks are respectively varied in the ranges 10~2 ≤ Ra ≤ 2 × 10~6 and 1/8 ≤ B = h'/H' ≤ 1/2. The effect of the computational domain length on the multiplicity of solutions is investigated. Flow and temperature fields are also produced for various combinations of the governing parameters. It is demonstrated that, depending on the length of the computational domain and the governing parameters, different flow structures can be obtained.
机译:数值研究了水平通道的二维层流稳态自然对流,其上壁在一定温度下保持低温,而下壁则设有周期性分布的矩形加热块。这些块与绝热段相连,并且假定它们的表面释放出均匀的热通量。使用空气作为工作流体(Pr = 0.72)进行研究。块之间的间距保持恒定(C = l'/ H'= 0.5),而块的瑞利数和相对高度分别在10〜2≤Ra≤2×10〜6和1 / 8≤B = h'/ H'≤1/2。研究了计算域长度对解的多重性的影响。还为控制参数的各种组合生成了流场和温度场。结果表明,根据计算域的长度和控制参数,可以获得不同的流结构。

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