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首页> 外文期刊>International Communications in Heat and Mass Transfer >Numerical analysis of natural convection for a porous rectangular enclosure with sinusoidally varying temperature profile on the bottom wall
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Numerical analysis of natural convection for a porous rectangular enclosure with sinusoidally varying temperature profile on the bottom wall

机译:底壁温度曲线呈正弦变化的矩形多孔壳体自然对流的数值分析

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Numerical investigations of steady natural convection flow through a fluid-saturated porous medium in a rectangular enclosure with a sinusoidal varying temperature profile on the bottom wall were conducted. All the walls of the enclosure are insulated except the bottom wall which is partially heated and cooled. The governing equations were written under the assumption of Darcy-law and then solved numerically using finite difference method. The problem is analyzed for different values of the Rayleigh number Ra in the range 10 ≤ Ra ≤ 1000, aspect ratio parameter AR in the range 0.25 ≤ AR ≤ 1.0 and amplitude λ of the sinusoidal temperature function in the range 0.25 ≤ λ ≤ 1.0. It was found that heat transfer increases with increasing of amplitude λ and decreases with increasing aspect ratio AR. Multiple cells were observed in the cavity for all values of the parameters considered.
机译:进行了稳态的自然对流流经矩形外壳中流体饱和多孔介质的研究,该外壳在底壁上具有正弦变化的温度分布。除了部分被加热和冷却的底壁之外,外壳的所有壁都是绝缘的。控制方程是在达西定律的假设下编写的,然后使用有限差分法进行数值求解。针对在10≤Ra≤1000范围内的瑞利数Ra的不同值,在0.25≤AR≤1.0范围内的纵横比参数AR和在0.25≤λ≤1.0范围内的正弦温度函数的振幅λ分析问题。已经发现,传热随着振幅λ的增加而增加,并且随着纵横比AR的增加而减少。对于所考虑参数的所有值,在空腔中观察到多个单元。

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