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Natural convection heat transfer enhancement using adiabatic block: Optimal block size and Prandtl number effect

机译:使用绝热块提高自然对流传热:最佳块尺寸和普朗特数效应

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Numerical methods are used to solve the finite volume formulation of the two-dimensional mass, momentum and energy equations for steady-state natural convection inside a square enclosure. The enclosure consists of adiabatic horizontal walls and differentially heated vertical walls, but it also contains an adiabatic centrally-placed solid block. The aim of the study is to delineate the effect of such a block on the flow and temperature fields. The parametric study covers the range 10~3 ≤ Ra ≤ 10~6 and is done at three Pr namely, 0.071, 0.71 and 7.1. In addition the effect of increasing the size (characterized by the solidity Φ) of the adiabatic block is ascertained. It is found that the wall heat transfer increases, with increase in the ?, until it reaches a critical value Φ = Φ_(opt), where the wall heat transfer attains its maximum. Further increases in the block size beyond Φ_(OPT), reduces the wall heat transfer, for as the block size becomes larger than the conduction dominant core size it reduces the thermal mass of the convecting fluid. A steady-state heat transfer enhancement of 10% is observed for certain Ra and Pr values. Useful correlations predicting this optimum block size and the corresponding maximum heat transfer as a function of Ra and Pr are proposed; these predict within ±3%, the numerical results.
机译:数值方法被用来求解二维质量,动量和能量方程的有限体积公式,该方程用于方形罩壳内的稳态自然对流。外壳由绝热水平壁和差热垂直壁组成,但也包含绝热居中放置的实心块。该研究的目的是描述这种块对流场和温度场的影响。参数研究涵盖了10〜3≤Ra≤10〜6的范围,并在三个Pr值(即0.071、0.71和7.1)下进行。另外,确定了增加绝热块的尺寸(以硬度Φ为特征)的效果。发现壁传热随着increases的增加而增加,直到达到临界值Φ=Φ_(opt),此时壁传热达到最大值。块尺寸进一步增加到超过Φ_(OPT),会减少壁的传热,因为当块尺寸变得大于传导主导磁芯尺寸时,它会减少对流流体的热质量。对于某些Ra和Pr值,观察到稳态传热增强了10%。提出了有用的相互关系,这些相互关系预测该最佳的块尺寸以及相应的最大传热与Ra和Pr的函数关系;这些预测数值结果在±3%以内。

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