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A numerical and analytical study of the effect of aspect ratio on the behavior of a round thermal

机译:纵横比对圆形导热性能影响的数值分析研究

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A round thermal is formed when an element of buoyant fluid is released instantaneously into a quiescent ambient. Although the thermal spreading rate is of primary importance to mathematical modeling, the reported values in the literature vary greatly. To identify possible factors affecting the thermal spreading rate, we investigated the effect of different initial conditions numerically by solving the unsteady Reynolds-averaged Navier-Stokes equations with a two-equation turbulence closure. The initial aspect ratio (i.e. length-to-diameter ratio) of the thermal was varied between 0.125-4.0, and the initial density differences was changed from 1 to 10 %. Results show that the spreading rate is greatly affected by the initial aspect ratio, which also explains the variations in earlier reported values. Following the numerical study, an analytical model using buoyant vortex ring theory is developed to predict the spreading rate of a thermal. The predictions show good agreement with the results from both the numerical simulations and previous experimental studies. Another simple analytical model is also presented to approximate the thermal induced flow, and is validated using the numerical simulations.
机译:当有浮力的流体瞬间释放到静态环境中时,就会形成圆形热。尽管热扩散速率对于数学建模至关重要,但文献中报道的值相差很大。为了确定影响热扩散速率的可能因素,我们通过求解具有两方程湍流闭塞的非稳态雷诺平均Navier-Stokes方程,以数值方式研究了不同初始条件的影响。热量的初始长宽比(即长径比)在0.125-4.0之间变化,初始密度差从1%更改为10%。结果表明,扩展率受初始纵横比的影响很大,这也解释了早期报告值的变化。在进行了数值研究之后,开发了使用浮涡环理论的分析模型来预测热量的扩散速率。这些预测与数值模拟和先前的实验研究的结果显示出很好的一致性。还提出了另一个简单的分析模型来近似热诱导流量,并使用数值模拟对其进行了验证。

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