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Numerical simulation of convective instabilities in a liquid layer submitted to an inclined gradient of temperature.

机译:液体层中的对流稳定性的数值模拟,提交到温度倾斜梯度的液体层。

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In this paper, numerical results of convective instabilities in a horizontal liquid layer, with an upper free surface, are presented. The liquid layer has been submitted to an inclined gradient of temperature (i.e. a horizontal gradient of temperature superimposed to a vertical one). Silicone oil with a Prandtl number Pr = 102 has been used as a working liquid. The thickness of the liquid layer has been varied from 1.7 mm to 3.2 mm to study the influence of both gravity and surface tension effects on the formation of convective patterns. 3D numerical simulations have been carried out using "Gambit" as a mesh generator and the numerical code "Fluent", which is based on the finite volume method. The obtained results have been compared to experimental results of other authors and a good agreement has been achieved. This fact allows validating our modelling and numerical simulation procedure.
机译:本文介绍了具有上自由表面的水平液体层中的对流稳定性的数值结果。液体层已被提交至倾斜的温度梯度(即温度的水平梯度叠加到垂直的梯度)。具有Prandtl Number Pr = 102的硅油已被用作工作液体。液体层的厚度从1.7mm到3.2mm变化,以研究重力和表面张力效应对对流模式的形成的影响。使用“Gambit”作为网格发生器和数值代码“Fluent”进行了数值模拟,这是基于有限卷方法。获得的结果已与其他作者的实验结果进行了比较,并且已经实现了良好的一致性。这一事实允许验证我们的建模和数值模拟程序。

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