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COMPUTATIONAL SIMULATION OF TURBULENT NATURAL CONVECTION IN A VOLUMETRICALLY HEATED SQUARE CAVITY

机译:体积加热方腔中湍流自然对流的计算模拟

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This work aimed to analyze the turbulent natural convection in a volumetrically heated fluid with Prandtl number equal to 0.6, representing the oxide material layer of a corium. Four turbulence models were scrutinized in order to select the most appropriate one for turbulence modeling based on Reynolds Averaged Navier-Stokes equations (RANS) of natural convection in a molten core. The turbulence models scrutinized are the standard k-ε, Shear Stress Transport (SST), low-Reynolds- k-ε (Launder-Sharma) and also an elliptic blending model v~2-f. The simulations were carried out in a square cavity with isothermal walls, for Rayleigh numbers (Ra) ranging from 10~9 to 10~(11). The numerical simulations, performed in an open-source of Computational Fluid Dynamics (CFD) - OpenFOAM (Open Field Operation and Manipulation), provided outcomes of average Nusselt number as function of Ra number, which were in a reasonable agreement with an experimental correlation and other authors' simulations. It was also possible to observe the limitations and robustness of each model analyzed, enabling to conclude that the most adequate turbulence models for the present physical problem were SST and v~2-f.
机译:这项工作旨在分析体积加热的流体中的湍流自然对流,该流体的Prandtl值等于0.6,代表了皮质的氧化物层。仔细检查了四个湍流模型,以便根据熔融岩心中自然对流的雷诺兹平均Navier-Stokes方程(RANS)选择最合适的湍流模型。考察的湍流模型为标准k-ε,剪切应力传递(SST),低雷诺k-ε(Launder-Sharma)以及椭圆混合模型v〜2-f。模拟是在具有等温壁的方腔中进行的,瑞利数(Ra)为10〜9到10〜(11)。在开放源代码的计算流体动力学(CFD)-OpenFOAM(开放现场操作和操纵)中进行的数值模拟提供了平均Nusselt数与Ra数的函数的结果,这些结果与实验相关性和其他作者的模拟。还可以观察到所分析的每个模型的局限性和鲁棒性,从而得出结论,对于当前的物理问题,最合适的湍流模型是SST和v〜2-f。

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