论文标题

使用OpenFOAM,CFD模拟20 L容器中的湍流粉尘分散体

CFD simulations of turbulent dust dispersion in the 20 L vessel using OpenFOAM

论文作者

Islas, Alain, Fernández, Andrés Rodróguez, Betegón, Covadonga, Martínez-Pañeda, Emilio, Pandal, Adrián

论文摘要

尘埃爆炸是影响工业设施处理颗粒物固体的最危险事故之一。描述尘埃云的严重性参数对于尘埃爆炸的安全管理和风险评估至关重要。这些参数按照ASTM E1226或UNE 14034标准在20L球体容器中实验确定。由于它们的可重复性取决于与尘埃云相关的湍流水平,因此使用多相(气体固体)流的计算模型用于使用开源CFD COD OPENFOAM模拟分散过程。该模型已成功地根据商业CFD代码的文献和数值结果来成功验证该模型。此外,这项研究考虑了粒径对载体相位的湍流的影响,这表明颗粒会衰减其湍流强度。此外,该模型很好地预测了两涡流流量的形成,这对含粒子的流动的分布具有d <= 100 um的分布,因为大多数颗粒都集中在近壁区域。相反,对于用较大的颗粒(d = 200 um)的病例观察到尘埃云的提高均匀性,因为这些颗粒的惯性增加使它们能够进入再循环区域。

Dust explosions are among the most hazardous accidents affecting industrial facilities processing particulate solids. Describing the severity parameters of dust clouds is critical to the safety management and risk assessment of dust explosions. These parameters are determined experimentally in a 20L spherical vessel, following the ASTM E1226 or UNE 14034 standards. Since their reproducibility depends on the levels of turbulence associated with the dust cloud, a computational model of the multi-phase (gas-solid) flow is used to simulate the dispersion process with the open-source CFD code OpenFOAM. The model is successfully validated against experimental measurements from the literature and numerical results of a commercial CFD code. In addition, this study considers the impact of particle size on the turbulence of the carrier phase, suggesting that particles attenuate its turbulence intensity. Moreover, the model predicts well the formation of a two-vortex flow pattern, which has a negative impact on the distribution of the particle-laden flows with d<=100 um, as most of the particles concentrate at the near-wall region. Contrarily, an improved homogeneity of dust cloud is observed for a case fed with larger particles (d=200 um), as the increased inertia of these particles allows them to enter into the re-circulation regions.

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