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首页> 外文期刊>Computers & Chemical Engineering >Investigation of the accuracy of the extrapolation method for the lattice Boltzmann simulation of viscous fluid flow in a Maxblend impeller system
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Investigation of the accuracy of the extrapolation method for the lattice Boltzmann simulation of viscous fluid flow in a Maxblend impeller system

机译:Maxblend叶轮系统中粘性流体流动的格子Boltzmann模拟外推方法的精度研究

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This paper offers a thorough assessment on the performance of the extrapolation method for the lattice Boltzmann simulation of viscous mixing flows. This method appears to be well-suited for the treatment of the complex boundary conditions found in various mixing systems. Here, the ability to simulate accurate power consumption and pumping capacity is evaluated on several configurations of the Maxblend mixing system, which has proven efficient in a wide range of applications. First, the impact of the boundary conditions on the spatial convergence of the lattice Boltzmann method (LBM) is determined on the 3D Couette flow, clearly showing that small modifications of the boundary conditions may reduce the accuracy of the predicted shear rate and power. Second, a parallel LBM scheme was used to simulate fluid flow within a Maxblend mixing system. For the unbaffled configuration, the simulated power consumption and the pumping capacity are observed to be in good agreement with experimental data and finite element simulation results. The effect of the bottom clearance is also successfully evaluated, suggesting that the standard bottom clearance is not optimum in the transitional regime. Lastly, results for the most geometrically complex case (baffled configuration) indicate that the power consumption is affected by numerical perturbations appearing around the moving impeller. Overall, these results show that, when combined with the extrapolation method for the treatment of boundary conditions, the LBM is an efficient tool for the investigation of viscous flow in mixers of industrial relevance.
机译:本文对粘性混合流的格子Boltzmann模拟的外推方法的性能进行了全面评估。该方法似乎非常适合处理各种混合系统中发现的复杂边界条件。在这里,可以通过Maxblend混合系统的几种配置来评估模拟准确的功率消耗和抽气能力的能力,事实证明该混合系统在多种应用中都是有效的。首先,在3D Couette流上确定边界条件对晶格Boltzmann方法(LBM)的空间收敛的影响,清楚地表明,边界条件的较小修改可能会降低预测的剪切速率和功率的准确性。其次,使用并行LBM方案来模拟Maxblend混合系统中的流体流动。对于畅通无阻的配置,观察到的模拟功耗和抽运能力与实验数据和有限元模拟结果非常吻合。还成功评估了底部间隙的影响,这表明标准底部间隙在过渡状态下不是最佳的。最后,对于几何形状最复杂的情​​况(折流板配置)的结果表明,功耗受运动的叶轮周围出现的数值扰动的影响。总体而言,这些结果表明,与外推法结合以处理边界条件时,LBM是研究工业相关混合器中粘性流的有效工具。

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