静态混合器效率的仿真

J. Schöck, F. Muggli, S. Hirschberg
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引用次数: 0

摘要

苏尔寿公司采用CFD方法对静态混合器的性能和效率进行了预测。典型的混频器是SMX混频器和CompaX混频器。由于SMX混合器用于层流混合和高粘性流体的均质化,CompaX混合器适用于湍流区。对这些混合器进行了仿真,并进行了实测验证。评价效率的关键值是压力损失和混合质量。两种混合器的压力损失都可以通过CFD模拟直接得到。但由于层流的数值扩散明显高于实际分子扩散,因此无法通过CFD模拟直接预测层流混合器的混合质量。因此,采用轨迹法预测层流混合器的混合质量。用蒙特卡罗方法考虑了分子沿轨迹的扩散。对于紊流,扩散传质只起很小的作用。因此,可以直接从CFD模拟中获得混合质量。此外,对于由流动引起的作用在混合器元件上的力的结构分析,流体元件在混合器中的停留时间分布以及与管壁的热交换是特别感兴趣的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of the Efficiency of Static Mixers
Within the Sulzer Corporation the behavior and efficiency of static mixers is predicted by means of CFD. Typical mixers are the SMX mixer and the CompaX mixer. As the SMX mixer is used for laminar mixing and homogenization of high viscous fluids, the CompaX mixer is applied for turbulent flow regimes. Simulations carried out for these mixers have been validated with measurements. Key values to evaluate the efficiency are the pressure loss and mixing quality. The pressure loss for both mixer types can be directly gained from the CFD simulation. But it is not possible to predict the mixing quality of laminar mixers directly from CFD simulations as for laminar flows the numerical diffusion is significantly higher than the real molecular diffusion. Thus, to predict the mixing quality of laminar mixers a trajectory method is applied. The molecular diffusion along the trajectories is taken into consideration by a Monte Carlo method. For turbulent flows diffusive mass transfer plays only a minor role. Therefore, the mixing quality can be gained directly from the CFD simulation. Furthermore, for structural analysis the forces acting on the mixer elements induced by the flow, the residence time distribution of fluid elements in the mixer and heat exchange with the duct wall is of particular interest.
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