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CFD prediction of mixing time in anaerobic digesters.

机译:CFD预测厌氧消化池中混合时间。

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摘要

A computational fluid dynamics (CFD) model for the calculation of mixing time in anaerobic digesters with mechanical mixing was developed. CFD simulation was carried out in two stages: (1) using a multiple reference frame (MRF) approach to predict steady-state turbulent flow, and (2) solving a transient scalar transport equation to obtain the mixing time based on the converged flow fields. Prediction of the mixing time in a cylindrical vessel with a Rushton turbine impeller was validated against experimental data from the literature. Flow simulation tests were conducted to determine economical mesh cells, appropriate turbulence model, and numerical approach. Sensitivity analysis was used to evaluate the effects of the position of an injected tracer, amount of tracer injected, and rheological properties on the mixing time. Moreover, mixing performance in a full-scale anaerobic digester with four mixing designs was examined using the mixing time.
机译:建立了用于计算厌氧消化池机械混合时间的流体动力学模型。 CFD模拟分两个阶段进行:(1)使用多参考系(MRF)方法预测稳态湍流,(2)求解瞬态标量输运方程式,以基于收敛流场获得混合时间。根据文献中的实验数据验证了使用Rushton涡轮叶轮的圆柱形容器中混合时间的预测。进行了流动模拟测试,以确定经济的网格单元,合适的湍流模型和数值方法。灵敏度分析用于评估注入的示踪剂的位置,注入的示踪剂的量以及流变性对混合时间的影响。此外,使用混合时间检查了具有四种混合设计的大型厌氧消化池的混合性能。

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