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Influence of non-Newtonian fluid on transient operation of a liquid packaging machine: a combined 1D-3D approach

机译:非牛顿流体对液体包装机瞬态运行的影响:1D-3D组合方法

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This paper investigates the predictive capabilities of numerical simulation for addressing the actual operation of the hydraulic system of a filling machine for beverage packaging processes. The lumped and distributed parameter approach is compared to the full CFD simulation of the filling system and the accuracy of the results obtained is assessed in case of Newtonian and non-Newtonian fluids. First, the 0D-1D model of the complete hydraulic system of the machine filling process is constructed and validated against experimental measurements carried out using water as an operating fluid. Afterward, a combined 1D/3D simulation is carried out in order to simulate the real control strategy of the machine as well as to accurately determine the flow dynamic within the piping. Finally, the two approaches are confronted when using a non-Newtonian fluid and their advantages and limitations are outlined.
机译:本文研究了数值模拟的预测能力,以解决饮料包装过程中灌装机液压系统的实际运行问题。将集总和分布参数方法与填充系统的完整CFD模拟进行比较,并评估在牛顿流体和非牛顿流体情况下获得的结果的准确性。首先,构造并完成了机器灌装过程中整个液压系统的0D-1D模型,并针对使用水作为工作流体进行的实验测量进行了验证。然后,进行组合的1D / 3D模拟,以模拟机器的实际控制策略并准确确定管道内的流动动态。最后,在使用非牛顿流体时会遇到两种方法,并概述了它们的优点和局限性。

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