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Numerical simulation of unsteady dense granular flows with rotating geometries

机译:具有旋转几何的非定常稠密颗粒流的数值模拟

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摘要

In chemical engineering applications, it is not uncommon to encounter reactors featuring rotating parts. As these rotating parts are present in order to enhance processes such as chemical reactions and/or ensure homogeneity, it is essential to take them into account to perform predictive numerical simulations. This aspect can be particularly challenging, even more so when complex industrial geometries are to be treated.In this paper a numerical methodology for simulating unsteady granular flow in rotating geometries is presented. The method is based on splitting the domain into static and rotating parts. The information between rotating and static parts is passed by a non-conformal mesh matching technique. The presented methodology is validated numerically by comparing its results with other conventional methods. The method is then applied to an industrial scale problem. The applicability of the method and the way it may be used to investigate complex flow is demonstrated. Therefore this approach enables to consider the full geometry of complex reactors. It opens the door to further investigation, optimization and design of industrial scale chemical processes.
机译:在化学工程应用中,遇到带有旋转部件的反应堆并不少见。由于存在这些旋转部件是为了增强诸如化学反应和/或确保均匀性的过程,因此必须将它们考虑在内以执行预测性数值模拟。这方面尤其具有挑战性,在要处理复杂的工业几何形状时更是如此。在本文中,提出了一种用于模拟旋转几何形状中非稳态颗粒流动的数值方法。该方法基于将域分为静态和旋转部分。旋转和静态零件之间的信息通过非共形网格匹配技术传递。通过将其结果与其他常规方法进行比较,对本文提出的方法进行了数值验证。然后将该方法应用于工业规模的问题。证明了该方法的适用性及其可用于研究复杂流的方法。因此,这种方法能够考虑复杂反应堆的全部几何形状。它为进一步研究,优化和设计工业规模的化学过程打开了大门。

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