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Revisiting and improving models for the breakup of compact dry powder agglomerates in turbulent flows within Eulerian-Lagrangian simulations

机译:重新探讨和改进欧拉拉克拉格鸟模拟中湍流流动中紧致干粉凝聚的分解模型

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The present study is concerned with breakup models for agglomerates in turbulent flows. First, a brief literature review is provided describing the state of the art concerning the description and modeling of breakup of agglomerates with special emphasis on the role of fluid forces. That comprises turbulent and drag (inertia) stresses. Furthermore, the breakup by rotary stresses is taken into account. Based on the idea to describe these processes using first principles within an Eulerian-Lagrangian approach relying on the large-eddy simulation methodology, modeling ideas from the literature are revisited and extended in order to be applied in a four-way coupled simulation. Building on a deterministic collision and agglomeration model, the breakup process is tackled in a similar manner leading to a highly efficient procedure, which allows to track a huge number of agglomerates and particles but with the restriction to compact dry powder agglomerates. For this kind of agglomerates an enhanced evaluation of the strength is derived relying on an improved determination of the average porosities and coordination number. Furthermore, special emphasis is put on the post-breakup treatment, i.e., models for the sizes and velocities of the generated fragments. Finally, the proposed models are applied to a test case inspired by the experimental study of Weiler [1] for the deagglomeration in a dry powder disperser. The effect of the different physical mechanisms (turbulence, drag, rotation) is analyzed concerning breakup rates and resulting size distributions. Furthermore, the dominant breakup regions are identified separately. Since agglomeration processes are simultaneously taken into account, re-agglomeration of the fragments is found to play a non negligible role. Finally, the effect of the properties of the powder on the breakup and re-agglomeration processes is investigated. (C) 2019 The Author(s). Published by Elsevier B.V.
机译:本研究涉及湍流流动中的附聚物的分离模型。首先,提供了一个简短的文献回顾,描述了关于对群体分解的描述和建模,特别强调流体力的作用。包括湍流和阻力(惯性)应力。此外,考虑旋转应力的分解。基于依赖于大​​涡模拟方法的大型拉格朗日方法内使用第一原理来描述这些过程的想法,重新审视和扩展文献中的建模思路,以便以四路耦合模拟应用。在确定性碰撞和凝聚模型上建立,以类似的方式解决了分离过程,导致高效的程序,这允许追踪大量的凝聚物和颗粒,而是限制紧凑的干粉聚集物。对于这种附聚物,依赖于改进的平均孔隙率和协调数的测定来推导强度的增强评估。此外,特别强调在后分发后处理,即产生碎片的尺寸和速度的模型。最后,所提出的模型应用于由Weiler [1]在干粉分散器中的Deagglomeration的实验研究启发的测试用例。分析了不同物理机制(湍流,拖动,旋转)的效果关于分解速率和产生的尺寸分布。此外,分别识别主导分类区域。由于同时考虑聚集过程,发现碎片的重聚被发现起到不可忽略的作用。最后,研究了粉末的性质对分解和重聚过程的影响。 (c)2019年作者。 elsevier b.v出版。

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