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Fluid-structure interaction phenomenon related to the expulsion and subsequent motion of multiple macroscopic particles

机译:与多种宏观粒子的排出和随后的运动相关的流体结构相互作用现象

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Phenomena related to the expulsion and subsequent motion of multiple macroscopic particles are studied through numerical methods. Two basic systems are investigated: The first involves a set of particles set into motion in quiescent air and the second involves particle and free piston motion in the surroundings as the particles exit a flow channel under the influence of the gas driven piston motion. A fully coupled rigid body fluid structure interaction is utilized for up to a ten particle arrangement. The Navier-Stokes equations are solved for the in the fluid region with turbulence taken into account. The fluid induced pressure and viscous forces and moments as well as the effects of the interactions between the solid bodies are used in the calculations of the rigid body motion of the solid entities. A quaternion based kinematic formulation is implemented to prevent indeterminate system conditions. A soft collision model is applied to simulate the effects of the solid-body interactions. A moving and deforming fluid mesh facilitates the motion of the distinct bodies through the fluid with dynamic mesh adaption to ensure proper mesh size is maintained. With the modelling techniques developed, parametric studies were conducted to determine the influence of the particle size and density and the initial particle spacing and configuration on the paths the particles take and the spread of the particles after an equivalent time. The knowledge gained can improve the understanding of expelled particle motion and the means of controlling overall particle spread.
机译:通过数值方法研究了与发布和随后的动作相关的现象,通过数值方法研究了多种宏观颗粒。研究了两个基本系统:首先涉及将一组颗粒设置成静态空气中的运动,并且第二个颗粒在周围环境中涉及颗粒和自由活塞运动,因为颗粒在气体驱动的活塞运动的影响下离开流动通道。完全耦合的刚体流体结构相互作用用于高达10个颗粒布置。在湍流中求出的湍流中的流体区域求解Navier-Stokes方程。流体诱导的压力和粘性力和力矩以及固体之间的相互作用的效果用于固体实体的刚体运动的计算。实施了基于四元素的运动学制剂,以防止不确定的系统条件。应用软碰撞模型来模拟固体相互作用的影响。移动和变形的流体网有助于通过具有动态网格适应的流体的不同体的运动,以确保保持适当的网格尺寸。利用所开发的建模技术,进行了参数研究以确定粒度和密度和初始颗粒间隔和构造在颗粒在等效时间后的颗粒的扩散和颗粒的扩散的影响。所获得的知识可以改善对排出的颗粒运动的理解和控制整体颗粒扩散的方法。

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