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Grid-Free Modelling Based on the Finite Particle Method for Incompressible Viscous Flow Problems

机译:基于对不可压缩粘性问题的有限粒子法的无网图建模

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In this paper, we present a grid-free modelling based on the finite particle method for the numerical simulation of incompressible viscous flows. Numerical methods of interest are meshless Lagrangian finite point scheme by the application of the projection method for the incompressibility of the Navier–Stokes flow equations. The moving least squares method is introduced for approximating spatial derivatives in a meshless context. The pressure Poisson equation with Neumann boundary condition is solved by the finite particle method in which the fluid domain is discretized by a finite number of particles. Also, a continuous particle management has to be done to prevent particles from moving into configurations problematic for a numerical approximation. With the proposed finite particle technique, problems associated with the viscous free surface flow which contains the study on the liquid sloshing in tanks with low volumetric fluid type, solitary waves movement, and interaction with a vertical wall in numerical flume as well as the vortex patterns of the ship rolling damping are circumvented. These numerical models are investigated to validate the presented grid-free methodology. The results have revealed the efficiency and stability of the finite particle method which could be well handled with the incompressible viscous flow problems.
机译:在本文中,我们基于可加压粘性流量的数值模拟的有限颗粒方法提出了一种无网图。利用数值兴趣方法是丝毫拉格朗日有限点方案,用于应用投影方法,以便Navier-Stokes流程方程的不可压缩性。引入移动最小二乘法,用于近似网状衍生物在无网格上下文中。具有Neumann边界条件的压力泊松方程通过有限颗粒法通过有限数量的颗粒离散化流体域。而且,必须进行连续的颗粒管理以防止粒子进入配置以进行数值近似的问题。利用所提出的有限粒子技术,与粘性的自由表面流有关的问题,其中包含对具有低容量流体型,孤立波运动的罐中的液体晃动的研究,以及在数值小管中与垂直壁的相互作用以及涡流模式船舶滚动阻尼被规避。研究了这些数值模型以验证提供的无网格方法。结果表明,有限颗粒方法的效率和稳定性可以通过不可压缩的粘性流动问题处理。

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