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An incompressible SPH method for simulating free surface flows of shear-thinning fluids

机译:一种用于模拟剪切稀疏流体的自由表面流动的不可压缩的SPH方法

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The traditional weakly compressible SPH (WCSPH) method has been reported to suffer from large density variations, resulting in non-physical pressure fluctuations. In this article, a truly incompressible SPH (ISPH) method is developed and extended to free surface flows of shear-thinning fluids, in which the viscosity is modeled by the Cross model. The ISPH method employs a pressure Poisson equation to satisfy the incompressibility constraints, and the Navier-Stokes equations are solved in a Lagrangian form using a two-step fractional method. The method is firstly verified by solving the impact of a Newtonian droplet with a horizontal rigid plate in comparison with the available literature data. Then, ISPH is extended to simulate the phenomena of a Newtonian and a Cross droplet impact and spreading over an inclined rigid plate. In particular, the different flow features between Newtonian and Cross droplets after the impact are discussed. All numerical results show that ISPH method can not only extend to free surface flows of shear-thinning fluids, but also reduce the pressure noise in comparison with WCSPH.
机译:据报道,传统的弱可压缩SPH(WCSPH)方法遭受大密度变化,导致非物理压力波动。在本文中,开发了一种真正不可压缩的SPH(ISWH)方法并扩展到剪切稀疏流体的自由表面流动,其中粘度由横梁模型建模。 ISPH方法采用压力泊松方程来满足不可压缩的限制,并且使用两步分数法在拉格朗日形式中求解Navier-Stokes方程。首先通过求解牛顿液滴与水平刚性板的影响,与可用文献数据相比来验证该方法。然后,ISPH延伸以模拟牛顿和交叉液滴的现象和延伸在倾斜的刚性板上。特别地,讨论了冲击后牛顿和交叉液滴之间的不同流动特征。所有数值结果表明,ISPH方法不仅可以延伸到剪切稀疏流体的自由表面流动,还可以减少与WCSPH相比的压力噪声。

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