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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Modelling of surface tension force for free surface flows in ISPH method
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Modelling of surface tension force for free surface flows in ISPH method

机译:使用ISPH方法模拟自由表面流动的表面张力

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Purpose - The purpose of this paper is to show how a surface tension model and an eddy viscosity based on the Smagorinsky sub-grid scale model, which belongs to the Large-Eddy Simulation (LES) theory for turbulent flow, have been introduced into ISPH (Incompressible smoothed particle hydrodynamics) method. In addition, a small modification in the source term of pressure Poisson equation has been introduced as a stabilizer for robust simulations. This stabilization generates a smoothed pressure distribution and keeps the total volume of fluid, and it is analogous to the recent modification in MPS.rnDesign/methodology/approach - The surface tension force in free surface flow is evaluated without a direct modeling of surrounding air for decreasing computational costs. The proposed model was validated by calculating the surface tension force in the free surface interface for a cubic-droplet under null-gravity and the milk crown problem with different resolution models. Finally, effects of the eddy viscosity have been discussed with a fluid-fluid interaction simulation. Findings - From the numerical tests, the surface tension model can handle free surface tension problems including high curvature without special treatments. The eddy viscosity has clear effects in adjusting the splashes and reduces the deformation of free surface in the interaction. Finally, the proposed stabilization appeared in the source term of pressure Poisson equation has an important role in the simulation to keep the total volume of fluid.rnOriginality/value - An incompressible smoothed particle hydrodynamics is developed to simulate milk crown problem using a surface tension model and the eddy viscosity.rnKeywords Flow, Viscosity, Simulation, Incompressible smoothed particle hydrodynamics, Surface tension, Free surface flow, Eddy viscosity, Milk crown
机译:目的-本文的目的是说明如何将基于Smagorinsky子网格比例模型的表面张力模型和涡流粘度引入到ISPH中,该模型属于湍流的大涡模拟(LES)理论(不可压缩的平滑粒子流体动力学)方法。此外,已经引入了压力泊松方程源项的少量修改,作为稳健模拟的稳定器。这种稳定作用产生平滑的压力分布并保持流体总量,类似于MPS中的最新修改。rn设计/方法/方法-评估自由表面流中的表面张力无需直接模拟周围空气即可降低计算成本。通过在零重力和不同分辨率模型下的乳冠问题下计算立方液滴的自由表面界面中的表面张力,验证了该模型的有效性。最后,通过流体-流体相互作用模拟讨论了涡流粘度的影响。研究结果-通过数值测试,表面张力模型无需特殊处理即可解决包括高曲率在内的自由表面张力问题。涡流粘度在调节飞溅方面具有明显的作用,并减少了相互作用中自由表面的变形。最后,在压力泊松方程的源项中出现的拟议的稳定化在保持流体总体积的模拟中起着重要作用。原始性/值-利用表面张力模型开发了不可压缩的平滑粒子流体动力学来模拟乳冠问题关键词流动,粘度,模拟,不可压缩的光滑颗粒流体动力学,表面张力,自由表面流动,涡流粘度,乳冠

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