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Numerical simulation of droplet impacting liquid surface by SPH

查看全文 作  者:LI [1]DaMing;LI [1]XiaoYu;LIN [2]Yi 高影响力作者 机构地区:[1]School of Civil Engineering &Key Laboratory of Harbor &Ocean Engineering Ministry of Education, Tianjin University, Tianjin 300072, China;[2]Institute of Tianjin Meteorological Bureau, Tianjin 300074, China高影响力机构 出  处:《Science China(Technological Sciences)》索引2011年第54卷第7期,共8页高影响力期刊 基  金:supported by the National Natural Science Foundation of China (Grant Nos. 51079095, 51021004) 摘  要:Droplet impacting liquid surface is not only the extremely prevalent phenomenon in the nature and industrial production but also the extremely complicated problem of strong non-linear transient impact and free-surface flow. On the basis of the two-dimensional viscous incompressible N-S equations, this paper conducts a study of numerical simulation on the problem of droplet impacting liquid surface (water beads) of water container in certain initial velocity by the method of SPH (smoothed particle hydrodynamics). The effect of surface tension is considered between surface particles by searching the free surface particles in the course of study; the effect of initial impact has been solved by use of artificial viscosity; at the same time, the side-wall virtual particles and image virtual particles are both introduced to deal with the boundary condition, which has solved the boundary defects quite well and eliminated the instability of real particles dropped to the corner of container. The calculated results form the distribution chart of particles, flow field chart, pressure chart and the displacement and velocity variation curve of different particles. The comparison between simulated results and experimental photos shows that the simulation is effective. This paper compares the variational curves for fluctuations of liquid surface qualitatively through adopting the methods of level-set, BEM and SPH, respectively at last. The simulated results show that it will produce strong non-linear phenomena, such as the splash of liquid, discrete liquid surface, and strong wave of free liquid surface, when the droplet impacts liquid surface; in the course of impacting, the movement of liquid particles exhibits the characteristic of oscillation; the method of SPH has certain advantages of dealing with the large deformation problem of free surface. 关 键 词:液体表面 数值模拟 液滴 撞击 新加坡 自由表面流 SPH方法 表面颗粒
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