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Numerical investigation of head-on droplet collision with lattice Boltzmann method

机译:格子Boltzmann方法对液滴正面碰撞的数值研究

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In the present work, head-on droplet collision is numerically investigated with the lattice Boltzmann method (LBM). The simulation is based on the high density ratio LBM multiphase model for incompressible binary fluids proposed by Lee et al., and the model is implemented in the axisymmetric form. Compared with previous LBM-based numerical studies on droplet collision, density ratio is substantially increased. The investigation is conducted from aspects of effect of Weber number, effect of Ohnesorge number, effect of colliding velocity and unequal-size droplet collision. The evolution of total kinetic energy and cumulative dissipated energy are studied, and a very detailed picture of the collision process is presented and discussed with time-resolved evolution of the flow field, the kinetic energy distribution, and the viscous dissipation rate distribution, which provides a broader and more in-depth insight into the droplet dynamics and the energy transfer and dissipation process.
机译:在目前的工作中,正向液滴碰撞是用格子Boltzmann方法(LBM)进行数值研究的。该仿真基于Lee等人提出的不可压缩二元流体的高密度比LBM多相模型,并且该模型以轴对称形式实现。与以前基于LBM的液滴碰撞数值研究相比,密度比大大提高。从韦伯数效应,奥尼索格数效应,碰撞速度效应和不等大小的液滴碰撞等方面进行了研究。研究了总动能和累积耗散能的演化,并给出了碰撞过程的非常详细的图,并讨论了流场的时间分辨演化,动能分布和粘性耗散率分布,从而提供了对液滴动力学以及能量转移和耗散过程的更广泛,更深入的了解。

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