利用耗散粒子动力学(DPD)对简单剪切流条件下液滴的破碎和碰撞分离过程进行了模拟.液滴由多颗简单的DPD粒子构成,液滴与周围流体的不互溶性由提高它们之间的保守力系数获得.通道的上下壁面沿着相反方向运动从而使流体产生简单剪切流动.计算结果表明,在简单剪切流条件下,当界面张力数超过临界界面张力数后,液滴不稳定;液滴将被拉长并破碎成数个较小的稳定的液滴.当两个液滴相互碰撞并分离的现象发生时,两个液滴的质心在速度梯度方向上的距离与整个碰撞过程相关,碰撞之后的δz值比碰撞前的δz大.
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