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HYDRODYNAMIC RESISTANCE EFFECT OF FLUID LAYER BETWEEN TWO IMMERSED APPROACHING PARTICLES

机译:两种浸入式颗粒之间流体层的水动力阻力效应

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摘要

A three-dimensional direct simulation of an immersed solid particle approaching another particle, or a flat wall, is conducted to investigate the mechanics of hydrodynamic impact of immersed particles. The simulation method is based on a modified immersed boundary method using a fixed grid system. When the particle separation distance becomes smaller than grid spacing, to account for the hydrodynamic resistance effect of liquid layer between particles near contact, a microlayer model is developed to allow determination of the pressure profile within the micro-layer without neglecting the inertial force of the layer flow. The pressure force is then taken into account in equation of particle motion.Comparisons of the simulation results with the experimental results reported in the literature are shown to substantiate the model presented in this study. The simulations reveal the complex three-dimensional flow field of the liquid and the motion of the approaching particle. The fluid pressure in the gap caused by the unsteady motion of the particle is significantly increased when the separation distance of particles is less than about one-tenth diameters of particle. Therefore the velocity of approaching particle starts to decrease due to the hydrodynamic resistance force at this position.
机译:进行了接近另一颗粒或扁平壁的浸渍固体颗粒的三维直接模拟,以研究浸渍颗粒的流体动力学冲击的机制。仿真方法基于使用固定网格系统的改进的浸没边界方法。当颗粒分离距离变得小于栅格间距时,为了考虑液体层在近接触的颗粒之间的流体动力电阻效应,开发了微型层模型以允许确定微层内的压力轮廓而不忽略惯性力层流。然后在粒子运动方程中考虑压力的考虑。仿真结果的仿真结果与文献中报告的实验结果显示在本研究中提出的模型。仿真揭示了液体的复杂三维流场和接近粒子的运动。当颗粒的分离距离小于颗粒的约十分大径时,由颗粒的不稳定运动引起的间隙中的流体压力显着增加。因此,接近粒子的速度由于该位置的流体动力学阻力而开始减小。

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