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The mechanism of emitter clogging analyzed by CFD–DEM simulation and PTV experiment:

机译:通过CFD–DEM仿真和PTV实验分析了发射器堵塞的机理:

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Small but complicated labyrinth channel emitters are easily clogged. In this study, computational fluid dynamics–discrete element method coupling approach was employed to investigate the mechanism of emitter clogging caused by particles in size of 65, 100, and 150?μm. Computational fluid dynamics used Navier–Stokes equation to analyze flow characteristics of continuous phase. Discrete element method used Newton’s laws of motion to measure single particle motion and group distribution of disperse phase. Particle tracking velocimetry was also utilized to follow the trajectories and velocity of single particle. Our results indicated that the smaller the particle size, the less the total force. Tiny sands were mainly influenced by drag forces. The amplitude between tooth tips was small. Particles moved basically in the main stream with fast velocity and short travel distance, thereby having good following performance. It took shorter time to reach micro-dynamic balance. Meanwhile, the amount of sediments in t...
机译:小而复杂的迷宫通道发射器容易堵塞。在这项研究中,采用计算流体动力学-离散元方法耦合方法来研究由65、100和150μm的颗粒引起的发射器堵塞的机理。计算流体动力学使用Navier–Stokes方程来分析连续相的流动特性。离散元素方法使用牛顿运动定律来测量单个粒子的运动和分散相的群分布。粒子跟踪测速仪还用于跟踪单个粒子的轨迹和速度。我们的结果表明,粒径越小,总力越小。小沙主要受拖曳力的影响。齿尖之间的振幅很小。粒子基本上在主流中以快的速度和短的移动距离移动,从而具有良好的跟随性能。达到微观动态平衡所需的时间较短。同时,沉积物中的沉积物数量...

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