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DEM analysis of acoustic wake agglomeration for mono-sized microparticles in the presence of gravitational effects

机译:重力作用下单粒径微粒声尾团聚的DEM分析

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The application of the discrete element method (DEM) to numerical simulation of the acoustic agglomeration of micron-sized mono-dispersed aerosol particles is demonstrated. The conventional DEM technique used in granular dynamics is modified for the simulation of the acoustically induced attractive motion of particles in incompressible fluid. The relationship between the acoustic wake and the gravity is investigated by simulating the binary interaction of two particles for a wide range of particles' orientations to the sound direction. The main finding obtained by simulation results shows that agglomeration time is solely predefined by the acoustic wake effect independently of gravity. On the other hand, the gravitational motion is contributed by the sound, and an increase of settling velocity due to the sound of individual particles was found. Additionally, two particles surrounded by a system of other particles are illustrated by numerical results. It was also shown that isolated particles demonstrate an overestimated increase of the agglomeration time, which was essentially reduced by the contribution of other particles in the multi-particle system.
机译:演示了离散元方法(DEM)在微米级单分散气溶胶颗粒声团聚数值模拟中的应用。修改了用于颗粒动力学的常规DEM技术,以模拟不可压缩流体中颗粒的声诱发吸引运动。通过模拟两个粒子在相对于声音方向的大范围方向上的二元相互作用,来研究声尾与重力之间的关系。通过仿真结果获得的主要发现表明,团聚时间完全是由声波效应预定义的,与重力无关。另一方面,重力运动是由声音引起的,并且发现由于单个粒子的声音而导致的沉降速度增加。另外,数值结果说明了被其他粒子系统包围的两个粒子。还表明,分离出的颗粒显示出团聚时间的高估,而由于其他颗粒在多颗粒系统中的贡献,这种现象基本上减少了。

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