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1基于格子玻尔兹曼方法的室内颗粒运动模拟显示文摘为了研究颗粒直径和密度对其室内运动和沉积的影响,该文基于格子玻尔兹曼方法的标准k-ε模型对二维室内湍流空气进行数值模拟,使用拉格朗日方法对颗粒运动进行模拟。结果表明,当颗粒密度一定时,底部的颗粒沉积数随颗粒直径的增大而增加,而顶部的颗粒沉积数随颗粒直径的增大而减少。大直径颗粒密度的变化对颗粒的沉积影响较大,密度大的颗粒易在房间底部沉积,密度小的颗粒更易在房间顶部沉积。当直径较小时(0.05μm),颗粒密度的变化对颗粒沉积基本没有影响。李校 郑林 2018南京理工大学学报2018,42,5:3
2Lattice Boltzmann simulation of fluid flow through random packing beds of Platonic particles: Effect of particle characteristics显示文摘The influence of particle characteristics,such as shape,size,and volume fraction,on the permeability of porous media was investigated by combining the randomly packed beds of Platonic particles with the lattice Boltzmann method.Quantitative solutions of the permeability as a function of these characteristic parameters in mono-sized particle packing structures were obtained.The D3Q19 model is presented here,which was tested by three simple benchmark tests.A series of packed beds of Platonic particles as well as spherical particles were generated in a random manner.Numerical studies on factors influencing the permeability of materials were carried out to comprehensively study their impacts.The results revealed that the permeability significantly increased with increasing equivalent diameter of the particles(or decreasing volume fraction).At a fixed size and volume fraction of particles,the permeability of the Platonic particle packing structures was also influenced by particle morphology:permeability significantly reduced as the particle sphericity decreased.The permeability of tetrahedral particle packing structures dropped by more than 40%compared with that of corresponding spherical particle systems.Jianjun Lin Huisu Chen 2019Particuology2019,17,6:0
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