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Characteristics of settling of dilute suspension of particles with different density at high Reynolds numbers 被引量:1
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作者 Ali Abbas Zaidi 《Particuology》 SCIE EI CAS CSCD 2021年第3期62-74,共13页
Dilute suspension of particles with same density and size develops clusters when settle at high Reynolds number(≥250).It is due to particles entrapment in the wakes produced by upstream particles.In this work,this ph... Dilute suspension of particles with same density and size develops clusters when settle at high Reynolds number(≥250).It is due to particles entrapment in the wakes produced by upstream particles.In this work,this phenomenon is studied for suspension having particles with different densities by numerical simulations.The particle-fluid interactions are modelled using immersed boundary method and inter-particle collisions are modelled using discrete element method.In simulations,settling Reynolds number is always kept above 250 and the suspension solid volume fraction is nearly 0.1 percent.Two particle density ratios(i.e.density of heavy particles to lighter particles)equal to 4:1 and 2:1 and particles with same density are studied.For each density ratio,the percentage volume fraction of each particle density is nearly varied from 0.8 to 0.2.Settling characteristics such as microstructures of settling particle,average settling velocity and velocity fluctuations of settling particles are studied.Simulations show that for different density particles settling characteristics of suspension is largely dominated by heavy particles.At the end of paper,the underlying physics is explained for the anomalies observed in simulation. 展开更多
关键词 particle clustering at high reynolds number Suspension with different density particles particle microstructure due to settling Immersed boundary method
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Turbulent Modulation in Particulate Flow: A Review of Critical Variables 被引量:1
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作者 Ammar Saber T.Staffan Lundstrom J.Gunnar I.Hellstrom 《Engineering(科研)》 2015年第10期597-609,共13页
A review of the main mechanisms influencing turbulent modulation in the presence of spherical and non-spherical particles is presented. The review demonstrates the need for more numerical and experimental work with hi... A review of the main mechanisms influencing turbulent modulation in the presence of spherical and non-spherical particles is presented. The review demonstrates the need for more numerical and experimental work with higher accuracy than obtained so far and the need to resolve the flow near the surface of particles with the aim to re-evaluate the quantitative effect of different parameters on turbulent modulation. The review reveals that non-spherical particles have more adverse effect on turbulence as compared to spherical ones, for the same ambient conditions. 展开更多
关键词 Two Phase Flow Turbulent Modulation Non-Spherical particle Stokes number particle reynolds number Length Scale Density Ratio
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