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Interaction between particle clusters and particle-induced turbulence

机译:粒子团与粒子引起的湍流之间的相互作用

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To investigate the two-way interaction between particles and fluid turbulence, a homogeneous flow field including solid particles was numerically simulated. Spherical particles are falling by gravity with the Reynolds number ranging from 50 to 400, based on slip velocity. Particular attention was focused on the clustering of particles, which might enhance turbulence by energy supply through larger scales in comparison with dispersed particles. In the higher Reynolds number case, particle clusters are formed due to the wake, and vortex shedding enhances them. But clusters cause fluid turbulence resulting in their break-up. The Reynolds-number dependence, the dynamics and the time scale of particle clusters are discussed in this paper.
机译:为了研究颗粒与流体湍流之间的双向相互作用,对包含固体颗粒的均匀流场进行了数值模拟。球状粒子由于重力而下落,基于滑移速度,雷诺数范围为50到400。特别关注的是粒子的聚集,与分散的粒子相比,通过较大规模的能量供应可能会增加湍流。在较高的雷诺数情况下,由于尾流而形成了粒子簇,涡旋脱落增强了它们。但是团簇会引起流体湍流,从而导致其破裂。本文讨论了雷诺数依赖性,粒子团的动力学和时间尺度。

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