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Disks aligned in a turbulent channel

机译:磁盘在湍流通道中对齐

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Anisotropic particles are suspended in a wide range of industrial, environmental and biological fluid flows. The orientations of these particles are sometimes randomized by turbulence, but often they are brought into preferential alignment by the fluid flow. In a recently published study, Challabotla, Zhao & Andersson (J. Fluid Mech., vol. 766, 2015, R2) performed the first numerical simulations of inertial disks in a turbulent channel flow. They find that disks can be made to preferentially align either parallel or perpendicular to the wall depending on the particle density. Particle shape also affects alignment, particularly for lower density particles, and the alignment of disks is quite different from the alignment of fibres.
机译:各向异性颗粒悬浮在广泛的工业,环境和生物流体流中。这些粒子的取向有时会由于湍流而随机化,但通常会因流体流动而优先取向。在最近发表的一项研究中,Challabotla,Zhao和Andersson(J。Fluid Mech。,第766卷,2015,R2)对湍流通道中的惯性盘进行了首次数值模拟。他们发现可以根据颗粒密度使圆盘优先平行于壁或垂直于壁对齐。颗粒形状也会影响排列,尤其是对于较低密度的颗粒,圆盘的排列与纤维的排列完全不同。

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