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Spatial and temporal scales of force and torque acting on wall-mounted spherical particles in open channel flow

机译:在明渠流中作用于壁挂式球形颗粒的力和转矩的时空尺度

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Data from direct numerical simulation of open channel flow over a geometrically rough wall at a bulk Reynolds number of Reb = 2900, generated by Chan-Braun et al. ["Force and torque acting on particles in a transitionally rough open-channel flow," J. Fluid Mech.684, 441-474 (2011)]10.1017/jfm.2011.311 are further analysed with respect to the time and length scales of force and torque acting on the wall-mounted spheres. For the two sizes of spheres in a square arrangement (11 and 49 wall units in diameter, yielding hydraulically smooth and transitionally rough flow, respectively), the spatial structure of drag, lift, and spanwise torque is investigated. The auto-correlation and spectra in time as well as the space-time correlation and convection velocities are presented and discussed. It is found that the statistics of spanwise particle torque are similar to those of shear stress at a smooth wall. Particle drag and lift are shown to differ from spanwise particle torque, exhibiting considerably smaller time and length scales; the convection velocities of drag and lift are somewhat larger than those of spanwise torque. Furthermore, correlations between the flow field and particle-related quantities are presented. The spatial structure of the correlation between streamwise velocity and drag/spanwise torque features elongated shapes reminiscent of buffer-layer streaks. The correlation between the pressure field and the particle drag exhibits two opposite-signed bulges on the upstream and downstream sides of a particle.
机译:由Chan-Braun等人生成的,在Reb = 2900的雷诺数下,通过几何粗糙壁的明渠流直接数值模拟得到的数据。 [J. Fluid Mech.684,441-474(2011)]“ 10.1017 / jfm.2011.311”关于力的时间和长度尺度进行了进一步分析和作用在壁挂球上的扭矩。对于方形布置的两种大小的球体(直径分别为11和49个壁单元,分别产生液压平滑和过渡粗糙的流动),研究了阻力,升力和翼展方向扭矩的空间结构。提出并讨论了时间的自相关和光谱,以及时空相关和对流速度。发现在光滑壁上,翼展方向颗粒扭矩的统计与剪切应力的统计相似。颗粒阻力和升力与翼展方向的颗粒扭矩不同,显示出更小的时间和长度比例。阻力和升力的对流速度略大于翼展方向扭矩的对流速度。此外,介绍了流场与颗粒相关量之间的关系。流向速度与阻力/跨向扭矩之间相关性的空间结构具有细长的形状,使人联想到缓冲层条纹。压力场与颗粒阻力之间的相关性在颗粒的上游和下游两侧显示出两个相反的凸起。

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