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A Numerical Study on the Attitudes and Aerodynamics of Freely Falling Hexagonal Ice Plates

机译:自由落体六角冰板的姿态和空气动力学数值研究

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摘要

The fall attitudes and the flow fields of falling hexagonal ice plates are studied by numerically solving the transient incompressible Navier-Stokes equation for flow past ice plates and the body dynamics equations representing the 6-degrees-of-freedom motion that determine the position and orientation of the ice plates in response to the hydrodynamic force of the flow fields. The ice plates investigated are from 1 to 10 mm in diameter, and the corresponding Reynolds number ranges from 46 to 974. The results indicate that the 1-mm plate generates a steady flow field and exhibits a steady motion, whereas the rest of the ice plates generate unsteady flow fields and exhibit unsteady motions, including horizontal translation, rotation, and axial oscillation. The horizontal translation is primarily determined by the inclination due to oscillation. The pressure distributions around the falling plates are examined and discussed in association with the oscillation. The vortex structure in the wake of the plate is examined. Empirical formulas for fall speed, oscillation frequency, and drag coefficient are given. Potential impacts of the fall attitudes and flow characteristics on the microphysics of ice plates are discussed.
机译:通过数值求解流经冰板的瞬态不可压缩Navier-Stokes方程和代表6自由度运动的体动力学方程(确定位置和方向),研究了下落的六角形冰板的下降姿态和流场响应于流场的流体动力,使冰盖的角度减小。研究的冰板直径为1到10 mm,相应的雷诺数范围为46到974。结果表明1 mm的冰板产生稳定的流场并表现出稳定的运动,而其余冰块板产生不稳定的流场并表现出不稳定的运动,包括水平平移,旋转和轴向振荡。水平平移主要由振荡引起的倾斜度决定。结合振动检查和讨论下降板周围的压力分布。检查板后的涡旋结构。给出了下降速度,振荡频率和阻力系数的经验公式。讨论了跌落姿态和流动特性对冰板微观物理的潜在影响。

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