物理
机械
雷诺数
旋涡脱落
串联
空气动力学
圆柱
涡流
流量(数学)
不稳定性
旋转(数学)
转速
联轴节(管道)
计算流体力学
纵横比(航空)
分离涡模拟
大涡模拟
湍流
经典力学
空气动力
赫尔肖流
航程(航空)
作者
Zhang Yang,Dagang Zhao,Shuhuai Su,Jinjun Wang
出处
期刊:Physics of Fluids
[American Institute of Physics]
日期:2025-12-01
卷期号:37 (12)
被引量:1
摘要
Aerodynamic interference in flow around tandem rotating cylinders (e.g., Flettner rotors) is characterized by significant complexity for engineering applications. Large eddy simulation is employed to investigate aerodynamic characteristics of finite-length tandem cylinders at a subcritical Reynolds number of 3900, with focus placed on spacing ratios (L/D) of 3, 4, and 5 and speed ratios (n) ranging from 0 to 5. For stationary cylinders (n = 0), three distinct flow regimes are identified. When rotation initiates (n = 1), flow instability is intensified. The key phenomenon of “drag reversal” emerges at n ≥ 2. This transition is attributed to coupling between the blockage effect and the rotational action. At the critical speed ratio (n = 3), vortex shedding is suppressed. At high-speed ratios (n > 3), the flow transitions into a rotation-dominated regime, where a secondary instability mode is activated. A synergy between blockage effects and rotational action is revealed, enabling relative optimal operation at L/D = 3 and n = 3 with high lift-drag ratio and achieving minimal fluctuating loads. Critical theoretical and practical guidance for optimizing tandem cylinder flow configurations in Flettner rotors is provided with these findings.
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