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Effect of external pulsation on kinematics of fluid particles in the field of Lamb–Oseen vortex pair

机译:外部脉动对Lamb–Oeeen涡对场中流体粒子运动学的影响

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The effect of external pulsation on a pair of stationary Lamb–Oseen vortices of equal strength has been analyzed to investigate kinematic behavior of a fluid particle. The assumption of vortices being treated stationary or fixed vortex filaments is valid in a reference frame attached to the vortex system with axes along and perpendicular to the line of their centers. Also, it is assumed that change in core shape and size is much small, with least possibility of core merger. In such situations, periodic particle paths are observed and superposition of pulsation becomes beneficial. In the present work, motion of a representative fluid particle is modeled as a non-linear dynamical system by varying both amplitude and frequency of external pulsation. Effect of external pulsation has been brought out with the help of quantification of deviation from periodic paths by using the concept of total average deviation. Results are presented in terms of particle paths, velocity phase plots, velocity signals and their spectra for varying amplitude and frequency of external pulsation.
机译:已经分析了外部脉动对一对同等强度的固定Lamb-Oseen涡旋的影响,以研究流体粒子的运动学行为。在固定于涡旋系统的参考框架中,沿着或垂直于其中心线的轴,将涡旋视为固定涡旋丝或固定涡旋丝是有效的。另外,假设核心形状和大小的变化很小,核心合并的可能性最小。在这种情况下,观察到周期性的粒子路径,并且脉动的叠加变得有益。在当前工作中,通过改变外部脉动的幅度和频率,将代表性流体粒子的运动建模为非线性动力学系统。通过使用总平均偏差的概念,通过量化与周期性路径的偏差,已经产生了外部脉动的影响。结果以粒子路径,速度相位图,速度信号及其变化的外部脉冲幅度和频率的频谱表示。

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