首页> 外文期刊>Philosophical magazine, B. Physics of condensed matter, electronic, optical, and magnetic properties >Laser-induced two-dimensional periodic and chaotic motions on molten tantalum and molybdenum surfaces
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Laser-induced two-dimensional periodic and chaotic motions on molten tantalum and molybdenum surfaces

机译:激光在熔融钽和钼表面上的二维周期性和混沌运动

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Two-dimensional flow patterns generated in high-power short-time laser-material interaction on the vapourizing surface of tantalum and molybdenum have been studied. The inhomogeneous pattern of turbulent cells was divided into homogeneous zones (basins) of dynamics which form characteristic streamline patterns. They were simulated by using the model of regular and chaotic flow of Boldrigini and Francheschini, based on the real-mode truncation of the Navier-Stokes equation in k space. The nine-mode model with three-mode forcing reproduced the characteristic 'footprint' cells, triangular cells, 'potato-like' cells and square cells for the Reynolds numbers Re = 80, 100 and 110, appearing in various basins with time delay with respect to the beginning of the laser pulse. All the basins show chaotic fluid motion in the Eulerian picture, and the motion changing from regular to chaotic in the Lagrangian picture.
机译:研究了在钽和钼的汽化表面上大功率短时激光材料相互作用中产生的二维流型。湍流细胞的不均匀模式被分为动力学的均匀区域(流域),形成了独特的流线型模式。基于k空间中Navier-Stokes方程的实模式截断,使用Boldrigini和Francheschini的规则和混沌流动模型对它们进行了模拟。具有三模强迫的九模模型重现了雷诺数Re = 80、100和110的特征性“足迹”细胞,三角形细胞,“类马铃薯”细胞和方形细胞,并以一定的时间延迟出现在各个盆地中。相对于激光脉冲的开始。在欧拉图中,所有盆地都显示出混沌的流体运动,而在拉格朗日图中,运动则从规则变为混沌。

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