首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Roles of size and kinematics in drag reduction for two tandem flexible foils
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Roles of size and kinematics in drag reduction for two tandem flexible foils

机译:两个串联柔性箔的减阻尺寸和运动学的角色

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摘要

The effect of size and kinematics difference between two tandem flexible foils on drag reduction have been numerically studied. Compared with single foil, it is found that the kinematics difference between two foils would not play a significant role in reducing drag, while the size difference between two foils significantly affects the drag reduction in this two foil system. For leading foil, it always enjoys drag reduction and the highest drag reduction can be observed at bigger size difference and gap distance between two foil as 22%. For trailing foil, it suffers drag increase when the gap distance between two foils is smaller, while it enjoys drag decrease when the size difference between two foils is bigger enough. The hydrodynamic interaction between such actively undulated foils also has been uncovered and used to explain the mechanisms of drag reduction.
机译:在数值研究了两个串联柔性箔之间的尺寸和运动学差异的效果已经进行了数值研究。 与单箔相比,发现两个箔之间的运动学差异在减少阻力时不会发挥重要作用,而两个箔之间的尺寸差异显着影响这两个箔系统中的阻力减少。 对于领先的箔,它总是享受减阻,并且可以在两个箔之间的较大尺寸差和间隙距离处观察到最高阻力减少,而两个箔片至22%。 对于尾随箔,当两个箔之间的间隙距离较小时,它会增加拖延,而当两个箔片之间的尺寸差异较大时它享受减小。 这种主动波状箔之间的流体动力相互作用也已被揭示并用于解释减少阻力的机制。

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