论文标题

在不稳定性驱动的2D湍流中自发抑制逆向能量级联

Spontaneous suppression of inverse energy cascade in instability-driven 2D turbulence

论文作者

van Kan, Adrian, Favier, Benjamin, Julien, Keith, Knobloch, Edgar

论文摘要

流体流的不稳定性通常会产生湍流。使用广泛的直接数值模拟,我们研究了由随机强迫上的波数 - 位置不稳定驱动的二维湍流,与先前对国家无关强迫的研究相反。随着通过参数$γ$衡量的不稳定性的贡献,增加了,系统经历了两个过渡。对于低于第一个阈值的$γ$,是常规的大规模涡流冷凝物。在该阈值之上,屏蔽涡流(SVS)在冷凝水内出现。在$γ$的第二秒钟,冷凝水分解,并且具有断裂的对称性的弱相互作用的气体自发出现,其特征是仅一个标志的涡流和抑制了逆向能量级联。后一个过渡显示取决于阻尼机制。断裂的对称状态中SV的数量密度通过随机成核过程缓慢增加。在冷凝物和混合SV键合态之间观察到双重性。我们的发现为强烈依赖二维湍流现象学对强迫提供了新的证据。

Instabilities of fluid flows often generate turbulence. Using extensive direct numerical simulations, we study two-dimensional turbulence driven by a wavenumber-localised instability superposed on stochastic forcing, in contrast to previous studies of state-independent forcing. As the contribution of the instability forcing, measured by a parameter $γ$, increases, the system undergoes two transitions. For $γ$ below a first threshold, a regular large-scale vortex condensate forms. Above this threshold, shielded vortices (SVs) emerge within the condensate. At a second, larger value of $γ$, the condensate breaks down, and a gas of weakly interacting vortices with broken symmetry spontaneously emerges, characterised by preponderance of vortices of one sign only and suppressed inverse energy cascade. The latter transition is shown to depend on the damping mechanism. The number density of SVs in the broken symmetry state slowly increases via a random nucleation process. Bistability is observed between the condensate and mixed SV-condensate states. Our findings provide new evidence for a strong dependence of two-dimensional turbulence phenomenology on the forcing.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源