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Extreme concentration fluctuations due to local reversibility of mixing in turbulent flows

机译:由于湍流流动混合的局部可逆性,极端浓度波动

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Mixing of a passive scalar in a fluid (e.g. a radioactive spill in the ocean) is the irreversible process towards homogeneous distribution of a substance. In a moving fluid, due to the chaotic advection [H. Aref, T. Fluid Mech. 143 (1984) 1; J. M. Ottino, The Kinematics of Mixing: Stretching, Chaos and Transport (Cambridge University Press, Cambridge, 1989)] mixing is much faster than if driven by molecular diffusion only. Turbulence is known as the most efficient mixing flow [B. I. Shraiman and E. D. Siggia, Nature 405 (2000) 639]. We show that in contrast to spatially periodic flows, two-dimensional turbulence exhibits local reversibility in mixing, which leads to the generation of unpredictable strong fluctuations in the scalar concentration. These fluctuations can also be detected from the analysis of the fluid particle trajectories of the underlying flow.
机译:在流体中混合被动标量(例如,海洋中的放射性泄漏)是朝向物质的均匀分布的不可逆过程。 在移动流体中,由于混沌平流[H. aref,t.流体机械。 143(1984)1; J. M. Ottino,混合的运动学:伸展,混乱和运输(剑桥大学出版社,剑桥,1989)]混合比仅由分子扩散驱动的速度快得多。 湍流被称为最有效的混合流动[B. I. Shraiman和E. D. Siggia,Nature 405(2000)639]。 我们表明,与空间周期性流动相比,二维湍流在混合中表现出局部可逆性,这导致了标量浓度中不可预测的强烈波动的产生。 这些波动也可以从潜在流动的流体粒子轨迹的分析中检测到。

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