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混沌混合中初始条件的统计独立性。

Statistical independence of the initial conditions in chaotic mixing.

机构信息

Imperial College London, South Kensington Campus, London SW7 2AZ, United Kingdom.

CEA, Paris-Saclay University, Den-STMF, Gif-sur Yvette F-91191, France.

出版信息

Phys Rev E. 2017 Nov;96(5-1):052212. doi: 10.1103/PhysRevE.96.052212. Epub 2017 Nov 17.

DOI:10.1103/PhysRevE.96.052212
PMID:29347685
Abstract

Experimental evidence of the scalar convergence towards a global strange eigenmode independent of the scalar initial condition in chaotic mixing is provided. This convergence, underpinning the independent nature of chaotic mixing in any passive scalar, is presented by scalar fields with different initial conditions casting statistically similar shapes when advected by periodic unsteady flows. As the scalar patterns converge towards a global strange eigenmode, the scalar filaments, locally aligned with the direction of maximum stretching, as described by the Lagrangian stretching theory, stack together in an inhomogeneous pattern at distances smaller than their asymptotic minimum widths. The scalar variance decay becomes then exponential and independent of the scalar diffusivity or initial condition. In this work, mixing is achieved by advecting the scalar using a set of laminar flows with unsteady periodic topology. These flows, that resemble the tendril-whorl map, are obtained by morphing the forcing geometry in an electromagnetic free surface 2D mixing experiment. This forcing generates a velocity field which periodically switches between two concentric hyperbolic and elliptic stagnation points. In agreement with previous literature, the velocity fields obtained produce a chaotic mixer with two regions: a central mixing and an external extensional area. These two regions are interconnected through two pairs of fluid conduits which transfer clean and dyed fluid from the extensional area towards the mixing region and a homogenized mixture from the mixing area towards the extensional region.

摘要

提供了混沌混合中标量向全局奇异本征模式收敛的实验证据,与标量初始条件无关。这种收敛是由具有不同初始条件的标量场在周期性非稳态流中输运时呈现出统计上相似的形状来证明的,这些标量场具有相同的混沌混合的独立性。当标量模式收敛到全局奇异本征模式时,标量纤维会沿着最大拉伸方向局部对齐,这是由拉格朗日拉伸理论描述的,在距离小于其渐近最小宽度的地方,这些纤维会以不均匀的模式堆积在一起。然后,标量方差的衰减变为指数衰减,与标量扩散系数或初始条件无关。在这项工作中,通过使用一组具有非稳态周期性拓扑的层流来输运标量来实现混合。这些流类似于卷须涡旋图,是通过在电磁自由表面 2D 混合实验中变形强制几何形状得到的。这种强制产生的速度场在两个同心双曲和椭圆驻点之间周期性切换。与之前的文献一致,所得到的速度场产生了一个具有两个区域的混沌混合器:一个中心混合区和一个外部拉伸区。这两个区域通过两对流体管道相互连接,这些管道将干净和染色的流体从拉伸区输送到混合区,并将均匀的混合物从混合区输送到拉伸区。

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