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APS -APS March Meeting 2017 - Event - Scale-invariant transition from turbulent to coherent flows in 3D confined active fluids.

机译:APS -APS 2017年3月会议-事件-3D受限活性流体中从湍流到相干流的尺度不变过渡。

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Far-from-equilibrium, kinesin-driven active microtubules (MT) consume ATP and form extensile bundles. The bundles provide active stress, driving background fluids. Here we found that confining these fluids in a toroid triggers a transition from turbulent to coherent flow. The criterion for the transition is the aspect ratio of the toroid's channel cross-section, disregarding its absolute size. The underlying mechanism for such scale-invariant transition remains unclear. To gain insight, we measured the profiles of fluid flows as well as MT nematic order parameters when in coherent and incoherent states. We found that such flow transition is accompanied with a formation of MT nematic layer wetting the boundaries, while MT structure remains disordered in the bulk, indicating that such a coherent flow is a surface-driven phenomenon. In particular we found that the layer thickness is increased with the local shear rate of background fluid flow, reinforcing the connection between the surface layer and fluid motion. Our finding paves the path to outlining principles of interaction between active particles and fluid flows as well as the coherent transition caused by their collective dynamics.
机译:驱动平衡驱动的主动微管(MT)远离平衡,消耗ATP并形成可伸展束。束提供主动应力,驱动背景流体。在这里,我们发现将这些流体限制在环形中会触发从湍流到相干流的过渡。过渡的标准是环形通道横截面的长宽比,而不考虑其绝对大小。这种规模不变转变的基本机制仍不清楚。为了获得洞察力,我们测量了相干和非相干状态下的流体流动曲线以及MT向列顺序参数。我们发现,这种流动过渡伴随着润湿边界的MT向列层的形成,而MT结构在主体中仍然是无序的,表明这种相干流动是表面驱动的现象。特别是,我们发现层厚度随背景流体流动的局部剪切速率而增加,从而增强了表面层与流体运动之间的联系。我们的发现为概述活性颗粒与流体之间的相互作用原理以及由它们的集体动力学引起的相干过渡铺平了道路。

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