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Intrinsic flow structure and multifractality in two-dimensional bacterial turbulence

机译:二维细菌湍流中的内在流动结构和多重性

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The active interaction between the bacteria and fluid generates turbulent structures even at zero Reynolds number. The velocity of such a flow obtained experimentally has been quantitatively investigated based on streamline segment analysis. There is a clear transition at about 16 times the organism body length separating two different scale regimes, which may be attributed to the different influence of the viscous effect. Surprisingly the scaling extracted from the streamline segment indicates the existence of scale similarity even at the zero Reynolds number limit. Moreover, the multifractal feature can be quantitatively described via a lognormal formula with the Hurst number H = 0.76 and the intermittency parameter μ = 0.20, which is coincidentally in agreement with the three-dimensional hydrodynamic turbulence result. The direction of cascade is measured via the filter-space technique. An inverse energy cascade is confirmed. For the enstrophy, a forward cascade is observed when r/R ≤ 3, and an inverse one is observed when r/R > 3, where r and R are the separation distance and the bacteria body size, respectively. Additionally, the lognormal statistics is verified for the coarse-grained energy dissipation and enstrophy, which supports the lognormal formula to fit the measured scaling exponent.
机译:即使在零雷诺数,细菌和流体之间的活性相互作用也会产生湍流结构。基于流线段分析,已经定量地研究了这样的流程的速度。在有机体长度分离两种不同的刻度制度的大约16倍的透明过渡,这可能归因于粘性效应的不同影响。令人惊讶地,从流线段中提取的缩放表示即使在零雷诺数号码下也表明了比例相似度的存在。此外,可以通过Lognormal公式与Hurst号H = 0.76和间歇性参数μ= 0.20的数量地描述多法分子特征,其与三维流体动力湍流结果一致地巧合。通过过滤器空间技术测量级联方向。确认了逆能量级联。对于敌意,当R / R> 3时观察到r / r≤3时,观察到前向级联分别观察到r / r> 3,其中r和r是分离距离和细菌体尺寸。另外,验证了逻辑正规统计,用于粗粒粒度的能量耗散和敌对,其支持逻辑正式配方以适应测量的缩放指数。

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